From 032788e74027f77c793f6cd716bdacf53670dc6e Mon Sep 17 00:00:00 2001 From: jsimonclark Date: Sun, 7 Jul 2024 13:32:08 +0000 Subject: [PATCH] deploy: 1253c3f6688d536d40e9fa8b80922aa9fc18c594 --- _sources/electrochemistry.rst.txt | 183 ++++++- context/context.json | 33 +- electrochemicalquantities.ttl | 84 ++- electrochemistry-inferred.ttl | 365 +++++-------- electrochemistry.html | 120 ++++- electrochemistry.ttl | 481 +++++++++--------- objects.inv | Bin 43508 -> 43688 bytes searchindex.js | 2 +- versions/0.12.1-beta/context/context.json | 33 +- .../0.12.1-beta/electrochemicalquantities.ttl | 84 ++- .../0.12.1-beta/electrochemistry-inferred.ttl | 365 +++++-------- versions/0.12.1-beta/electrochemistry.ttl | 481 +++++++++--------- versions/0.13.0-beta/context/context.json | 33 +- .../0.13.0-beta/electrochemicalquantities.ttl | 84 ++- .../0.13.0-beta/electrochemistry-inferred.ttl | 365 +++++-------- versions/0.13.0-beta/electrochemistry.ttl | 481 +++++++++--------- versions/0.14.0-beta/context/context.json | 33 +- .../0.14.0-beta/electrochemicalquantities.ttl | 84 ++- .../0.14.0-beta/electrochemistry-inferred.ttl | 365 +++++-------- versions/0.14.0-beta/electrochemistry.ttl | 481 +++++++++--------- versions/0.15.0-beta/context/context.json | 33 +- .../0.15.0-beta/electrochemicalquantities.ttl | 84 ++- .../0.15.0-beta/electrochemistry-inferred.ttl | 365 +++++-------- versions/0.15.0-beta/electrochemistry.ttl | 481 +++++++++--------- versions/0.15.1-beta/context/context.json | 33 +- .../0.15.1-beta/electrochemicalquantities.ttl | 84 ++- .../0.15.1-beta/electrochemistry-inferred.ttl | 365 +++++-------- versions/0.15.1-beta/electrochemistry.ttl | 481 +++++++++--------- versions/0.15.2-beta/context/context.json | 33 +- .../0.15.2-beta/electrochemicalquantities.ttl | 84 ++- .../0.15.2-beta/electrochemistry-inferred.ttl | 365 +++++-------- versions/0.15.2-beta/electrochemistry.ttl | 481 +++++++++--------- versions/0.16.0-beta/context/context.json | 33 +- .../0.16.0-beta/electrochemicalquantities.ttl | 84 ++- .../0.16.0-beta/electrochemistry-inferred.ttl | 365 +++++-------- versions/0.16.0-beta/electrochemistry.ttl | 481 +++++++++--------- versions/0.17.0-beta/context/context.json | 33 +- .../0.17.0-beta/electrochemicalquantities.ttl | 84 ++- .../0.17.0-beta/electrochemistry-inferred.ttl | 365 +++++-------- versions/0.17.0-beta/electrochemistry.ttl | 481 +++++++++--------- versions/0.4.0/context/context.json | 33 +- versions/0.4.0/electrochemicalquantities.ttl | 84 ++- versions/0.4.0/electrochemistry-inferred.ttl | 365 +++++-------- versions/0.4.0/electrochemistry.ttl | 481 +++++++++--------- versions/0.5.0/context/context.json | 33 +- versions/0.5.0/electrochemicalquantities.ttl | 84 ++- versions/0.5.0/electrochemistry-inferred.ttl | 365 +++++-------- versions/0.5.0/electrochemistry.ttl | 481 +++++++++--------- versions/0.6.0/context/context.json | 33 +- versions/0.6.0/electrochemicalquantities.ttl | 84 ++- versions/0.6.0/electrochemistry-inferred.ttl | 365 +++++-------- versions/0.6.0/electrochemistry.ttl | 481 +++++++++--------- versions/v0.10.0-beta/context/context.json | 33 +- .../electrochemicalquantities.ttl | 84 ++- .../electrochemistry-inferred.ttl | 365 +++++-------- versions/v0.10.0-beta/electrochemistry.ttl | 481 +++++++++--------- versions/v0.11.0-beta/context/context.json | 33 +- .../electrochemicalquantities.ttl | 84 ++- .../electrochemistry-inferred.ttl | 365 +++++-------- versions/v0.11.0-beta/electrochemistry.ttl | 481 +++++++++--------- versions/v0.12.0-beta/context/context.json | 33 +- .../electrochemicalquantities.ttl | 84 ++- .../electrochemistry-inferred.ttl | 365 +++++-------- versions/v0.12.0-beta/electrochemistry.ttl | 481 +++++++++--------- versions/v0.7.0-alpha/context/context.json | 33 +- .../electrochemicalquantities.ttl | 84 ++- .../electrochemistry-inferred.ttl | 365 +++++-------- versions/v0.7.0-alpha/electrochemistry.ttl | 481 +++++++++--------- versions/v0.8.0-alpha/context/context.json | 33 +- .../electrochemicalquantities.ttl | 84 ++- .../electrochemistry-inferred.ttl | 365 +++++-------- versions/v0.8.0-alpha/electrochemistry.ttl | 481 +++++++++--------- versions/v0.9.0-beta/context/context.json | 33 +- .../v0.9.0-beta/electrochemicalquantities.ttl | 84 ++- .../v0.9.0-beta/electrochemistry-inferred.ttl | 365 +++++-------- versions/v0.9.0-beta/electrochemistry.ttl | 481 +++++++++--------- 76 files changed, 8049 insertions(+), 9590 deletions(-) diff --git a/_sources/electrochemistry.rst.txt b/_sources/electrochemistry.rst.txt index 4f2d6b5..223ea61 100644 --- a/_sources/electrochemistry.rst.txt +++ b/_sources/electrochemistry.rst.txt @@ -2634,6 +2634,25 @@ HalfWavePotential +.. raw:: html + +
+ +ImaginaryElectricImpedance +-------------------------- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626 + +.. raw:: html + + + + + + +
Elucidationthe imaginary part of the complex electric impedance
+ + .. raw:: html
@@ -2988,6 +3007,25 @@ LimitingMolarConductivity +.. raw:: html + +
+ +LowerCurrentLimit +----------------- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea + +.. raw:: html + + + + + + +
Elucidationthe lower bounding limit on the current used in the definition of an electrochemical testing protocol
+ + .. raw:: html
@@ -3630,6 +3668,25 @@ NetFaradaicCurrent +.. raw:: html + +
+ +NominalCapacity +--------------- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100 + +.. raw:: html + + + + + + +
Elucidationthe rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer
+ + .. raw:: html
@@ -3790,6 +3847,25 @@ NumberOfFiniteVolumeCellsInZ +.. raw:: html + +
+ +NumberOfIterations +------------------ + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_88dd2bce_fb17_4705_905d_892681812290 + +.. raw:: html + + + + + + +
Elucidationthe number of times an iterative process should occur
+ + .. raw:: html
@@ -4272,6 +4348,33 @@ ReactionRateConstant +.. raw:: html + +
+ +RealElectricImpedance +--------------------- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f + +.. raw:: html + + + + + + + + + + + + + + +
Elucidationthe imaginary part of the complex electric impedance
Alternative Label(s)ACResistance
Wikidata Referencehttps://www.wikidata.org/wiki/Q1048490
+ + .. raw:: html
@@ -5231,6 +5334,25 @@ TransitionTime +.. raw:: html + +
+ +UpperCurrentLimit +----------------- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45 + +.. raw:: html + + + + + + +
Elucidationthe upper bounding limit on the current used in the definition of an electrochemical testing protocol
+ + .. raw:: html
@@ -6369,25 +6491,6 @@ ButlerVolmerEquation -.. raw:: html - -
- -CCCVCycling ------------ - -* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e - -.. raw:: html - - - - - - -
Elucidationa cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process
- - .. raw:: html
@@ -7362,6 +7465,29 @@ ConstantCurrentConstantVoltageCharging +.. raw:: html + +
+ +ConstantCurrentConstantVoltageCycling +------------------------------------- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e + +.. raw:: html + + + + + + + + + + +
Elucidationa cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process
Alternative Label(s)CCCVCycling
+ + .. raw:: html
@@ -14680,6 +14806,25 @@ ReferenceElectrode +.. raw:: html + +
+ +Resting +------- + +* https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b + +.. raw:: html + + + + + + +
Elucidationa step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step.
+ + .. raw:: html
diff --git a/context/context.json b/context/context.json index ac1b0bb..2006ca7 100644 --- a/context/context.json +++ b/context/context.json @@ -1076,7 +1076,6 @@ "ButlerVolmerEquation": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d48ea516_5cac_4f86_bc88_21b6276c0938", "C": "https://w3id.org/emmo#EMMO_36a9bf69_483b_42fd_8a0c_7ac9206320bc", "CASRN": "https://w3id.org/emmo#EMMO_d2a47cd8_662f_438f_855a_b4378eb992ff", - "CCCVCycling": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e", "CPlusPlus": "https://w3id.org/emmo#EMMO_64aba1e5_24b7_4140_8eb4_676c35698e79", "CRate": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_e1fd84eb_acdb_4b2c_b90c_e899d552a3ee", "CSharp": "https://w3id.org/emmo#EMMO_268a8a97_3a6f_4022_93da_962a66827cdc", @@ -1285,7 +1284,7 @@ "CoatingThickness": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3b938708_e7e4_4ac0_a959_9c04306302e7", "Cobalt": "https://w3id.org/emmo/domain/chemical-substance#substance_8f857eb2_7cc8_4294_954d_e69f2842c084", "CobaltAtom": "https://w3id.org/emmo#EMMO_3fe9d899_f1f1_5657_b176_ac6afff2e93d", - "CobaltBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_838c115b_6bc9_4ce8_9f8d_86a6bf67742a", + "CobaltBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7b811780_7251_481b_a4d3_97d437955099", "CobaltHydroxide": "https://w3id.org/emmo/domain/chemical-substance#substance_29b1c15d_2632_40d7_88f7_43575b68b988", "CobaltIIAcetate": "https://w3id.org/emmo/domain/chemical-substance#substance_4310c690_9810_4a95_8d62_7e78e0b84437", "CobaltIIBistrifluoromethanesulfonylimide": "https://w3id.org/emmo/domain/chemical-substance#substance_f4dffee2_c642_4114_a748_5e93b3908380", @@ -1358,6 +1357,7 @@ "ConstantCurrentCharging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_83f2b1e9_cb67_4dbf_977f_ba54bbae374f", "ConstantCurrentChargingCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_37c38b7e_9ded_481a_85fd_a467f1ee2b9f", "ConstantCurrentConstantVoltageCharging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0cc8f231_0ce5_467e_9c76_29b2c80349ad", + "ConstantCurrentConstantVoltageCycling": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e", "ConstantCurrentDischarging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_53fe3f58_0802_41cf_af69_4784fc42cc30", "ConstantCurrentDischargingCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_08833ed2_6324_411a_b34b_fe64c44cd5ef", "ConstantPotentialPulses": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_84d37a37_88bd_47db_9425_31f73a81d38c", @@ -1590,7 +1590,7 @@ "DeviceTemperature": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_463950b9_fd8d_48de_a52d_b29cab026391", "DewPointTemperature": "https://w3id.org/emmo#EMMO_a383e332_a271_463f_9e44_559604547220", "Diameter": "https://w3id.org/emmo#EMMO_c1c8ac3c_8a1c_4777_8e0b_14c1f9f9b0c6", - "Dichloromethane": "https://w3id.org/emmo/domain/chemical-substance#substance_8385c3c4_5906_48f6_b6b6_4bb60dccc27a", + "Dichloromethane": "https://w3id.org/emmo/domain/chemical-substance#substance_a6feec60_5fe7_4687_b427_3bf2ed06008d", "DieCasting": "https://w3id.org/emmo#EMMO_a85d0b8a_588e_423f_b799_97b0890e9183", "DielectricAndImpedanceSpectroscopy": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#DielectricAndImpedanceSpectroscopy", "Dielectrometry": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Dielectrometry", @@ -1624,7 +1624,7 @@ "Dimethoxyethane": "https://w3id.org/emmo/domain/chemical-substance#substance_b6ecabf9_14a4_4808_a139_55329e70ad42", "Dimethoxymethane": "https://w3id.org/emmo/domain/chemical-substance#substance_21954b0b_c05c_42db_b276_3a931d8aabb1", "DimethylCarbonate": "https://w3id.org/emmo/domain/chemical-substance#substance_c4a7d7bd_497e_457e_b858_ff73254266d0", - "DimethylSulfoxide": "https://w3id.org/emmo/domain/chemical-substance#substance_b593b5dd_7957_4b85_856a_dd59775210b6", + "DimethylSulfoxide": "https://w3id.org/emmo/domain/chemical-substance#substance_ea68e1a4_6be8_4686_8701_ba88b40d00b7", "Dimethylformamide": "https://w3id.org/emmo/domain/chemical-substance#substance_769bdc09_f533_4fde_bb53_20339d5bfcb7", "Dimethylpropyleneurea": "https://w3id.org/emmo/domain/chemical-substance#substance_945c68da_3baf_4da6_b794_dca7aebc4ca7", "Dimethylsulfate": "https://w3id.org/emmo/domain/chemical-substance#substance_3c8fb431_7d9d_4a89_a494_708df34f44d3", @@ -1837,7 +1837,7 @@ "ElectronicModel": "https://w3id.org/emmo#EMMO_6eca09be_17e9_445e_abc9_000aa61b7a11", "ElectronvoltPerMetre": "https://w3id.org/emmo#ElectronvoltPerMetre", "Electroosmosis": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_5641910f_6e69_4ce4_be84_4b1bf14b8916", - "Electroplating": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e", + "Electroplating": "https://w3id.org/emmo#EMMO_30e3edb5_0977_4b9b_9aed_5a4d16c1c07c", "ElementalMaterial": "https://w3id.org/emmo#EMMO_a086af15_a7c3_404c_b4ce_c8e4466f1b4b", "ElementalSubstance": "https://w3id.org/emmo#EMMO_436b11bd_1756_4821_9f14_c9ed6b67552e", "ElementaryBoson": "https://w3id.org/emmo#EMMO_cafd0f10_ce85_48b9_9a36_2b0af141ce21", @@ -2192,11 +2192,12 @@ "ISQBaseQuantity": "https://w3id.org/emmo#EMMO_1a4c1a97_88a7_4d8e_b2f9_2ca58e92dde4", "ISQDerivedQuantity": "https://w3id.org/emmo#EMMO_2946d40b_24a1_47fa_8176_e3f79bb45064", "ISQDimensionlessQuantity": "https://w3id.org/emmo#EMMO_a66427d1_9932_4363_9ec5_7d91f2bfda1e", - "IUPACName": "https://w3id.org/emmo#EMMO_16a3bd5c_75f0_42b3_b000_cb0d018f840e", + "IUPACName": "https://w3id.org/emmo#EMMO_f652e7d2_0b33_4d10_8d0f_2f70089982ba", "IUPACNomencalture": "https://w3id.org/emmo#EMMO_91a0635a_a89a_46de_8928_04a777d145c7", "Icon": "https://w3id.org/emmo#EMMO_d7788d1a_020d_4c78_85a1_13563fcec168", "Illuminance": "https://w3id.org/emmo#EMMO_b51fbd00_a857_4132_9711_0ef70e7bdd20", "IlluminanceTimeUnit": "https://w3id.org/emmo#EMMO_e467cc3f_676c_432e_b70e_19237d1bcc78", + "ImaginaryElectricImpedance": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626", "Impedimetry": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Impedimetry", "InChI": "https://w3id.org/emmo#EMMO_d74ed682_894f_46c5_87cb_167f60926965", "IncreasingPotentialPulses": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_77be01ef_49bd_4f2e_bec8_eec0894b8562", @@ -2288,7 +2289,7 @@ "IridiumSymbol": "https://w3id.org/emmo#EMMO_b8aab013_b729_51f1_bc14_5302e7f97cbe", "Iron": "https://w3id.org/emmo/domain/chemical-substance#substance_89fd13e8_8061_41da_83f4_634144116425", "IronAtom": "https://w3id.org/emmo#EMMO_a4839f08_1080_53bf_9cb3_101e20c2656b", - "IronBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_cc4e178c_bc1f_4502_b6c2_33f304ef6bab", + "IronBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_5e1136d3_df00_40f7_a4bc_8259341053a1", "IronDisulfide": "https://w3id.org/emmo/domain/chemical-substance#substance_c728b6b9_449a_45ff_b5ae_6b7968708f0d", "IronDisulfideElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d2726dd5_69f0_4cb1_bd3c_4c48813e57e7", "IronIIIHydroxide": "https://w3id.org/emmo/domain/chemical-substance#substance_323a2e39_d7d5_4802_884a_9aa41a280986", @@ -2556,6 +2557,7 @@ "LossFactor": "https://w3id.org/emmo#EMMO_c3796906_8063_47d4_92af_890ae08f25fa", "LowPressureCasting": "https://w3id.org/emmo#EMMO_8b2fd84c_8f51_4731_9bd7_830545e78b23", "LowerCriticalMagneticFluxDensity": "https://w3id.org/emmo#EMMO_fd4a6307_f9f7_4b54_b044_caa04e620232", + "LowerCurrentLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea", "LowerFrequencyLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_b66d6553_6136_4754_902a_707e414210c2", "LowerVoltageLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_534dd59c_904c_45d9_8550_ae9d2eb6bbc9", "Lumen": "https://w3id.org/emmo#Lumen", @@ -2608,7 +2610,7 @@ "MagnesiumTriflate": "https://w3id.org/emmo/domain/chemical-substance#substance_df24fad8_7ef0_4330_a3f2_c4d65d9a3be8", "MagnesiumTrifluoromethanesulfonyloxalatoborate": "https://w3id.org/emmo/domain/chemical-substance#substance_2b7473ba_9156_489a_880f_3a2f746cd104", "MagneticDipoleMoment": "https://w3id.org/emmo#EMMO_81e767f1_59b1_4d7a_bf69_17f322241831", - "MagneticDipoleMomentUnit": "https://w3id.org/emmo#EMMO_5073dc80_aec2_4a3b_8057_fababfcbfe11", + "MagneticDipoleMomentUnit": "https://w3id.org/emmo#EMMO_1c2226a9_22f0_40c8_8928_5a01d398f96e", "MagneticFieldStrength": "https://w3id.org/emmo#EMMO_b4895f75_41c8_4fd9_b6d6_4d5f7c99c423", "MagneticFieldStrengthUnit": "https://w3id.org/emmo#EMMO_e6b83139_ba92_4fbd_a8b2_c8dde55844a1", "MagneticFlux": "https://w3id.org/emmo#EMMO_3b931698_937e_49be_ab1b_36fa52d91181", @@ -2676,7 +2678,7 @@ "MassExcess": "https://w3id.org/emmo#EMMO_7dd84949_0afa_4313_9b89_7bb0dd2e7771", "MassFlow": "https://w3id.org/emmo#EMMO_6d61ee3c_c5b6_4452_bc11_e9c33af992a7", "MassFluxUnit": "https://w3id.org/emmo#EMMO_e35d4936_b2e3_4cd6_a437_f1c864b3d450", - "MassFraction": "https://w3id.org/emmo/disciplines/units/coherentsiunits#EMMO_089f13b1_ceb3_4d2a_8795_b4a2d92916da", + "MassFraction": "https://w3id.org/emmo#EMMO_7c055d65_2929_40e1_af4f_4bf10995ad50", "MassFractionOfDryMatter": "https://w3id.org/emmo#EMMO_8f171308_f902_42c5_ac1d_d5259022e9c1", "MassFractionOfWater": "https://w3id.org/emmo#EMMO_cac16ce6_2cef_405d_ac63_0f918db4875e", "MassFractionUnit": "https://w3id.org/emmo#EMMO_18448443_dcf1_49b8_a321_cf46e2c393e1", @@ -3027,6 +3029,7 @@ "NobeliumAtom": "https://w3id.org/emmo#EMMO_49eb0790_50c2_5691_a8bf_dfa6f4a9f6c7", "NobeliumSymbol": "https://w3id.org/emmo#EMMO_c1bb775c_0888_5b88_9cce_c49bae1d298b", "NobleGasElementalSubstance": "https://w3id.org/emmo/domain/chemical-substance#substance_cac14194_2d5f_4fe6_b794_a9319f6d76ee", + "NominalCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100", "NominalProperty": "https://w3id.org/emmo#EMMO_909415d1_7c43_4d5e_bbeb_7e1910159f66", "NominalVoltage": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_639b844a_e801_436b_985d_28926129ead6", "NonActivePower": "https://w3id.org/emmo#EMMO_83318add_d05e_40fc_93ea_c6cd605df437", @@ -3061,6 +3064,7 @@ "NumberOfFiniteVolumeCellsInX": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_e73586eb_8475_4879_a43e_087c702ea6bf", "NumberOfFiniteVolumeCellsInY": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_c2a85d02_c6b4_42df_b5ed_a9904ec34a5c", "NumberOfFiniteVolumeCellsInZ": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a5e00e3a_736c_4200_8d04_ed222fe07037", + "NumberOfIterations": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_88dd2bce_fb17_4705_905d_892681812290", "NumberOfTurnsInAWinding": "https://w3id.org/emmo#EMMO_eefaa0ef_e7d4_4633_bf79_655bb55f4a49", "Numeral": "https://w3id.org/emmo#EMMO_74b05aed_66bf_43c8_aa2c_752a9ca8be03", "Numerical": "https://w3id.org/emmo#EMMO_4ce76d7f_03f8_45b6_9003_90052a79bfaa", @@ -3211,7 +3215,7 @@ "Permittivity": "https://w3id.org/emmo#EMMO_0ee5779e_d798_4ee5_9bfe_c392d5bea112", "PermittivityUnit": "https://w3id.org/emmo#EMMO_5f89cb0c_3171_47ee_b2ab_027a07c34c4b", "Persistence": "https://w3id.org/emmo#EMMO_e04884d9_eda6_487e_93d5_7722d7eda96b", - "Person": "http://xmlns.com/foaf/0.1/Person", + "Person": "https://schema.org/Person", "Perspective": "https://w3id.org/emmo#EMMO_49267eba_5548_4163_8f36_518d65b583f9", "Peta": "https://w3id.org/emmo#EMMO_d7c74480_a568_4470_acff_f18b499cc850", "PetaPrefixedUnit": "https://w3id.org/emmo#EMMO_43a6b269_da31_4bb6_a537_c97df4fff32a", @@ -3298,7 +3302,7 @@ "Porosity": "https://w3id.org/emmo#EMMO_3a6578ac_aee0_43b9_9bc6_1eb208c8c9a9", "PorousElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3663991d_9319_4f7a_922b_f0e428b58801", "PorousSeparator": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_58413d4e_2885_459e_ac06_8d45e661cf91", - "PositionVector": "https://w3id.org/emmo#EMMO_4312cae4_03ba_457e_b35d_0671a7db350c", + "PositionVector": "https://w3id.org/emmo#EMMO_44da6d75_54a4_4aa8_bd3a_156f6e9abb8e", "PositiveElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_aff732a9_238a_4734_977c_b2ba202af126", "PositiveTerminal": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_522f0c0b_cf33_4328_af71_12e38dae6798", "Positron": "https://w3id.org/emmo#EMMO_26a38b26_38ea_4acf_b212_db9e34c71b7a", @@ -3483,7 +3487,7 @@ "R54215": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_fc9e7ba3_5084_4c2a_b488_c6a96af99232", "R616": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_dc019f3f_e5f3_4eeb_bab9_a845a02223a0", "R621": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_15ec346a_6d3c_4161_95e1_9cf889965f85", - "R626": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_68c1c36e_1548_4247_bae2_fe7102a2c4ff", + "R626": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6b275583_433f_46f7_aafd_ebc9409257cc", "R712": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_bb2faf17_b819_4876_b17f_fa82917cf85d", "R716": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_34cb7ea7_2436_46e0_806e_a3c7835ae228", "R721": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3279f575_1c62_4bf2_a6e8_de4c7ff36f8e", @@ -3535,6 +3539,7 @@ "ReactivePower": "https://w3id.org/emmo#EMMO_d8030875_6d89_4645_9728_bbc3b8690609", "ReactorTimeConstant": "https://w3id.org/emmo#EMMO_b03dfad7_eab8_4949_9d10_dd4fd12faaef", "Real": "https://w3id.org/emmo#EMMO_18d180e4_5e3e_42f7_820c_e08951223486", + "RealElectricImpedance": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f", "ReciprocalAmountPerVolumeUnit": "https://w3id.org/emmo#EMMO_aef218f9_6ded_4db9_9263_e78eed55e5d6", "ReciprocalCentiMetre": "https://w3id.org/emmo#ReciprocalCentiMetre", "ReciprocalCubicCentiMetre": "https://w3id.org/emmo#ReciprocalCubicCentiMetre", @@ -3637,6 +3642,7 @@ "ResponseTimeAtAnISE": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_1a104474_c326_4a29_ac26_26a05ac8f72c", "RestEnergy": "https://w3id.org/emmo#EMMO_5117c5fe_f661_46f8_83c3_b48947f1532a", "RestMass": "https://w3id.org/emmo#EMMO_3c947caf_4070_4c79_a3a3_e53274ac9944", + "Resting": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b", "RestingTime": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_2678a656_4a27_4706_8dde_b0a93e9b92fa", "ReversibleHydrogenElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0d9ba00d_04bc_4bdc_85af_3380694f6f68", "RevolutionPerMinute": "https://w3id.org/emmo#RevolutionPerMinute", @@ -3790,7 +3796,7 @@ "SiemensSquareMetrePerMole": "https://w3id.org/emmo#SiemensSquareMetrePerMole", "Sievert": "https://w3id.org/emmo#Sievert", "Sign": "https://w3id.org/emmo#EMMO_b21a56ed_f969_4612_a6ec_cb7766f7f31d", - "Signal": "https://w3id.org/emmo/domain/chameo#Signal", + "Signal": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Signal", "SignalReferencePotential": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_68059d94_4c21_4065_b329_07faeebc7e87", "Silicon": "https://w3id.org/emmo/domain/chemical-substance#substance_68c0876b_cb62_41cd_846d_95cc9d9a8733", "SiliconAtom": "https://w3id.org/emmo#EMMO_798b0c96_82ca_5ce8_8d5f_f9f72668cf5d", @@ -4318,6 +4324,7 @@ "UpQuark": "https://w3id.org/emmo#EMMO_0a3f04a6_ba3a_49d9_99da_08b0e26f51f0", "UpQuarkType": "https://w3id.org/emmo#EMMO_fc47b76f_ad01_4cd0_8fc6_55532000e7c8", "UpperCriticalMagneticFluxDensity": "https://w3id.org/emmo#EMMO_6bfe6ad2_96ba_4478_81e5_d8881c550757", + "UpperCurrentLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45", "UpperFrequencyLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_666f0b69_9c74_49a3_80b3_96a188332462", "UpperVoltageLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6dcd5baf_58cd_43f5_a692_51508e036c88", "UraniumAtom": "https://w3id.org/emmo#EMMO_b233f8c0_37d8_51ae_9264_560e6649e246", diff --git a/electrochemicalquantities.ttl b/electrochemicalquantities.ttl index 882a543..96cb275 100644 --- a/electrochemicalquantities.ttl +++ b/electrochemicalquantities.ttl @@ -24,8 +24,6 @@ emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f a owl:AnnotationProperty . emmo:EMMO_5c78b424_087b_4e31_8c91_6422f1be1e86 owl:equivalentClass :electrochemistry_9c657fdc_b9d3_4964_907c_f9a6e8c5f52b . -emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 :electrochemistry_097ea615_c209_4edd_a1a1_5eea71d98fe8 "acimp/ohms"@en . - emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry_37b24a94_cae0_4d7a_9519_9f7692dec607 ; skos:altLabel "MassDiffusivity"@en ; emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q604008"@en ; @@ -101,6 +99,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "D40ParticleSize"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 40% of the sample's particles fall."@en . +:electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626 a owl:Class ; + rdfs:label "ImaginaryElectricImpedance"@en ; + rdfs:comment "the imaginary part of the complex electric impedance"@en ; + rdfs:subClassOf emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 ; + skos:prefLabel "ImaginaryElectricImpedance"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the imaginary part of the complex electric impedance"@en . + :electrochemistry_02d2d1d1_241c_429b_b4e7_31f2c3dc4835 a owl:Class ; rdfs:label "D95ParticleSize"@en ; rdfs:comment "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 95% of the sample's particles fall."@en ; @@ -381,6 +386,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "D50ParticleSize"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 50% of the sample's particles fall."@en . +:electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45 a owl:Class ; + rdfs:label "UpperCurrentLimit"@en ; + rdfs:comment "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en ; + rdfs:subClassOf :electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 ; + skos:prefLabel "UpperCurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + :electrochemistry_3e54f9e3_a31d_4821_9bfb_ef953a42c35b a owl:Class ; rdfs:label "MaximumPulseDischargingCurrent"@en ; rdfs:comment "the maximum current approved for pulse discharge of an electrochemical device"@en ; @@ -608,6 +620,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "ChargingCurrent"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electric current applied to an electrochemical device during a charging process"@en . +:electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea a owl:Class ; + rdfs:label "LowerCurrentLimit"@en ; + rdfs:comment "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en ; + rdfs:subClassOf :electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 ; + skos:prefLabel "LowerCurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + :electrochemistry_7f073272_8925_4344_995c_a5a6dd1fcde6 a owl:Class ; rdfs:label "ChargingConstantCurrentPercentage"@en ; rdfs:comment "the percentage of the total charge capacity that is obtained during a constant current charge process"@en ; @@ -705,6 +724,20 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "DischargingSpecificCapacity"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "quotient of the capacity of a cell or battery [ or electrode or active material ] obtained during a discharge process by its mass."@en . +:electrochemistry_88dd2bce_fb17_4705_905d_892681812290 a owl:Class ; + rdfs:label "NumberOfIterations"@en ; + rdfs:comment "the number of times an iterative process should occur"@en ; + rdfs:subClassOf emmo:EMMO_ba882f34_0d71_4e4f_9d92_0c076c633a2c ; + skos:prefLabel "NumberOfIterations"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the number of times an iterative process should occur"@en . + +:electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100 a owl:Class ; + rdfs:label "NominalCapacity"@en ; + rdfs:comment "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en ; + rdfs:subClassOf :electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 ; + skos:prefLabel "NominalCapacity"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en . + :electrochemistry_8e943e12_ecc0_4093_899e_7226be6be7f2 a owl:Class ; rdfs:label "D90ParticleSize"@en ; rdfs:comment "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 90% of the sample's particles fall."@en ; @@ -820,6 +853,15 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the celsius temperature of the ambient environment"@en ; :electrochemistry_1b717a20_17e3_4480_8c60_c4ae94058f05 "Environmental_Temperature (C)"@en . +:electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f a owl:Class ; + rdfs:label "RealElectricImpedance"@en ; + rdfs:comment "the imaginary part of the complex electric impedance"@en ; + rdfs:subClassOf emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 ; + skos:altLabel "ACResistance"@en ; + skos:prefLabel "RealElectricImpedance"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q1048490"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the imaginary part of the complex electric impedance"@en . + :electrochemistry_ae108db7_8765_4329_9908_059277dee586 a owl:Class ; rdfs:label "StepCapacity"@en ; rdfs:comment "the amount of charge that has passed through an electrochemical device within the time interval of a given testing step"@en ; @@ -1084,8 +1126,8 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry ; dcterms:license "https://creativecommons.org/licenses/by/4.0/legalcode" ; owl:imports ; - owl:versionIRI ; - owl:versionInfo "0.17.0-beta" . + owl:versionIRI ; + owl:versionInfo "0.18.0-beta" . a owl:NamedIndividual, foaf:Person ; @@ -1866,6 +1908,8 @@ In either case, the magnitude of the catalytic current depends on the applied po emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electric potential of an ion-selective electrode (ISE) and activity of an analyte ion at which the potential of the ISE is independent of temperature"@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1351/goldbook.I03304"@en . +emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 :electrochemistry_097ea615_c209_4edd_a1a1_5eea71d98fe8 "acimp/ohms"@en . + emmo:EMMO_e218c625_6a39_47a9_8d08_a2ef41c152a9 rdfs:subClassOf :electrochemistry_02eb0465_4f94_453c_8c1f_5ddf80134634 ; skos:altLabel "GravimetricEnergyDensity"@en ; :electrochemistry_811aafc3_0c6d_470e_b67e_ff5c82992609 "CmpEng(mWh/g)"@en . @@ -1997,14 +2041,6 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog skos:prefLabel "TemperatureLimit"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the temperature of a system"@en . -:electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 a owl:Class ; - rdfs:label "RatedCapacity"@en ; - rdfs:comment "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en ; - rdfs:subClassOf :electrochemistry_791c1915_a791_4450_acd8_7f94764743b5 ; - skos:prefLabel "RatedCapacity"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-03-15"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en . - :electrochemistry_9ed7210c_c4fa_467b_822d_ba12f885bdf4 a owl:Class ; rdfs:label "ConcentrationOverpotential"@en ; rdfs:comment "The concentration overpotential of an electrode reaction at a given electrode current density (c.d.) is basically the difference in equilibrium potentials across the diffusion layer. More precisely, it is the potential of a reference electrode (of the same electrode reaction as the working electrode ) with the interfacial concentrations which establish themselves at c.d., relative to the potential of a similar reference electrode with the concentrations of the bulk solution. From such a measured potential difference, with c.d. flowing, one needs to subtract the ohmic potential drop prevailing between the two electrodes."@en, @@ -2110,6 +2146,14 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog skos:prefLabel "NumberOfFiniteVolumeCells"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "number of discrete finite volume cells in a grid or sub-grid"@en . +:electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 a owl:Class ; + rdfs:label "RatedCapacity"@en ; + rdfs:comment "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en ; + rdfs:subClassOf :electrochemistry_791c1915_a791_4450_acd8_7f94764743b5 ; + skos:prefLabel "RatedCapacity"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-03-15"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en . + :electrochemistry_cc519a19_b8d5_4e3f_b893_3a884888ad79 a owl:Class ; rdfs:label "MaximumTemperature"@en ; rdfs:comment "the maximum allowable temperature"@en ; @@ -2186,14 +2230,6 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa :electrochemistry_a07dd85b_d0df_4d5d_8b0c_14d20ea3fe45 "current"@en ; :electrochemistry_ea9f4dba_8ca2_419e_9cdf_ce54e9ebbd46 "Current (A)"@en . -:electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 a owl:Class ; - rdfs:label "CurrentLimit"@en ; - rdfs:comment "limit on the electric current of an electrical system"@en ; - rdfs:subClassOf emmo:EMMO_c995ae70_3b84_4ebb_bcfc_69e6a281bb88, - :electrochemistry_b395a244_3a75_4737_be38_981bfa1277fe ; - skos:prefLabel "CurrentLimit"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the electric current of an electrical system"@en . - :electrochemistry_900e357f_2ee3_425a_a0b6_322661117787 a owl:Class ; rdfs:label "ElectrochemicalProperty"@en ; rdfs:subClassOf emmo:EMMO_909415d1_7c43_4d5e_bbeb_7e1910159f66 ; @@ -2292,6 +2328,14 @@ foaf:Person a owl:Class ; emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Faradaic_current"@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://goldbook.iupac.org/terms/view/F02321"@en . +:electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 a owl:Class ; + rdfs:label "CurrentLimit"@en ; + rdfs:comment "limit on the electric current of an electrical system"@en ; + rdfs:subClassOf emmo:EMMO_c995ae70_3b84_4ebb_bcfc_69e6a281bb88, + :electrochemistry_b395a244_3a75_4737_be38_981bfa1277fe ; + skos:prefLabel "CurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the electric current of an electrical system"@en . + :electrochemistry_1cd1d777_e67b_47eb_81f1_edac35d9f2c6 a owl:Class ; rdfs:label "Overpotential"@en ; rdfs:comment "difference between the electrode potential with current flow, and the electrode potential without current flow, i.e. the equilibrium potential"@en, diff --git a/electrochemistry-inferred.ttl b/electrochemistry-inferred.ttl index f4fa0f9..c704a22 100644 --- a/electrochemistry-inferred.ttl +++ b/electrochemistry-inferred.ttl @@ -7,7 +7,7 @@ @base . rdf:type owl:Ontology ; - owl:versionIRI ; + owl:versionIRI ; ""@en , "CHAMEO is a domain ontology designed to model the common aspects across the different characterisation techniques and methodologies."@en , """Defines physical quantities in the International System of Quantities (ISQ). ISQ was made an official ISO standard in 2009 and is defined in the ISO/IEC 80000 standard. @@ -146,12 +146,12 @@ The symbolic module includes symbols, symbolic constructs and formal languages." "https://w3id.org/emmo/domain/characterisation-methodology/chameo" ; "2024-04-12" , "2024-06-23"^^xsd:date , - "2024-07-03"^^xsd:date ; + "2024-07-05"^^xsd:date ; "https://creativecommons.org/licenses/by/4.0/legalcode" , "https://creativecommons.org/licenses/by/4.0/legalcode"@en ; "2024-04-12" , "2024-06-23"^^xsd:date , - "2024-07-03"^^xsd:date ; + "2024-07-05"^^xsd:date ; "EMMC ASBL" , "EMMC ASBL"@en , """EMMC ASBL @@ -241,11 +241,11 @@ We kindly acknowledge NIST for reusing their content, including the selection of "You can contact EMMO Authors via emmo@emmc.eu"@en ; owl:backwardCompatibleWith "" , " " , - "0.16.0-beta" ; - owl:priorVersion "0.16.0-beta" , + "0.17.0-beta" ; + owl:priorVersion "0.17.0-beta" , "0.5.0-beta" , "1.0.0-beta2" ; - owl:versionInfo "0.17.0-beta" , + owl:versionInfo "0.18.0-beta" , "0.6.0-beta" , "1.0.0-beta3" , "1.0.0-beta7" ; @@ -2333,7 +2333,7 @@ While the EMMO FOL introduces the quantum causality relation C(x,y) as primitive rdf:type owl:ObjectProperty ; rdfs:subPropertyOf ; rdfs:domain ; - rdfs:range ; + rdfs:range ; "hasSolvent"@en . @@ -2364,7 +2364,7 @@ While the EMMO FOL introduces the quantum causality relation C(x,y) as primitive rdf:type owl:ObjectProperty ; rdfs:subPropertyOf ; rdfs:domain ; - rdfs:range ; + rdfs:range ; "hasSolute"@en . @@ -34532,7 +34532,7 @@ Wikipedia"""@en ; , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "ZincElectrode"@en ; "an electrode in which the main active material is zinc metal"@en ; @@ -34555,7 +34555,7 @@ Wikipedia"""@en ; rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "LithiumElectrode"@en ; "an electrode in which the active material is lithium metal" . @@ -44391,164 +44391,11 @@ Wear is defined as the progressive removal of the material from a solid surface "InChI=1S/Pb" . -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0139937b_2724_4864_84fb_f14bcfb83538 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0bdf0bb9_41fc_455d_af11_a249e24acdf6 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0f2f65a7_5cc4_4c86_a4d0_676771c646f1 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_250fa43e_1f26_4ed8_b787_91a2325a8e7b - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_25f6ff4c_53ad_4837_97c4_aa6f06099bb5 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_2a540939_3908_4f85_92f9_c46da7d4e9cb - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_2a87ca10_fc6a_4d61_b48c_d9790a566ee3 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_3899a9c9_9b34_443e_8ce6_0257589bb38a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_3ac62305_acd6_4312_9e31_4f824bd2530d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_4126ee09_b9c6_4694_bf33_0d8970e05f72 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_4c62d334_a124_40b3_9fd1_fe713d01a6af - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_5088ad54_b37d_4ee1_a086_d6c17e644f9a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_5cee19d2_f916_4264_a8ed_efed13a808d2 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_68c0876b_cb62_41cd_846d_95cc9d9a8733 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_68f9b85e_340f_46ec_96da_ebb6bd62f5fd - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_73d4606c_7460_4a5c_9413_793bdf35753e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_7dc738d6_74f2_489e_ae84_a6dbdf627f2e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_848003a2_71ee_4967_8039_354c907ec7f4 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_97439fbb_155f_433d_9edd_d510cd491f24 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_9bd78e1c_a4dc_41b6_8013_adb51df1ffdc - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_9da78aea_d436_40e2_a68f_c3dee32b825e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_aa8e9cc4_5f66_4307_b1c8_26fac7653a90 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_acdb232f_8041_4e11_8a11_5db2d2baae4d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_b01771a9_218a_4b01_b20f_4021cfa0b7d5 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_b3815a7f_f64a_48f6_b0ce_d0032578c699 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c109ca45_08c7_4436_a818_a9c575785e2f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c28a0967_ed23_48cc_a14e_a651d75a19db - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c5582dae_ccff_4fbe_adaa_078091054640 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c728b6b9_449a_45ff_b5ae_6b7968708f0d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_cd17ca33_ae3d_4738_8930_547673bf6c1f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_cdd18f0c_e7b3_4d09_b3dd_c09fe4b1adba - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_d53259a7_0d9c_48b9_a6c1_4418169df303 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_d673ceb2_3045_4e2e_8cad_56f5169b542f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_db74b6b7_09fc_40db_a7d5_6eb86b69192a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_dc5fb846_1824_40f8_9834_81f118aa1c2d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_dcdbdbed_2e20_40d1_a7a5_5761de7f0618 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_e1e6ff98_0725_4d27_ab21_2ca5a95371f0 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_e8fafdc8_6cd3_4dd0_9630_10ca8e3f1827 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_f3e7979a_e3ef_450a_8762_7d8778afe478 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_f7525766_90cf_43e9_8932_7cb3b14f676f - rdf:type owl:Class . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626 + rdf:type owl:Class ; + rdfs:subClassOf ; + "ImaginaryElectricImpedance"@en ; + "the imaginary part of the complex electric impedance"@en . ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_01260656_ac32_472e_9513_a607366538ec @@ -44872,11 +44719,11 @@ Wear is defined as the progressive removal of the material from a solid surface rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCLCOElectrode"@en ; @@ -45639,7 +45486,7 @@ and t* through mathematical models, provided that the long-time potential- deter , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LFPElectrode"@en ; @@ -46241,7 +46088,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "PtElectrode"@en ; "PlatinumElectrode"@en ; @@ -46343,7 +46190,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SiliconOxideGraphiteElectrode"@en ; @@ -46477,7 +46324,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "FTOElectrode"@en ; @@ -46500,7 +46347,7 @@ Aluminum foil"""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "NiOOHElectrode"@en , "NickelOxyhydroxideElectrode"@en ; @@ -46544,6 +46391,14 @@ Aluminum foil"""@en . "a coin case with a nominal diameter of 7.9 mm and a height of 1.65 mm"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b + rdf:type owl:Class ; + rdfs:subClassOf , + ; + "Resting"@en ; + "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 rdf:type owl:Class ; rdfs:subClassOf ; @@ -46811,6 +46666,13 @@ Aluminum foil"""@en . "A material relation in electrochemistry."@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45 + rdf:type owl:Class ; + rdfs:subClassOf ; + "UpperCurrentLimit"@en ; + "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3e54f9e3_a31d_4821_9bfb_ef953a42c35b rdf:type owl:Class ; rdfs:subClassOf , @@ -46981,7 +46843,7 @@ Aluminum foil"""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNMOElectrode"@en ; @@ -47201,11 +47063,11 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCLMOElectrode"@en ; @@ -47294,7 +47156,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumNickelPhosphateElectrode"@en ; @@ -47549,7 +47411,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumIronPhosphateElectrode"@en ; @@ -47904,7 +47766,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "CarbonMonofluorideElectrode"@en ; "electrode in which the active material is carbon monofluoride"@en ; @@ -48131,7 +47993,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "HardCarbonElectrode"@en ; "electrode in which the active material is hard carbon"@en . @@ -48291,7 +48153,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "SAE"@en ; "SolidAmalgamElectrode"@en ; @@ -48426,7 +48288,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LTOElectrode"@en ; @@ -48518,20 +48380,13 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ] . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "system that consists of at least two electron conductors (electrodes) in contact with ionic conductors (electrolytes)"@en ; - "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6fec8cc1_4e6c_428e_8343_6cf3c286a185 rdf:type owl:Class ; rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "AuElectrode"@en ; "GoldElectrode"@en ; @@ -48691,7 +48546,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NiOElectrode"@en ; @@ -48721,7 +48576,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "TiO2Electrode"@en ; @@ -48915,13 +48770,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ] . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "in secondary cells, the active material is restored to its original state during charge"@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - [ rdf:type owl:Axiom ; owl:annotatedSource ; owl:annotatedProperty ; @@ -48965,6 +48813,13 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s "an electrode in which the primary active material consists of caesium or caesium compounds"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea + rdf:type owl:Class ; + rdfs:subClassOf ; + "LowerCurrentLimit"@en ; + "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7f073272_8925_4344_995c_a5a6dd1fcde6 rdf:type owl:Class ; rdfs:subClassOf ; @@ -49118,7 +48973,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "LiquidGalliumElectrode"@en ; "a liquid electrode with an active material of gallium"@en . @@ -49188,7 +49043,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "ZnOElectrode"@en ; @@ -49446,6 +49301,13 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "an electrode in which the primary active material consists of sulfur or sulfur compounds"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_88dd2bce_fb17_4705_905d_892681812290 + rdf:type owl:Class ; + rdfs:subClassOf ; + "NumberOfIterations"@en ; + "the number of times an iterative process should occur"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8968eb7a_9a65_4286_a596_c31b998df329 rdf:type owl:Class ; rdfs:subClassOf ; @@ -49504,6 +49366,13 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "substance that increases chemical reaction speed, and which is conserved after the reaction"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100 + rdf:type owl:Class ; + rdfs:subClassOf ; + "NominalCapacity"@en ; + "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8b40856f_1ca2_4137_9616_7fb624671909 rdf:type owl:Class ; rdfs:subClassOf , @@ -50109,7 +49978,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumCobaltPhosphateElectrode"@en ; @@ -50298,13 +50167,6 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; "plate in which the active material is applied as a paste to a conductive current collector"@en . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "plate in which the active material is applied as a paste to a conductive current collector"@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a24f8581_a5a4_41a4_bb45_d0fdd5c0d810 rdf:type owl:Class ; @@ -50397,7 +50259,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "SilverOxideElectrode"@en ; "an electrode in which the primary active material consists of manganese dioxide or vmanganese dioxide compounds"@en ; @@ -50427,7 +50289,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "AgElectrode"@en ; "SilverElectrode"@en ; @@ -50662,7 +50524,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "CupricOxideElectrode"@en ; "CopperOxideElectrode"@en ; @@ -50751,6 +50613,15 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "Environmental_Temperature (C)"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f + rdf:type owl:Class ; + rdfs:subClassOf ; + "ACResistance"@en ; + "RealElectricImpedance"@en ; + "https://www.wikidata.org/wiki/Q1048490"@en ; + "the imaginary part of the complex electric impedance"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abfadc99_6e43_4d37_9b04_7fc5b0f327ae rdf:type owl:Class ; rdfs:subClassOf , @@ -50782,7 +50653,8 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e rdf:type owl:Class ; rdfs:subClassOf ; - "CCCVCycling"@en ; + "CCCVCycling"@en ; + "ConstantCurrentConstantVoltageCycling"@en ; "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en . @@ -51030,7 +50902,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCElectrode"@en ; @@ -51360,11 +51232,11 @@ of other configurations are used."""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNMOLFPElectrode"@en ; @@ -51466,13 +51338,6 @@ of other configurations are used."""@en . "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; "https://en.wikipedia.org/wiki/Fuel_cell"@en . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_bea04148_10d9_4eda_9cd5_8f609d7e9ff8 rdf:type owl:Class ; @@ -51568,7 +51433,7 @@ of other configurations are used."""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LMOElectrode"@en ; @@ -51751,11 +51616,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "ITO"@en ; @@ -51809,7 +51674,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "GraphiteElectrode"@en ; "electrode in which the active material is graphite"@en . @@ -51928,7 +51793,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "MnO2Electrode"@en ; "ManganeseDioxideElectrode"@en ; @@ -51943,7 +51808,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNOElectrode"@en ; @@ -51963,7 +51828,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "IrO2Electrode"@en ; @@ -51977,7 +51842,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumManganesePhosphateElectrode"@en ; @@ -52146,7 +52011,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "IronDisulfideElectrode"@en ; "an electrode in which the primary active material consists of iron disulfide or iron disulfide compounds."@en ; @@ -52509,7 +52374,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "HgElectrode"@en ; "MercuryElectrode"@en ; @@ -52785,11 +52650,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SiliconGraphiteElectrode"@en ; @@ -52802,7 +52667,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumManganeseOxideElectrode"@en ; @@ -53004,7 +52869,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumCobaltOxideElectrode"@en ; @@ -53096,7 +52961,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NCAElectrode"@en ; @@ -53315,7 +53180,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "PbOElectrode"@en ; @@ -53401,7 +53266,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumChromiumOxideElectrode"@en ; @@ -53621,7 +53486,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LCOElectrode"@en ; @@ -53672,11 +53537,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LMOLFPElectrode"@en ; @@ -53808,10 +53673,10 @@ In either case, the magnitude of the catalytic current depends on the applied po "The universe is considered as a causally self-connected object, encompassing all other objects. For this reason is unique."@en . -[ owl:qualifiedCardinality "3"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "3"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "4"^^xsd:nonNegativeInteger @@ -53835,10 +53700,10 @@ In either case, the magnitude of the catalytic current depends on the applied po [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:minQualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:minQualifiedCardinality "2"^^xsd:nonNegativeInteger +[ owl:minQualifiedCardinality "1"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger @@ -53850,7 +53715,7 @@ In either case, the magnitude of the catalytic current depends on the applied po [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:minQualifiedCardinality "2"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger diff --git a/electrochemistry.html b/electrochemistry.html index b6bed85..3b1f419 100644 --- a/electrochemistry.html +++ b/electrochemistry.html @@ -2089,6 +2089,17 @@

HalfWavePotentialComment E1/2 is used in techniques providing a sigmoidal wave-shaped current including DC voltammetry/polarography, normal pulse voltammetry, hydrodynamic voltammetry, and tast polarography. +
+
+

ImaginaryElectricImpedance#

+ + + + + +
Elucidationthe imaginary part of the complex electric impedance

InitialDischargingVoltage#

@@ -2331,6 +2342,17 @@

LimitingMolarConductivityWikipedia Reference https://en.wikipedia.org/wiki/Molar_conductivity#Variation_of_molar_conductivity_with_dilution +

+
+

LowerCurrentLimit#

+ + + + + +
Elucidationthe lower bounding limit on the current used in the definition of an electrochemical testing protocol

LowerFrequencyLimit#

@@ -2733,6 +2755,17 @@

NetFaradaicCurrentComment I +

+
+

NominalCapacity#

+ + + + + +
Elucidationthe rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer

NominalVoltage#

@@ -2829,6 +2862,17 @@

NumberOfFiniteVolumeCellsInZElucidation number of discrete finite volume cells in a grid or sub-grid in the Z-direction +

+
+

NumberOfIterations#

+ + + + + +
Elucidationthe number of times an iterative process should occur

OhmicOverpotential#

@@ -3167,6 +3211,25 @@

ReactionRateConstantWikidata Reference https://www.wikidata.org/wiki/Q658700 +

+
+

RealElectricImpedance#

+ + + + + + + + + + + + + +
Elucidationthe imaginary part of the complex electric impedance
Alternative Label(s)ACResistance
Wikidata Referencehttps://www.wikidata.org/wiki/Q1048490

Record#

@@ -3790,6 +3853,17 @@

TransitionTimeComment In experimental practice, the latter is often taken to be the moment when the rate of varia- tion of the potential of the indicator electrode attains a maximum value. +

+
+

UpperCurrentLimit#

+ + + + + +
Elucidationthe upper bounding limit on the current used in the definition of an electrochemical testing protocol

UpperFrequencyLimit#

@@ -4536,17 +4610,6 @@

ButlerVolmerEquationWikidata Reference https://www.wikidata.org/wiki/Q903846 -

-
-

CCCVCycling#

- - - - - -
Elucidationa cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process

CadmiumBasedElectrode#

@@ -5185,6 +5248,21 @@

ConstantCurrentConstantVoltageChargingAlternative Label(s) CCCV +

+
+

ConstantCurrentConstantVoltageCycling#

+ + + + + + + + + +
Elucidationa cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process
Alternative Label(s)CCCVCycling

ConstantCurrentDischarging#

@@ -9927,6 +10005,17 @@

ReferenceElectrodeWikidata Reference https://www.wikidata.org/wiki/Q653954 +

+
+

Resting#

+ + + + + +
Elucidationa step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step.

ReversibleHydrogenElectrode#

@@ -11682,6 +11771,7 @@

hasSolventFormalElectrodePotential
  • HalfPeakPotential
  • HalfWavePotential
  • +
  • ImaginaryElectricImpedance
  • InitialDischargingVoltage
  • InititalThermodynamicTemperature
  • InstantaneousCurrent
  • @@ -11696,6 +11786,7 @@

    hasSolventLimitQuantity
  • LimitingCurrent
  • LimitingMolarConductivity
  • +
  • LowerCurrentLimit
  • LowerFrequencyLimit
  • LowerVoltageLimit
  • MagnitudeOfCurrentPulse
  • @@ -11726,6 +11817,7 @@

    hasSolventMolarElectrochemicalPotential
  • NPRatio
  • NetFaradaicCurrent
  • +
  • NominalCapacity
  • NominalVoltage
  • NumberOfCellsConnectedInParallel
  • NumberOfCellsConnectedInSeries
  • @@ -11734,6 +11826,7 @@

    hasSolventNumberOfFiniteVolumeCellsInX
  • NumberOfFiniteVolumeCellsInY
  • NumberOfFiniteVolumeCellsInZ
  • +
  • NumberOfIterations
  • OhmicOverpotential
  • OpenCircuitVoltage
  • Overpotential
  • @@ -11752,6 +11845,7 @@

    hasSolventReactionOverpotential
  • ReactionRate
  • ReactionRateConstant
  • +
  • RealElectricImpedance
  • Record
  • ReferenceThermodynamicTemperature
  • ResidualActiveMass
  • @@ -11794,6 +11888,7 @@

    hasSolventTotalEnergy
  • TotalNumberOfCycles
  • TransitionTime
  • +
  • UpperCurrentLimit
  • UpperFrequencyLimit
  • UpperVoltageLimit
  • VoltageChangeLimit
  • @@ -11846,7 +11941,6 @@

    hasSolventBodePlot
  • BoostCharging
  • ButlerVolmerEquation
  • -
  • CCCVCycling
  • CadmiumBasedElectrode
  • CaesiumBasedElectrode
  • CalciumBasedElectrode
  • @@ -11889,6 +11983,7 @@

    hasSolventConnector
  • ConstantCurrentCharging
  • ConstantCurrentConstantVoltageCharging
  • +
  • ConstantCurrentConstantVoltageCycling
  • ConstantCurrentDischarging
  • ConstantPotentialPulses
  • ConstantPotentialSignal
  • @@ -12211,6 +12306,7 @@

    hasSolventRecord
  • RectangularElectrode
  • ReferenceElectrode
  • +
  • Resting
  • ReversibleHydrogenElectrode
  • RhodiumBasedElectrode
  • RotatingDiskElectrode
  • diff --git a/electrochemistry.ttl b/electrochemistry.ttl index baa1206..d442e3c 100644 --- a/electrochemistry.ttl +++ b/electrochemistry.ttl @@ -1,6 +1,6 @@ @prefix : . @prefix bibo: . -@prefix chemsub: . +@prefix chemsub: . @prefix dcterms: . @prefix emmo: . @prefix foaf: . @@ -54,9 +54,9 @@ schema:name a owl:AnnotationProperty . dcterms:created "2022-11-25"^^xsd:date ; dcterms:creator , ; - dcterms:issued "2024-07-03"^^xsd:date ; + dcterms:issued "2024-07-05"^^xsd:date ; dcterms:license "https://creativecommons.org/licenses/by/4.0/legalcode" ; - dcterms:modified "2024-07-03"^^xsd:date ; + dcterms:modified "2024-07-05"^^xsd:date ; dcterms:publisher "EMMO" ; dcterms:source , , @@ -67,13 +67,13 @@ schema:name a owl:AnnotationProperty . bibo:status "unstable" ; vann:preferredNamespacePrefix "echem" ; vann:preferredNamespaceUri "https://w3id.org/emmo/domain/electrochemistry" ; - owl:backwardCompatibleWith "0.16.0-beta" ; + owl:backwardCompatibleWith "0.17.0-beta" ; owl:imports , , - ; - owl:priorVersion "0.16.0-beta" ; - owl:versionIRI ; - owl:versionInfo "0.17.0-beta" ; + ; + owl:priorVersion "0.17.0-beta" ; + owl:versionIRI ; + owl:versionInfo "0.18.0-beta" ; foaf:logo "https://raw.githubusercontent.com/emmo-repo/domain-electrochemistry/gh-pages/assets/img/fig/png/domain-electrochemistry-logo.png" . :electrochemistry_027d437e_3bbf_4eda_940b_e509f8d2b993 a owl:Class ; @@ -535,6 +535,14 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "R716" ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a coin case with a nominal diameter of 7.9 mm and a height of 1.65 mm"@en . +:electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b a owl:Class ; + rdfs:label "Resting"@en ; + rdfs:comment "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en ; + rdfs:subClassOf , + :electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 ; + skos:prefLabel "Resting"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en . + :electrochemistry_36444184_1100_4271_869f_7f2d983aaecb a owl:Class ; rdfs:label "P45173115" ; rdfs:comment "a prismatic case with a nominal length of 45 mm, width of 173 mm, and height of 115 mm"@en ; @@ -1564,6 +1572,15 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "TinBasedElectrode"@en ; emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "an electrode in which the primary active material consists of tin or tin compounds"@en . +:electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c a owl:Class ; + rdfs:label "PastedPlate"@en ; + rdfs:comment "plate in which the active material is applied as a paste to a conductive current collector"@en ; + rdfs:subClassOf :electrochemistry_92147e31_d015_4889_a092_04fbab033f15 ; + skos:altLabel "PastedElectrode"@en ; + skos:prefLabel "PastedPlate"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "plate in which the active material is applied as a paste to a conductive current collector"@en . + :electrochemistry_a277e420_2483_44d5_a2bc_4e421dea231a a owl:Class ; rdfs:label "R926" ; rdfs:comment "a coin case with a nominal diameter of 9.5 mm and a height of 2.6 mm"@en ; @@ -1658,10 +1675,11 @@ schema:name a owl:AnnotationProperty . emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a coin case with a nominal diameter of 11.6 mm and a height of 4.2 mm"@en . :electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e a owl:Class ; - rdfs:label "CCCVCycling"@en ; + rdfs:label "ConstantCurrentConstantVoltageCycling"@en ; rdfs:comment "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en ; rdfs:subClassOf :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; - skos:prefLabel "CCCVCycling"@en ; + skos:altLabel "CCCVCycling"@en ; + skos:prefLabel "ConstantCurrentConstantVoltageCycling"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en . :electrochemistry_ad9cdad6_66e8_471e_a7c6_b79f37c20814 a owl:Class ; @@ -1783,6 +1801,17 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "P20100141" ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a prismatic case with a nominal length of 20 mm, width of 100 mm, and height of 141 mm"@en . +:electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d a owl:Class ; + rdfs:label "FuelCell"@en ; + rdfs:comment "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; + rdfs:subClassOf :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; + skos:prefLabel "FuelCell"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q180253"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-05"@en ; + emmo:EMMO_6dd685dd_1895_46e4_b227_be9f7d643c25 "https://dbpedia.org/page/Fuel_cell"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; + emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Fuel_cell"@en . + :electrochemistry_bea04148_10d9_4eda_9cd5_8f609d7e9ff8 a owl:Class ; rdfs:label "CelsiusTemperatureMeasurement"@en ; rdfs:comment "measurement of temperature"@en ; @@ -3335,15 +3364,6 @@ schema:name a owl:AnnotationProperty . "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-26"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "interface between an electrolyte and an electrode where an electrode reaction takes place."@en . -:electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c a owl:Class ; - rdfs:label "PastedPlate"@en ; - rdfs:comment "plate in which the active material is applied as a paste to a conductive current collector"@en ; - rdfs:subClassOf :electrochemistry_92147e31_d015_4889_a092_04fbab033f15 ; - skos:altLabel "PastedElectrode"@en ; - skos:prefLabel "PastedPlate"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "plate in which the active material is applied as a paste to a conductive current collector"@en . - :electrochemistry_a462859d_d8bd_48ea_8bde_1576f1248a1e a owl:Class ; rdfs:label "SilverElectrode"@en ; rdfs:comment "electrode in the form of foil, mesh, wire, rod, tube, powder, pellets, or single crystal of silver"@en ; @@ -3459,17 +3479,6 @@ of other configurations are used."""@en . emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-19"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "part which insures insulation between the plate (electrode) edges and adjacent plates (electrodes) and the container side walls"@en . -:electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d a owl:Class ; - rdfs:label "FuelCell"@en ; - rdfs:comment "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - rdfs:subClassOf :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; - skos:prefLabel "FuelCell"@en ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q180253"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-05"@en ; - emmo:EMMO_6dd685dd_1895_46e4_b227_be9f7d643c25 "https://dbpedia.org/page/Fuel_cell"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Fuel_cell"@en . - :electrochemistry_bed5b5f9_b89d_45e3_a8c2_81b70ae21847 a owl:Class ; rdfs:label "SeriesParallelConnection"@en ; rdfs:comment "arrangement of cells or batteries wherein in series connected cells or batteries are connected in parallel."@en ; @@ -4518,15 +4527,20 @@ schema:Person a owl:Class ; skos:prefLabel "BimetallicOxideElectrode"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "an electrode consisting of two metal oxide active materials"@en . -:electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 a owl:Class ; - rdfs:label "GalvanostaticProcess"@en ; - rdfs:comment "a process in which the electric current is kept constant"@en ; - rdfs:subClassOf [ a owl:Restriction ; - owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; 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+ emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; + emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "material which reacts chemically to produce electric energy when the cell discharges", + "in secondary cells, the active material is restored to its original state during charge"@en . :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 a owl:Class ; rdfs:label "PotentiometricStrippingAnalysis"@en ; @@ -4601,20 +4615,15 @@ schema:Person a owl:Class ; "The electrode (or interfacial) reaction involves all the processes (chemical reaction, structural reorganization, adsorption) accompanying the charge transfer step."@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1351/goldbook.E01960"@en . -:electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 a owl:Class ; - rdfs:label "ActiveMaterial"@en ; - rdfs:comment "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; 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+ rdfs:label "GalvanostaticProcess"@en ; + rdfs:comment "a process in which the electric current is kept constant"@en ; + rdfs:subClassOf [ a owl:Restriction ; + owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; + owl:someValuesFrom :electrochemistry_22725105_c941_4b14_a4a2_fcb627958607 ], + :electrochemistry_5548f188_df00_4c05_ae98_7846e92efe36 ; + skos:prefLabel "GalvanostaticProcess"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a process in which the electric current is kept constant"@en . :electrochemistry_8a1c9a7b_978c_4421_a9c1_d0b07b42aab9 a owl:Class ; rdfs:label "ChemicalReaction"@en ; @@ -4953,9 +4962,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "extremely resistant to many chemicals, impermeable to gases and liquids, and has good electrical conductivity, high hardness and strength, and biocompatibility"@en . + owl:annotatedTarget "electrode made of glassy carbon material with an intertwined graphitic ribbon structure, formed by pyrolysis of a resol precursor at temperatures up to 3000 °C"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -4976,28 +4985,22 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "A disc electrode that is embedded in the centre of a cylinder which rotates in solution around the longitudinal cylinder axis."@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "composite system in which the supplied electric energy mainly produces chemical reactions or, conversely, in which the energy released by chemical reactions is mainly delivered by the system as electric energy"@en . + owl:annotatedTarget "a system containing two electrodes that allow transport of electrons, separated by an electrolyte that allows movement of ions but blocks movement of electrons."@en . [] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "system that consists of at least two electron conductors (electrodes) in contact with ionic conductors (electrolytes)"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" . + owl:annotatedTarget "composite system in which the supplied electric energy mainly produces chemical reactions or, conversely, in which the energy released by chemical reactions is mainly delivered by the system as electric energy"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "glassy carbon combines glass-like mechanical characteristics with physical properties similar to graphite, owing to its “graphene ribbon” structure"@en . - -[] a owl:Axiom ; - dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "a system containing two electrodes that allow transport of electrons, separated by an electrolyte that allows movement of ions but blocks movement of electrons."@en . + owl:annotatedTarget "extremely resistant to many chemicals, impermeable to gases and liquids, and has good electrical conductivity, high hardness and strength, and biocompatibility"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5033,13 +5036,13 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "one of the most frequently used working electrodes"@en . + owl:annotatedTarget "glassy carbon combines glass-like mechanical characteristics with physical properties similar to graphite, owing to its “graphene ribbon” structure"@en . [] a owl:Axiom ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; - owl:annotatedTarget "in secondary cells, the active material is restored to its original state during charge"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedTarget "material that is oxidized or reduced at an electrode in an electrochemical cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5047,12 +5050,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; owl:annotatedTarget "material which reacts chemically to produce electric energy when the cell discharges" . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; - owl:annotatedTarget "material that is oxidized or reduced at an electrode in an electrochemical cell"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5061,9 +5058,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "electrode made of glassy carbon material with an intertwined graphitic ribbon structure, formed by pyrolysis of a resol precursor at temperatures up to 3000 °C"@en . + owl:annotatedTarget "one of the most frequently used working electrodes"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5083,18 +5080,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_83f2b1e9_cb67_4dbf_977f_ba54bbae374f ; owl:annotatedTarget "charge during which the electric current is maintained at a constant value regardless of the battery voltage or temperature"@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; - owl:annotatedTarget "Electrolyte solution in the anodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the anode is placed."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; owl:annotatedTarget "electrolyte on the anode side of an electrochemical cell that is divided into compartments"@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; + owl:annotatedTarget "Electrolyte solution in the anodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the anode is placed."@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5133,15 +5130,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_8d3bf304_78e4_4e99_abe1_6ab429e44ed1 ; - owl:annotatedTarget "a sealed cell may be equipped with a safety device to prevent a dangerously high internal pressure and is designed to operate during its life in its original sealed state"@en . + owl:annotatedTarget "cell which remains closed and does not release either gas or liquid when operated within the limits specified by the manufacturer"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_8d3bf304_78e4_4e99_abe1_6ab429e44ed1 ; - owl:annotatedTarget "cell which remains closed and does not release either gas or liquid when operated within the limits specified by the manufacturer"@en . + owl:annotatedTarget "a sealed cell may be equipped with a safety device to prevent a dangerously high internal pressure and is designed to operate during its life in its original sealed state"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5150,10 +5147,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "capacitor consisting of a metallic plate as first conductor, a very thin oxide film formed on the metal as the dielectric and an electrolyte as second conductor"@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_06d8e1ee_924a_4915_998d_33a69f41dadc ; - owl:annotatedTarget "operation during which an electrochemical cell supplies electric energy as the result of chemical changes within the cell"@en . + owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; + owl:annotatedTarget "two-step electrochemical measurement in which 1) material is accumulated at an electrode and 2) the material is removed by chemical reaction or electrochemically at constant current with measurement of electrode potential"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5161,6 +5158,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; owl:annotatedTarget "historically for the analysis of metal ions, mercury ions were added to the test solution to form a mercury amalgam when reduced. Alternatively, an HMDE or MFE was used and the oxidizing agent added after amalgam formation. However, the toxicity of mercury and its compounds have all but precluded the present-day use of mercury"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_06d8e1ee_924a_4915_998d_33a69f41dadc ; + owl:annotatedTarget "operation during which an electrochemical cell supplies electric energy as the result of chemical changes within the cell"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5179,12 +5182,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; owl:annotatedTarget "the time between changes in potential in step 2 is related to the concentration of analyte in the solution"@en . -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; - owl:annotatedTarget "two-step electrochemical measurement in which 1) material is accumulated at an electrode and 2) the material is removed by chemical reaction or electrochemically at constant current with measurement of electrode potential"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5211,15 +5208,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_9ee6e728_e8f5_4b36_a045_d63da69dfc85 ; - owl:annotatedTarget "overcharge is also the act of charging beyond a certain limit specified by the manufacturer"@en . + owl:annotatedTarget "continued charging of a fully charged secondary cell or battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_9ee6e728_e8f5_4b36_a045_d63da69dfc85 ; - owl:annotatedTarget "continued charging of a fully charged secondary cell or battery"@en . + owl:annotatedTarget "overcharge is also the act of charging beyond a certain limit specified by the manufacturer"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5227,6 +5224,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_9f466223_e20a_474d_ac4d_6d4b6131c275 ; owl:annotatedTarget "an electrode that holds its potential essentially constant by efficiently allowing electric current to pass"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_a0580fa9_5073_44af_b33e_7adbc83892d0 ; + owl:annotatedTarget "electrode reaction in which oxidation occurs at the anode"@en . + [] a owl:Axiom ; dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5242,14 +5245,14 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0580fa9_5073_44af_b33e_7adbc83892d0 ; - owl:annotatedTarget "electrode reaction in which oxidation occurs at the anode"@en . + owl:annotatedSource :electrochemistry_a0a619d7_da95_41f0_8bc3_9c19d636d543 ; + owl:annotatedTarget "electrode that serves only as a source or sink for electrons without playing a chemical role in the electrode reaction"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0a619d7_da95_41f0_8bc3_9c19d636d543 ; - owl:annotatedTarget "electrode that serves only as a source or sink for electrons without playing a chemical role in the electrode reaction"@en . + owl:annotatedSource :electrochemistry_a0fcb105_587f_45d8_a89a_46dc8f745069 ; + owl:annotatedTarget "partial or complete external covering of a cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5260,14 +5263,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0fcb105_587f_45d8_a89a_46dc8f745069 ; - owl:annotatedTarget "partial or complete external covering of a cell"@en . - -[] a owl:Axiom ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c ; - owl:annotatedTarget "plate in which the active material is applied as a paste to a conductive current collector"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedSource :electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e ; + owl:annotatedTarget "process inside an electrolytic cell used to coat a conductive object with a layer of a material"@en . [] a owl:Axiom ; dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; @@ -5278,8 +5275,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e ; - owl:annotatedTarget "process inside an electrolytic cell used to coat a conductive object with a layer of a material"@en . + owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; + owl:annotatedTarget "component of a cell which permits the flow of gas in one direction only"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5287,12 +5284,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; owl:annotatedTarget "a valve has a characteristic venting or opening and closing pressure"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; - owl:annotatedTarget "component of a cell which permits the flow of gas in one direction only"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5305,6 +5296,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a462859d_d8bd_48ea_8bde_1576f1248a1e ; owl:annotatedTarget "electrode in the form of foil, mesh, wire, rod, tube, powder, pellets, or single crystal of silver"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; + owl:annotatedTarget "a chemical reaction in an electrolyte involving a transfer of electrons between chemical components or between chemical components and an electrode"@en . + [] a owl:Axiom ; dcterms:source "Bockris, J. O'M. and Despić, . Aleksandar R. (2011, December 15). Electrochemical reaction. Encyclopedia Britannica. https://www.britannica.com/science/electrochemical-reaction" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5317,12 +5314,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; owl:annotatedTarget "the electrode reaction can also involve other chemical reactions including subreactions on a cell electrode"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; - owl:annotatedTarget "a chemical reaction in an electrolyte involving a transfer of electrons between chemical components or between chemical components and an electrode"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5355,15 +5346,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_ae56cce3_7a7c_4e53_bb58_31e0d642d47e ; - owl:annotatedTarget "this flame front may originate from a spark or an external naked flame igniting combustible electrolysis gas"@en . + owl:annotatedTarget "vent of special design which provides protection against the propagation of a flame front from or into the interior of a secondary cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_ae56cce3_7a7c_4e53_bb58_31e0d642d47e ; - owl:annotatedTarget "vent of special design which provides protection against the propagation of a flame front from or into the interior of a secondary cell"@en . + owl:annotatedTarget "this flame front may originate from a spark or an external naked flame igniting combustible electrolysis gas"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5395,6 +5386,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_b525a629_a679_464f_bc5b_b49d2fc82686 ; owl:annotatedTarget "an electrochemical cell for conductivity measurements"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; + owl:annotatedTarget "by convention, cell electrode at which an oxidation reaction occurs"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5419,12 +5416,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; owl:annotatedTarget "the concepts of “anode” and “cathode” are related only to the direction of electron flow, not to the polarity of the electrodes"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; - owl:annotatedTarget "by convention, cell electrode at which an oxidation reaction occurs"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5433,15 +5424,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_b79d4f9e_5727_4895_8d7f_5fc18d83eb90 ; - owl:annotatedTarget "in a galvanic cell, parasitic reactions may cause inefficiencies or loss of performance"@en . + owl:annotatedTarget "an unwanted side reaction"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_b79d4f9e_5727_4895_8d7f_5fc18d83eb90 ; - owl:annotatedTarget "an unwanted side reaction"@en . + owl:annotatedTarget "in a galvanic cell, parasitic reactions may cause inefficiencies or loss of performance"@en . [] a owl:Axiom ; dcterms:source "IEEE Standard Glossary of Stationary Battery Terminology (2016), https://doi.org/10.1109/IEEESTD.2016.7552407" ; @@ -5481,12 +5472,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_bbae1ef4_0a95_4e7d_9932_1bf939129eef ; owl:annotatedTarget "current-potential curve in a voltammetry experiment"@en . -[] a owl:Axiom ; - dcterms:source "https://en.wikipedia.org/wiki/Square_wave" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0e33278b_639f_412d_9abd_64c3790026ef ; - owl:annotatedTarget "Periodic potential where the amplitude alternates at a steady frequency between fixed minimum and maximum values, with the same duration at minimum and maximum."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5500,10 +5485,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "part which insures insulation between the plate (electrode) edges and adjacent plates (electrodes) and the container side walls"@en . [] a owl:Axiom ; + dcterms:source "https://en.wikipedia.org/wiki/Square_wave" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d ; - owl:annotatedTarget "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedSource :electrochemistry_0e33278b_639f_412d_9abd_64c3790026ef ; + owl:annotatedTarget "Periodic potential where the amplitude alternates at a steady frequency between fixed minimum and maximum values, with the same duration at minimum and maximum."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5535,12 +5520,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_c3f4b34a_0e2c_46f3_baab_4ebd2682d26f ; owl:annotatedTarget "An ionic liquid is an electrolyte composed of a salt that is liquid below 100 °C. Ionic liquids have found uses in electrochemical analysis, because their unconventional properties include a negligible vapor pressure, a high thermal and electrochemical stability, and exceptional dissolution properties for both organic and inorganic chemical species."@en . -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; - owl:annotatedTarget "Electron conductor in an electrochemical cell connected to the external circuit."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5553,6 +5532,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_c55ec02c_b727_4df1_97ce_91d7bb5d5e91 ; owl:annotatedTarget "unplanned escape of electrolyte, gas or other material from a cell or battery"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_c610d869_cc03_44f0_b40d_ca86e945b9c9 ; + owl:annotatedTarget "cell from which electrolyte cannot escape regardless of its orientation"@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5562,8 +5547,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_c610d869_cc03_44f0_b40d_ca86e945b9c9 ; - owl:annotatedTarget "cell from which electrolyte cannot escape regardless of its orientation"@en . + owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; + owl:annotatedTarget "electronically conductive part in electric contact with a medium of lower electronic conductivity and intended to perform one or more of the functions of emitting charge carriers to or receiving charge carriers from that medium or to establish an electric field in that medium"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5579,21 +5564,21 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; - owl:annotatedTarget "by convention, an oxidation reaction occurs during discharge"@en . + owl:annotatedTarget "for a device having two electrodes, that electrode having the lower electric potential"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; - owl:annotatedTarget "electronically conductive part in electric contact with a medium of lower electronic conductivity and intended to perform one or more of the functions of emitting charge carriers to or receiving charge carriers from that medium or to establish an electric field in that medium"@en . + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; + owl:annotatedTarget "by convention, an oxidation reaction occurs during discharge"@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; - owl:annotatedTarget "for a device having two electrodes, that electrode having the lower electric potential"@en . + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; + owl:annotatedTarget "Electron conductor in an electrochemical cell connected to the external circuit."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5604,8 +5589,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0f827b54_370d_4c63_99a6_80f13b24e55e ; - owl:annotatedTarget "evolution of gas resulting from electrolysis of the water in the electrolyte of a cell"@en . + owl:annotatedSource :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; + owl:annotatedTarget "set of operations that is carried out on a secondary cell or battery and is repeated regularly in the same sequence."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5622,14 +5607,14 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; - owl:annotatedTarget "set of operations that is carried out on a secondary cell or battery and is repeated regularly in the same sequence."@en . + owl:annotatedSource :electrochemistry_d5da9948_e95b_4f12_a2d2_10a48f390c52 ; + owl:annotatedTarget "arrangement of cells or batteries wherein parallel connected cells or batteries are connected in series."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_d5da9948_e95b_4f12_a2d2_10a48f390c52 ; - owl:annotatedTarget "arrangement of cells or batteries wherein parallel connected cells or batteries are connected in series."@en . + owl:annotatedSource :electrochemistry_0f827b54_370d_4c63_99a6_80f13b24e55e ; + owl:annotatedTarget "evolution of gas resulting from electrolysis of the water in the electrolyte of a cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5655,18 +5640,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_df78745e_f9db_4830_88f0_8ce074fcb8ff ; owl:annotatedTarget "liquid metal electrode used in polarography"@en . +[] a owl:Axiom ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; + owl:annotatedTarget "electrochemical cell in which chemical reactions occur spontaneously and chemical energy is converted into electrical energy."@en . + [] a owl:Axiom ; dcterms:references "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; owl:annotatedTarget "An electrochemical cell that spontaneously produces work."@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_113e0469_8ae0_407f_892d_4b988f8d8a08 ; - owl:annotatedTarget "electrochemical cell that has two half-cells separated by a wall permeable to ions, both containing the same electrolyte differing only in their temperatures."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5674,16 +5659,22 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "Electrochemical cell intended to produce electric energy."@en . [] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; - owl:annotatedTarget "electrochemical cell in which chemical reactions occur spontaneously and chemical energy is converted into electrical energy."@en . + owl:annotatedSource :electrochemistry_e2a1dae1_05e4_4bd1_a39d_0eb10db482bc ; + owl:annotatedTarget "method of separating and neutralizing ions by an electric current in an electrolytic cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e2a1dae1_05e4_4bd1_a39d_0eb10db482bc ; - owl:annotatedTarget "method of separating and neutralizing ions by an electric current in an electrolytic cell"@en . + owl:annotatedSource :electrochemistry_113e0469_8ae0_407f_892d_4b988f8d8a08 ; + owl:annotatedTarget "electrochemical cell that has two half-cells separated by a wall permeable to ions, both containing the same electrolyte differing only in their temperatures."@en . + +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; + owl:annotatedTarget "electrochemical cell intended to produce chemical reactions"@en . [] a owl:Axiom ; dcterms:references "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; @@ -5697,18 +5688,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; owl:annotatedTarget "Electrochemical cell in which electrical energy is converted into chemical energy."@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; - owl:annotatedTarget "electrochemical cell intended to produce chemical reactions"@en . - -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_1152ae6b_8b57_4d99_912e_40c6a29342fb ; - owl:annotatedTarget "mass m of electrochemically-transformed substance is proportional to the charge Q passed, m ∝ Q."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5721,6 +5700,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_ec1dce8b_bb46_41a9_b532_6bed381aa557 ; owl:annotatedTarget "secondary cell having a cover provided with an opening through which products of electrolysis and evaporation are allowed to escape freely from the cell to the atmosphere"@en . +[] a owl:Axiom ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_1152ae6b_8b57_4d99_912e_40c6a29342fb ; + owl:annotatedTarget "mass m of electrochemically-transformed substance is proportional to the charge Q passed, m ∝ Q."@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5739,12 +5724,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f0c24970_4c14_4207_bd78_5f2181a67085 ; owl:annotatedTarget "the process of forming a film or a bulk material using an electrochemical process where the electrons are supplied by an external power supply"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_1355816f_a2b5_4800_8001_fc888f5d6b1b ; - owl:annotatedTarget "instrument intended to measure the value of a voltage."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5757,6 +5736,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f47611a2_e081_47f0_b287_3fda5f706154 ; owl:annotatedTarget "chemical reaction which occurs in addition to the main process"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; + owl:annotatedTarget "electrode reaction in which reduction occurs at the cathode"@en . + +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_1355816f_a2b5_4800_8001_fc888f5d6b1b ; + owl:annotatedTarget "instrument intended to measure the value of a voltage."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5769,12 +5760,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; owl:annotatedTarget "electrode reaction, where the energy of electrons in the working electrode is higher than the LUMO orbital of the substrate"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; - owl:annotatedTarget "electrode reaction in which reduction occurs at the cathode"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5782,10 +5767,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "electrode that responds to one, or more than one, species in the solution being investigated, with no appreciable change of bulk solution composition during the measurement"@en . [] a owl:Axiom ; - dcterms:source "IUPAC. Compendium of Chemical Terminology, 2nd ed. (the \"Gold Book\"). Compiled by A. D. McNaught and A. Wilkinson. Blackwell Scientific Publications, Oxford (1997). Online version (2019-) created by S. J. Chalk. ISBN 0-9678550-9-8. https://doi.org/10.1351/goldbook." ; + dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_15325775_6d4c_4192_82f1_e4feca9de426 ; - owl:annotatedTarget "A membrane having ion-exchange groups:"@en . + owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; + owl:annotatedTarget "a material in which the mobile species are ions and free movement of electrons is blocked."@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5799,18 +5784,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; owl:annotatedTarget "liquid or solid substance containing mobile ions that render it conductive"@en . +[] a owl:Axiom ; + dcterms:source "IUPAC. Compendium of Chemical Terminology, 2nd ed. (the \"Gold Book\"). Compiled by A. D. McNaught and A. Wilkinson. Blackwell Scientific Publications, Oxford (1997). Online version (2019-) created by S. J. Chalk. ISBN 0-9678550-9-8. https://doi.org/10.1351/goldbook." ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_15325775_6d4c_4192_82f1_e4feca9de426 ; + owl:annotatedTarget "A membrane having ion-exchange groups:"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; owl:annotatedTarget "substance that provides ions on dissolution in a solvent or on melting"@en . -[] a owl:Axiom ; - dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; - owl:annotatedTarget "a material in which the mobile species are ions and free movement of electrons is blocked."@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5823,18 +5808,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_fb9bf7cb_dd4b_4391_99a1_628263dd6940 ; owl:annotatedTarget "measuring instrument to obtain the electrical charge passed in an experiment, or to produce a known amount of substance in a titration."@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; - owl:annotatedTarget "Electrolyte solution in the cathodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the cathode is placed."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; owl:annotatedTarget "electrolyte on the cathode side of an electrochemical cell that is divided into compartments."@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; + owl:annotatedTarget "Electrolyte solution in the cathodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the cathode is placed."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5931,18 +5916,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_2d32a81a_2148_41bd_84fb_467aa8de4a8f ; owl:annotatedTarget "foil, wire, disc, or mesh electrode made of platinum, which is the most commonly used metallic working electrode in electrochemistry"@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; - owl:annotatedTarget "An interfacial reaction that necessarily involves a charge-transfer step."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; owl:annotatedTarget "electrochemical reaction involving the transfer of electrons between electrolyte and electrode"@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; + owl:annotatedTarget "An interfacial reaction that necessarily involves a charge-transfer step."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5957,15 +5942,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_328c6e36_3706_4d92_abae_432fa3adb2a0 ; - owl:annotatedTarget "a cell baffle has a second function in protecting the plate pack from damage by objects inserted through the filling hole"@en . + owl:annotatedTarget "internal component used to reduce the amount of electrolyte loss due to electrolyte spray being carried in the gas and/or by electrolyte movement"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_328c6e36_3706_4d92_abae_432fa3adb2a0 ; - owl:annotatedTarget "internal component used to reduce the amount of electrolyte loss due to electrolyte spray being carried in the gas and/or by electrolyte movement"@en . + owl:annotatedTarget "a cell baffle has a second function in protecting the plate pack from damage by objects inserted through the filling hole"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5979,6 +5964,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_34bc54e3_de4c_41f8_8d3a_d77c951ee23a ; owl:annotatedTarget "needle-like or tree-like formation of crystalline growth formed during deposition of a material"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; + owl:annotatedTarget "by convention, cell electrode at which, a reduction reaction occurs"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5997,12 +5988,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; owl:annotatedTarget "the concepts of “anode” and “cathode” are related only to the direction of electron flow, not to the polarity of the electrodes"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; - owl:annotatedTarget "by convention, cell electrode at which, a reduction reaction occurs"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -6023,15 +6008,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_3f6c9e09_5f23_41cc_9f85_7de365cef089 ; - owl:annotatedTarget "electrolyte creep is sometimes indicated by the presence of a visible solid deposit or wet spots"@en . + owl:annotatedTarget "gradual and slow spreading of an electrolyte film on the external surface of a cell or battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_3f6c9e09_5f23_41cc_9f85_7de365cef089 ; - owl:annotatedTarget "gradual and slow spreading of an electrolyte film on the external surface of a cell or battery"@en . + owl:annotatedTarget "electrolyte creep is sometimes indicated by the presence of a visible solid deposit or wet spots"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -6041,9 +6026,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_04f28ce3_251d_429e_aa85_ab3eb45bbcd2 ; - owl:annotatedTarget "in lithium batteries thermal runaway may cause melting of lithium"@en . + owl:annotatedTarget "unstable condition arising during constant voltage charge in which the rate of heat dissipation capability, causing a continuous temperature increase with resulting further charge current increase, which can lead to the destruction of the battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -6077,9 +6062,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_04f28ce3_251d_429e_aa85_ab3eb45bbcd2 ; - owl:annotatedTarget "unstable condition arising during constant voltage charge in which the rate of heat dissipation capability, causing a continuous temperature increase with resulting further charge current increase, which can lead to the destruction of the battery"@en . + owl:annotatedTarget "in lithium batteries thermal runaway may cause melting of lithium"@en . 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:electrochemistry_097ea615_c209_4edd_a1a1_5eea71d98fe8 "acimp/ohms"@en . + emmo:EMMO_e218c625_6a39_47a9_8d08_a2ef41c152a9 rdfs:subClassOf :electrochemistry_02eb0465_4f94_453c_8c1f_5ddf80134634 ; skos:altLabel "GravimetricEnergyDensity"@en ; :electrochemistry_811aafc3_0c6d_470e_b67e_ff5c82992609 "CmpEng(mWh/g)"@en . @@ -1997,14 +2041,6 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog skos:prefLabel "TemperatureLimit"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the temperature of a system"@en . -:electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 a owl:Class ; - rdfs:label "RatedCapacity"@en ; - rdfs:comment "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en ; - rdfs:subClassOf :electrochemistry_791c1915_a791_4450_acd8_7f94764743b5 ; - skos:prefLabel "RatedCapacity"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-03-15"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en . - :electrochemistry_9ed7210c_c4fa_467b_822d_ba12f885bdf4 a owl:Class ; rdfs:label "ConcentrationOverpotential"@en ; rdfs:comment "The concentration overpotential of an electrode reaction at a given electrode current density (c.d.) is basically the difference in equilibrium potentials across the diffusion layer. More precisely, it is the potential of a reference electrode (of the same electrode reaction as the working electrode ) with the interfacial concentrations which establish themselves at c.d., relative to the potential of a similar reference electrode with the concentrations of the bulk solution. From such a measured potential difference, with c.d. flowing, one needs to subtract the ohmic potential drop prevailing between the two electrodes."@en, @@ -2110,6 +2146,14 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog skos:prefLabel "NumberOfFiniteVolumeCells"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "number of discrete finite volume cells in a grid or sub-grid"@en . +:electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 a owl:Class ; + rdfs:label "RatedCapacity"@en ; + rdfs:comment "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en ; + rdfs:subClassOf :electrochemistry_791c1915_a791_4450_acd8_7f94764743b5 ; + skos:prefLabel "RatedCapacity"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-03-15"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en . + :electrochemistry_cc519a19_b8d5_4e3f_b893_3a884888ad79 a owl:Class ; rdfs:label "MaximumTemperature"@en ; rdfs:comment "the maximum allowable temperature"@en ; @@ -2186,14 +2230,6 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa :electrochemistry_a07dd85b_d0df_4d5d_8b0c_14d20ea3fe45 "current"@en ; :electrochemistry_ea9f4dba_8ca2_419e_9cdf_ce54e9ebbd46 "Current (A)"@en . -:electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 a owl:Class ; - rdfs:label "CurrentLimit"@en ; - rdfs:comment "limit on the electric current of an electrical system"@en ; - rdfs:subClassOf emmo:EMMO_c995ae70_3b84_4ebb_bcfc_69e6a281bb88, - :electrochemistry_b395a244_3a75_4737_be38_981bfa1277fe ; - skos:prefLabel "CurrentLimit"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the electric current of an electrical system"@en . - :electrochemistry_900e357f_2ee3_425a_a0b6_322661117787 a owl:Class ; rdfs:label "ElectrochemicalProperty"@en ; rdfs:subClassOf emmo:EMMO_909415d1_7c43_4d5e_bbeb_7e1910159f66 ; @@ -2292,6 +2328,14 @@ foaf:Person a owl:Class ; emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Faradaic_current"@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://goldbook.iupac.org/terms/view/F02321"@en . +:electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 a owl:Class ; + rdfs:label "CurrentLimit"@en ; + rdfs:comment "limit on the electric current of an electrical system"@en ; + rdfs:subClassOf emmo:EMMO_c995ae70_3b84_4ebb_bcfc_69e6a281bb88, + :electrochemistry_b395a244_3a75_4737_be38_981bfa1277fe ; + skos:prefLabel "CurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the electric current of an electrical system"@en . + :electrochemistry_1cd1d777_e67b_47eb_81f1_edac35d9f2c6 a owl:Class ; rdfs:label "Overpotential"@en ; rdfs:comment "difference between the electrode potential with current flow, and the electrode potential without current flow, i.e. the equilibrium potential"@en, diff --git a/versions/0.12.1-beta/electrochemistry-inferred.ttl b/versions/0.12.1-beta/electrochemistry-inferred.ttl index f4fa0f9..c704a22 100644 --- a/versions/0.12.1-beta/electrochemistry-inferred.ttl +++ b/versions/0.12.1-beta/electrochemistry-inferred.ttl @@ -7,7 +7,7 @@ @base . rdf:type owl:Ontology ; - owl:versionIRI ; + owl:versionIRI ; ""@en , "CHAMEO is a domain ontology designed to model the common aspects across the different characterisation techniques and methodologies."@en , """Defines physical quantities in the International System of Quantities (ISQ). ISQ was made an official ISO standard in 2009 and is defined in the ISO/IEC 80000 standard. @@ -146,12 +146,12 @@ The symbolic module includes symbols, symbolic constructs and formal languages." "https://w3id.org/emmo/domain/characterisation-methodology/chameo" ; "2024-04-12" , "2024-06-23"^^xsd:date , - "2024-07-03"^^xsd:date ; + "2024-07-05"^^xsd:date ; "https://creativecommons.org/licenses/by/4.0/legalcode" , "https://creativecommons.org/licenses/by/4.0/legalcode"@en ; "2024-04-12" , "2024-06-23"^^xsd:date , - "2024-07-03"^^xsd:date ; + "2024-07-05"^^xsd:date ; "EMMC ASBL" , "EMMC ASBL"@en , """EMMC ASBL @@ -241,11 +241,11 @@ We kindly acknowledge NIST for reusing their content, including the selection of "You can contact EMMO Authors via emmo@emmc.eu"@en ; owl:backwardCompatibleWith "" , " " , - "0.16.0-beta" ; - owl:priorVersion "0.16.0-beta" , + "0.17.0-beta" ; + owl:priorVersion "0.17.0-beta" , "0.5.0-beta" , "1.0.0-beta2" ; - owl:versionInfo "0.17.0-beta" , + owl:versionInfo "0.18.0-beta" , "0.6.0-beta" , "1.0.0-beta3" , "1.0.0-beta7" ; @@ -2333,7 +2333,7 @@ While the EMMO FOL introduces the quantum causality relation C(x,y) as primitive rdf:type owl:ObjectProperty ; rdfs:subPropertyOf ; rdfs:domain ; - rdfs:range ; + rdfs:range ; "hasSolvent"@en . @@ -2364,7 +2364,7 @@ While the EMMO FOL introduces the quantum causality relation C(x,y) as primitive rdf:type owl:ObjectProperty ; rdfs:subPropertyOf ; rdfs:domain ; - rdfs:range ; + rdfs:range ; "hasSolute"@en . @@ -34532,7 +34532,7 @@ Wikipedia"""@en ; , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "ZincElectrode"@en ; "an electrode in which the main active material is zinc metal"@en ; @@ -34555,7 +34555,7 @@ Wikipedia"""@en ; rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "LithiumElectrode"@en ; "an electrode in which the active material is lithium metal" . @@ -44391,164 +44391,11 @@ Wear is defined as the progressive removal of the material from a solid surface "InChI=1S/Pb" . -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0139937b_2724_4864_84fb_f14bcfb83538 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0bdf0bb9_41fc_455d_af11_a249e24acdf6 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0f2f65a7_5cc4_4c86_a4d0_676771c646f1 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_250fa43e_1f26_4ed8_b787_91a2325a8e7b - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_25f6ff4c_53ad_4837_97c4_aa6f06099bb5 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_2a540939_3908_4f85_92f9_c46da7d4e9cb - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_2a87ca10_fc6a_4d61_b48c_d9790a566ee3 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_3899a9c9_9b34_443e_8ce6_0257589bb38a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_3ac62305_acd6_4312_9e31_4f824bd2530d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_4126ee09_b9c6_4694_bf33_0d8970e05f72 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_4c62d334_a124_40b3_9fd1_fe713d01a6af - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_5088ad54_b37d_4ee1_a086_d6c17e644f9a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_5cee19d2_f916_4264_a8ed_efed13a808d2 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_68c0876b_cb62_41cd_846d_95cc9d9a8733 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_68f9b85e_340f_46ec_96da_ebb6bd62f5fd - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_73d4606c_7460_4a5c_9413_793bdf35753e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_7dc738d6_74f2_489e_ae84_a6dbdf627f2e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_848003a2_71ee_4967_8039_354c907ec7f4 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_97439fbb_155f_433d_9edd_d510cd491f24 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_9bd78e1c_a4dc_41b6_8013_adb51df1ffdc - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_9da78aea_d436_40e2_a68f_c3dee32b825e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_aa8e9cc4_5f66_4307_b1c8_26fac7653a90 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_acdb232f_8041_4e11_8a11_5db2d2baae4d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_b01771a9_218a_4b01_b20f_4021cfa0b7d5 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_b3815a7f_f64a_48f6_b0ce_d0032578c699 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c109ca45_08c7_4436_a818_a9c575785e2f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c28a0967_ed23_48cc_a14e_a651d75a19db - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c5582dae_ccff_4fbe_adaa_078091054640 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c728b6b9_449a_45ff_b5ae_6b7968708f0d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_cd17ca33_ae3d_4738_8930_547673bf6c1f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_cdd18f0c_e7b3_4d09_b3dd_c09fe4b1adba - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_d53259a7_0d9c_48b9_a6c1_4418169df303 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_d673ceb2_3045_4e2e_8cad_56f5169b542f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_db74b6b7_09fc_40db_a7d5_6eb86b69192a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_dc5fb846_1824_40f8_9834_81f118aa1c2d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_dcdbdbed_2e20_40d1_a7a5_5761de7f0618 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_e1e6ff98_0725_4d27_ab21_2ca5a95371f0 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_e8fafdc8_6cd3_4dd0_9630_10ca8e3f1827 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_f3e7979a_e3ef_450a_8762_7d8778afe478 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_f7525766_90cf_43e9_8932_7cb3b14f676f - rdf:type owl:Class . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626 + rdf:type owl:Class ; + rdfs:subClassOf ; + "ImaginaryElectricImpedance"@en ; + "the imaginary part of the complex electric impedance"@en . ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_01260656_ac32_472e_9513_a607366538ec @@ -44872,11 +44719,11 @@ Wear is defined as the progressive removal of the material from a solid surface rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCLCOElectrode"@en ; @@ -45639,7 +45486,7 @@ and t* through mathematical models, provided that the long-time potential- deter , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LFPElectrode"@en ; @@ -46241,7 +46088,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "PtElectrode"@en ; "PlatinumElectrode"@en ; @@ -46343,7 +46190,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SiliconOxideGraphiteElectrode"@en ; @@ -46477,7 +46324,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "FTOElectrode"@en ; @@ -46500,7 +46347,7 @@ Aluminum foil"""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "NiOOHElectrode"@en , "NickelOxyhydroxideElectrode"@en ; @@ -46544,6 +46391,14 @@ Aluminum foil"""@en . "a coin case with a nominal diameter of 7.9 mm and a height of 1.65 mm"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b + rdf:type owl:Class ; + rdfs:subClassOf , + ; + "Resting"@en ; + "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 rdf:type owl:Class ; rdfs:subClassOf ; @@ -46811,6 +46666,13 @@ Aluminum foil"""@en . "A material relation in electrochemistry."@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45 + rdf:type owl:Class ; + rdfs:subClassOf ; + "UpperCurrentLimit"@en ; + "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3e54f9e3_a31d_4821_9bfb_ef953a42c35b rdf:type owl:Class ; rdfs:subClassOf , @@ -46981,7 +46843,7 @@ Aluminum foil"""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNMOElectrode"@en ; @@ -47201,11 +47063,11 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCLMOElectrode"@en ; @@ -47294,7 +47156,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumNickelPhosphateElectrode"@en ; @@ -47549,7 +47411,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumIronPhosphateElectrode"@en ; @@ -47904,7 +47766,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "CarbonMonofluorideElectrode"@en ; "electrode in which the active material is carbon monofluoride"@en ; @@ -48131,7 +47993,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "HardCarbonElectrode"@en ; "electrode in which the active material is hard carbon"@en . @@ -48291,7 +48153,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "SAE"@en ; "SolidAmalgamElectrode"@en ; @@ -48426,7 +48288,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LTOElectrode"@en ; @@ -48518,20 +48380,13 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ] . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "system that consists of at least two electron conductors (electrodes) in contact with ionic conductors (electrolytes)"@en ; - "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6fec8cc1_4e6c_428e_8343_6cf3c286a185 rdf:type owl:Class ; rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "AuElectrode"@en ; "GoldElectrode"@en ; @@ -48691,7 +48546,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NiOElectrode"@en ; @@ -48721,7 +48576,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "TiO2Electrode"@en ; @@ -48915,13 +48770,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ] . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "in secondary cells, the active material is restored to its original state during charge"@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - [ rdf:type owl:Axiom ; owl:annotatedSource ; owl:annotatedProperty ; @@ -48965,6 +48813,13 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s "an electrode in which the primary active material consists of caesium or caesium compounds"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea + rdf:type owl:Class ; + rdfs:subClassOf ; + "LowerCurrentLimit"@en ; + "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7f073272_8925_4344_995c_a5a6dd1fcde6 rdf:type owl:Class ; rdfs:subClassOf ; @@ -49118,7 +48973,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "LiquidGalliumElectrode"@en ; "a liquid electrode with an active material of gallium"@en . @@ -49188,7 +49043,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "ZnOElectrode"@en ; @@ -49446,6 +49301,13 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "an electrode in which the primary active material consists of sulfur or sulfur compounds"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_88dd2bce_fb17_4705_905d_892681812290 + rdf:type owl:Class ; + rdfs:subClassOf ; + "NumberOfIterations"@en ; + "the number of times an iterative process should occur"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8968eb7a_9a65_4286_a596_c31b998df329 rdf:type owl:Class ; rdfs:subClassOf ; @@ -49504,6 +49366,13 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "substance that increases chemical reaction speed, and which is conserved after the reaction"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100 + rdf:type owl:Class ; + rdfs:subClassOf ; + "NominalCapacity"@en ; + "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8b40856f_1ca2_4137_9616_7fb624671909 rdf:type owl:Class ; rdfs:subClassOf , @@ -50109,7 +49978,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumCobaltPhosphateElectrode"@en ; @@ -50298,13 +50167,6 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; "plate in which the active material is applied as a paste to a conductive current collector"@en . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "plate in which the active material is applied as a paste to a conductive current collector"@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a24f8581_a5a4_41a4_bb45_d0fdd5c0d810 rdf:type owl:Class ; @@ -50397,7 +50259,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "SilverOxideElectrode"@en ; "an electrode in which the primary active material consists of manganese dioxide or vmanganese dioxide compounds"@en ; @@ -50427,7 +50289,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "AgElectrode"@en ; "SilverElectrode"@en ; @@ -50662,7 +50524,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "CupricOxideElectrode"@en ; "CopperOxideElectrode"@en ; @@ -50751,6 +50613,15 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "Environmental_Temperature (C)"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f + rdf:type owl:Class ; + rdfs:subClassOf ; + "ACResistance"@en ; + "RealElectricImpedance"@en ; + "https://www.wikidata.org/wiki/Q1048490"@en ; + "the imaginary part of the complex electric impedance"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abfadc99_6e43_4d37_9b04_7fc5b0f327ae rdf:type owl:Class ; rdfs:subClassOf , @@ -50782,7 +50653,8 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e rdf:type owl:Class ; rdfs:subClassOf ; - "CCCVCycling"@en ; + "CCCVCycling"@en ; + "ConstantCurrentConstantVoltageCycling"@en ; "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en . @@ -51030,7 +50902,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCElectrode"@en ; @@ -51360,11 +51232,11 @@ of other configurations are used."""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNMOLFPElectrode"@en ; @@ -51466,13 +51338,6 @@ of other configurations are used."""@en . "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; "https://en.wikipedia.org/wiki/Fuel_cell"@en . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_bea04148_10d9_4eda_9cd5_8f609d7e9ff8 rdf:type owl:Class ; @@ -51568,7 +51433,7 @@ of other configurations are used."""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LMOElectrode"@en ; @@ -51751,11 +51616,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "ITO"@en ; @@ -51809,7 +51674,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "GraphiteElectrode"@en ; "electrode in which the active material is graphite"@en . @@ -51928,7 +51793,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "MnO2Electrode"@en ; "ManganeseDioxideElectrode"@en ; @@ -51943,7 +51808,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNOElectrode"@en ; @@ -51963,7 +51828,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "IrO2Electrode"@en ; @@ -51977,7 +51842,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumManganesePhosphateElectrode"@en ; @@ -52146,7 +52011,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "IronDisulfideElectrode"@en ; "an electrode in which the primary active material consists of iron disulfide or iron disulfide compounds."@en ; @@ -52509,7 +52374,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "HgElectrode"@en ; "MercuryElectrode"@en ; @@ -52785,11 +52650,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SiliconGraphiteElectrode"@en ; @@ -52802,7 +52667,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumManganeseOxideElectrode"@en ; @@ -53004,7 +52869,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumCobaltOxideElectrode"@en ; @@ -53096,7 +52961,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NCAElectrode"@en ; @@ -53315,7 +53180,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "PbOElectrode"@en ; @@ -53401,7 +53266,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumChromiumOxideElectrode"@en ; @@ -53621,7 +53486,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LCOElectrode"@en ; @@ -53672,11 +53537,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LMOLFPElectrode"@en ; @@ -53808,10 +53673,10 @@ In either case, the magnitude of the catalytic current depends on the applied po "The universe is considered as a causally self-connected object, encompassing all other objects. For this reason is unique."@en . -[ owl:qualifiedCardinality "3"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "3"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "4"^^xsd:nonNegativeInteger @@ -53835,10 +53700,10 @@ In either case, the magnitude of the catalytic current depends on the applied po [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:minQualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:minQualifiedCardinality "2"^^xsd:nonNegativeInteger +[ owl:minQualifiedCardinality "1"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger @@ -53850,7 +53715,7 @@ In either case, the magnitude of the catalytic current depends on the applied po [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:minQualifiedCardinality "2"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger diff --git a/versions/0.12.1-beta/electrochemistry.ttl b/versions/0.12.1-beta/electrochemistry.ttl index baa1206..d442e3c 100644 --- a/versions/0.12.1-beta/electrochemistry.ttl +++ b/versions/0.12.1-beta/electrochemistry.ttl @@ -1,6 +1,6 @@ @prefix : . @prefix bibo: . -@prefix chemsub: . +@prefix chemsub: . @prefix dcterms: . @prefix emmo: . @prefix foaf: . @@ -54,9 +54,9 @@ schema:name a owl:AnnotationProperty . dcterms:created "2022-11-25"^^xsd:date ; dcterms:creator , ; - dcterms:issued "2024-07-03"^^xsd:date ; + dcterms:issued "2024-07-05"^^xsd:date ; dcterms:license "https://creativecommons.org/licenses/by/4.0/legalcode" ; - dcterms:modified "2024-07-03"^^xsd:date ; + dcterms:modified "2024-07-05"^^xsd:date ; dcterms:publisher "EMMO" ; dcterms:source , , @@ -67,13 +67,13 @@ schema:name a owl:AnnotationProperty . bibo:status "unstable" ; vann:preferredNamespacePrefix "echem" ; vann:preferredNamespaceUri "https://w3id.org/emmo/domain/electrochemistry" ; - owl:backwardCompatibleWith "0.16.0-beta" ; + owl:backwardCompatibleWith "0.17.0-beta" ; owl:imports , , - ; - owl:priorVersion "0.16.0-beta" ; - owl:versionIRI ; - owl:versionInfo "0.17.0-beta" ; + ; + owl:priorVersion "0.17.0-beta" ; + owl:versionIRI ; + owl:versionInfo "0.18.0-beta" ; foaf:logo "https://raw.githubusercontent.com/emmo-repo/domain-electrochemistry/gh-pages/assets/img/fig/png/domain-electrochemistry-logo.png" . :electrochemistry_027d437e_3bbf_4eda_940b_e509f8d2b993 a owl:Class ; @@ -535,6 +535,14 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "R716" ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a coin case with a nominal diameter of 7.9 mm and a height of 1.65 mm"@en . +:electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b a owl:Class ; + rdfs:label "Resting"@en ; + rdfs:comment "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en ; + rdfs:subClassOf , + :electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 ; + skos:prefLabel "Resting"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en . + :electrochemistry_36444184_1100_4271_869f_7f2d983aaecb a owl:Class ; rdfs:label "P45173115" ; rdfs:comment "a prismatic case with a nominal length of 45 mm, width of 173 mm, and height of 115 mm"@en ; @@ -1564,6 +1572,15 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "TinBasedElectrode"@en ; emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "an electrode in which the primary active material consists of tin or tin compounds"@en . +:electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c a owl:Class ; + rdfs:label "PastedPlate"@en ; + rdfs:comment "plate in which the active material is applied as a paste to a conductive current collector"@en ; + rdfs:subClassOf :electrochemistry_92147e31_d015_4889_a092_04fbab033f15 ; + skos:altLabel "PastedElectrode"@en ; + skos:prefLabel "PastedPlate"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "plate in which the active material is applied as a paste to a conductive current collector"@en . + :electrochemistry_a277e420_2483_44d5_a2bc_4e421dea231a a owl:Class ; rdfs:label "R926" ; rdfs:comment "a coin case with a nominal diameter of 9.5 mm and a height of 2.6 mm"@en ; @@ -1658,10 +1675,11 @@ schema:name a owl:AnnotationProperty . emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a coin case with a nominal diameter of 11.6 mm and a height of 4.2 mm"@en . :electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e a owl:Class ; - rdfs:label "CCCVCycling"@en ; + rdfs:label "ConstantCurrentConstantVoltageCycling"@en ; rdfs:comment "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en ; rdfs:subClassOf :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; - skos:prefLabel "CCCVCycling"@en ; + skos:altLabel "CCCVCycling"@en ; + skos:prefLabel "ConstantCurrentConstantVoltageCycling"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en . :electrochemistry_ad9cdad6_66e8_471e_a7c6_b79f37c20814 a owl:Class ; @@ -1783,6 +1801,17 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "P20100141" ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a prismatic case with a nominal length of 20 mm, width of 100 mm, and height of 141 mm"@en . +:electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d a owl:Class ; + rdfs:label "FuelCell"@en ; + rdfs:comment "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; + rdfs:subClassOf :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; + skos:prefLabel "FuelCell"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q180253"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-05"@en ; + emmo:EMMO_6dd685dd_1895_46e4_b227_be9f7d643c25 "https://dbpedia.org/page/Fuel_cell"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; + emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Fuel_cell"@en . + :electrochemistry_bea04148_10d9_4eda_9cd5_8f609d7e9ff8 a owl:Class ; rdfs:label "CelsiusTemperatureMeasurement"@en ; rdfs:comment "measurement of temperature"@en ; @@ -3335,15 +3364,6 @@ schema:name a owl:AnnotationProperty . "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-26"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "interface between an electrolyte and an electrode where an electrode reaction takes place."@en . -:electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c a owl:Class ; - rdfs:label "PastedPlate"@en ; - rdfs:comment "plate in which the active material is applied as a paste to a conductive current collector"@en ; - rdfs:subClassOf :electrochemistry_92147e31_d015_4889_a092_04fbab033f15 ; - skos:altLabel "PastedElectrode"@en ; - skos:prefLabel "PastedPlate"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "plate in which the active material is applied as a paste to a conductive current collector"@en . - :electrochemistry_a462859d_d8bd_48ea_8bde_1576f1248a1e a owl:Class ; rdfs:label "SilverElectrode"@en ; rdfs:comment "electrode in the form of foil, mesh, wire, rod, tube, powder, pellets, or single crystal of silver"@en ; @@ -3459,17 +3479,6 @@ of other configurations are used."""@en . emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-19"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "part which insures insulation between the plate (electrode) edges and adjacent plates (electrodes) and the container side walls"@en . -:electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d a owl:Class ; - rdfs:label "FuelCell"@en ; - rdfs:comment "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - rdfs:subClassOf :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; - skos:prefLabel "FuelCell"@en ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q180253"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-05"@en ; - emmo:EMMO_6dd685dd_1895_46e4_b227_be9f7d643c25 "https://dbpedia.org/page/Fuel_cell"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Fuel_cell"@en . - :electrochemistry_bed5b5f9_b89d_45e3_a8c2_81b70ae21847 a owl:Class ; rdfs:label "SeriesParallelConnection"@en ; rdfs:comment "arrangement of cells or batteries wherein in series connected cells or batteries are connected in parallel."@en ; @@ -4518,15 +4527,20 @@ schema:Person a owl:Class ; skos:prefLabel "BimetallicOxideElectrode"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "an electrode consisting of two metal oxide active materials"@en . -:electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 a owl:Class ; - rdfs:label "GalvanostaticProcess"@en ; - rdfs:comment "a process in which the electric current is kept constant"@en ; - rdfs:subClassOf [ a owl:Restriction ; - owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; - owl:someValuesFrom :electrochemistry_22725105_c941_4b14_a4a2_fcb627958607 ], - :electrochemistry_5548f188_df00_4c05_ae98_7846e92efe36 ; - skos:prefLabel "GalvanostaticProcess"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a process in which the electric current is kept constant"@en . +:electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 a owl:Class ; + rdfs:label "ActiveMaterial"@en ; + rdfs:comment "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; + rdfs:subClassOf :electrochemistry_b5ea31c9_bb10_4276_980e_c3eceb1efc82, + :electrochemistry_ebdb68e9_c4b5_4d57_a042_c0f51d446755 ; + skos:altLabel "ActiveElectrochemicalMaterial"@en, + "ElectrochemicallyActiveMaterial"@en ; + skos:prefLabel "ActiveMaterial"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q120907375" ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-33", + "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-14"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; + emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "material which reacts chemically to produce electric energy when the cell discharges", + "in secondary cells, the active material is restored to its original state during charge"@en . :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 a owl:Class ; rdfs:label "PotentiometricStrippingAnalysis"@en ; @@ -4601,20 +4615,15 @@ schema:Person a owl:Class ; "The electrode (or interfacial) reaction involves all the processes (chemical reaction, structural reorganization, adsorption) accompanying the charge transfer step."@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1351/goldbook.E01960"@en . -:electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 a owl:Class ; - rdfs:label "ActiveMaterial"@en ; - rdfs:comment "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; - rdfs:subClassOf :electrochemistry_b5ea31c9_bb10_4276_980e_c3eceb1efc82, - :electrochemistry_ebdb68e9_c4b5_4d57_a042_c0f51d446755 ; - skos:altLabel "ActiveElectrochemicalMaterial"@en, - "ElectrochemicallyActiveMaterial"@en ; - skos:prefLabel "ActiveMaterial"@en ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q120907375" ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-33", - "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-14"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "material which reacts chemically to produce electric energy when the cell discharges", - "in secondary cells, the active material is restored to its original state during charge"@en . +:electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 a owl:Class ; + rdfs:label "GalvanostaticProcess"@en ; + rdfs:comment "a process in which the electric current is kept constant"@en ; + rdfs:subClassOf [ a owl:Restriction ; + owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; + owl:someValuesFrom :electrochemistry_22725105_c941_4b14_a4a2_fcb627958607 ], + :electrochemistry_5548f188_df00_4c05_ae98_7846e92efe36 ; + skos:prefLabel "GalvanostaticProcess"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a process in which the electric current is kept constant"@en . :electrochemistry_8a1c9a7b_978c_4421_a9c1_d0b07b42aab9 a owl:Class ; rdfs:label "ChemicalReaction"@en ; @@ -4953,9 +4962,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "extremely resistant to many chemicals, impermeable to gases and liquids, and has good electrical conductivity, high hardness and strength, and biocompatibility"@en . + owl:annotatedTarget "electrode made of glassy carbon material with an intertwined graphitic ribbon structure, formed by pyrolysis of a resol precursor at temperatures up to 3000 °C"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -4976,28 +4985,22 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "A disc electrode that is embedded in the centre of a cylinder which rotates in solution around the longitudinal cylinder axis."@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "composite system in which the supplied electric energy mainly produces chemical reactions or, conversely, in which the energy released by chemical reactions is mainly delivered by the system as electric energy"@en . + owl:annotatedTarget "a system containing two electrodes that allow transport of electrons, separated by an electrolyte that allows movement of ions but blocks movement of electrons."@en . [] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "system that consists of at least two electron conductors (electrodes) in contact with ionic conductors (electrolytes)"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" . + owl:annotatedTarget "composite system in which the supplied electric energy mainly produces chemical reactions or, conversely, in which the energy released by chemical reactions is mainly delivered by the system as electric energy"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "glassy carbon combines glass-like mechanical characteristics with physical properties similar to graphite, owing to its “graphene ribbon” structure"@en . - -[] a owl:Axiom ; - dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "a system containing two electrodes that allow transport of electrons, separated by an electrolyte that allows movement of ions but blocks movement of electrons."@en . + owl:annotatedTarget "extremely resistant to many chemicals, impermeable to gases and liquids, and has good electrical conductivity, high hardness and strength, and biocompatibility"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5033,13 +5036,13 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "one of the most frequently used working electrodes"@en . + owl:annotatedTarget "glassy carbon combines glass-like mechanical characteristics with physical properties similar to graphite, owing to its “graphene ribbon” structure"@en . [] a owl:Axiom ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; - owl:annotatedTarget "in secondary cells, the active material is restored to its original state during charge"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedTarget "material that is oxidized or reduced at an electrode in an electrochemical cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5047,12 +5050,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; owl:annotatedTarget "material which reacts chemically to produce electric energy when the cell discharges" . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; - owl:annotatedTarget "material that is oxidized or reduced at an electrode in an electrochemical cell"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5061,9 +5058,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "electrode made of glassy carbon material with an intertwined graphitic ribbon structure, formed by pyrolysis of a resol precursor at temperatures up to 3000 °C"@en . + owl:annotatedTarget "one of the most frequently used working electrodes"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5083,18 +5080,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_83f2b1e9_cb67_4dbf_977f_ba54bbae374f ; owl:annotatedTarget "charge during which the electric current is maintained at a constant value regardless of the battery voltage or temperature"@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; - owl:annotatedTarget "Electrolyte solution in the anodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the anode is placed."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; owl:annotatedTarget "electrolyte on the anode side of an electrochemical cell that is divided into compartments"@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; + owl:annotatedTarget "Electrolyte solution in the anodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the anode is placed."@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5133,15 +5130,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_8d3bf304_78e4_4e99_abe1_6ab429e44ed1 ; - owl:annotatedTarget "a sealed cell may be equipped with a safety device to prevent a dangerously high internal pressure and is designed to operate during its life in its original sealed state"@en . + owl:annotatedTarget "cell which remains closed and does not release either gas or liquid when operated within the limits specified by the manufacturer"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_8d3bf304_78e4_4e99_abe1_6ab429e44ed1 ; - owl:annotatedTarget "cell which remains closed and does not release either gas or liquid when operated within the limits specified by the manufacturer"@en . + owl:annotatedTarget "a sealed cell may be equipped with a safety device to prevent a dangerously high internal pressure and is designed to operate during its life in its original sealed state"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5150,10 +5147,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "capacitor consisting of a metallic plate as first conductor, a very thin oxide film formed on the metal as the dielectric and an electrolyte as second conductor"@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_06d8e1ee_924a_4915_998d_33a69f41dadc ; - owl:annotatedTarget "operation during which an electrochemical cell supplies electric energy as the result of chemical changes within the cell"@en . + owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; + owl:annotatedTarget "two-step electrochemical measurement in which 1) material is accumulated at an electrode and 2) the material is removed by chemical reaction or electrochemically at constant current with measurement of electrode potential"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5161,6 +5158,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; owl:annotatedTarget "historically for the analysis of metal ions, mercury ions were added to the test solution to form a mercury amalgam when reduced. Alternatively, an HMDE or MFE was used and the oxidizing agent added after amalgam formation. However, the toxicity of mercury and its compounds have all but precluded the present-day use of mercury"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_06d8e1ee_924a_4915_998d_33a69f41dadc ; + owl:annotatedTarget "operation during which an electrochemical cell supplies electric energy as the result of chemical changes within the cell"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5179,12 +5182,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; owl:annotatedTarget "the time between changes in potential in step 2 is related to the concentration of analyte in the solution"@en . -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; - owl:annotatedTarget "two-step electrochemical measurement in which 1) material is accumulated at an electrode and 2) the material is removed by chemical reaction or electrochemically at constant current with measurement of electrode potential"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5211,15 +5208,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_9ee6e728_e8f5_4b36_a045_d63da69dfc85 ; - owl:annotatedTarget "overcharge is also the act of charging beyond a certain limit specified by the manufacturer"@en . + owl:annotatedTarget "continued charging of a fully charged secondary cell or battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_9ee6e728_e8f5_4b36_a045_d63da69dfc85 ; - owl:annotatedTarget "continued charging of a fully charged secondary cell or battery"@en . + owl:annotatedTarget "overcharge is also the act of charging beyond a certain limit specified by the manufacturer"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5227,6 +5224,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_9f466223_e20a_474d_ac4d_6d4b6131c275 ; owl:annotatedTarget "an electrode that holds its potential essentially constant by efficiently allowing electric current to pass"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_a0580fa9_5073_44af_b33e_7adbc83892d0 ; + owl:annotatedTarget "electrode reaction in which oxidation occurs at the anode"@en . + [] a owl:Axiom ; dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5242,14 +5245,14 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0580fa9_5073_44af_b33e_7adbc83892d0 ; - owl:annotatedTarget "electrode reaction in which oxidation occurs at the anode"@en . + owl:annotatedSource :electrochemistry_a0a619d7_da95_41f0_8bc3_9c19d636d543 ; + owl:annotatedTarget "electrode that serves only as a source or sink for electrons without playing a chemical role in the electrode reaction"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0a619d7_da95_41f0_8bc3_9c19d636d543 ; - owl:annotatedTarget "electrode that serves only as a source or sink for electrons without playing a chemical role in the electrode reaction"@en . + owl:annotatedSource :electrochemistry_a0fcb105_587f_45d8_a89a_46dc8f745069 ; + owl:annotatedTarget "partial or complete external covering of a cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5260,14 +5263,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0fcb105_587f_45d8_a89a_46dc8f745069 ; - owl:annotatedTarget "partial or complete external covering of a cell"@en . - -[] a owl:Axiom ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c ; - owl:annotatedTarget "plate in which the active material is applied as a paste to a conductive current collector"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedSource :electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e ; + owl:annotatedTarget "process inside an electrolytic cell used to coat a conductive object with a layer of a material"@en . [] a owl:Axiom ; dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; @@ -5278,8 +5275,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e ; - owl:annotatedTarget "process inside an electrolytic cell used to coat a conductive object with a layer of a material"@en . + owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; + owl:annotatedTarget "component of a cell which permits the flow of gas in one direction only"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5287,12 +5284,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; owl:annotatedTarget "a valve has a characteristic venting or opening and closing pressure"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; - owl:annotatedTarget "component of a cell which permits the flow of gas in one direction only"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5305,6 +5296,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a462859d_d8bd_48ea_8bde_1576f1248a1e ; owl:annotatedTarget "electrode in the form of foil, mesh, wire, rod, tube, powder, pellets, or single crystal of silver"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; + owl:annotatedTarget "a chemical reaction in an electrolyte involving a transfer of electrons between chemical components or between chemical components and an electrode"@en . + [] a owl:Axiom ; dcterms:source "Bockris, J. O'M. and Despić, . Aleksandar R. (2011, December 15). Electrochemical reaction. Encyclopedia Britannica. https://www.britannica.com/science/electrochemical-reaction" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5317,12 +5314,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; owl:annotatedTarget "the electrode reaction can also involve other chemical reactions including subreactions on a cell electrode"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; - owl:annotatedTarget "a chemical reaction in an electrolyte involving a transfer of electrons between chemical components or between chemical components and an electrode"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5355,15 +5346,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_ae56cce3_7a7c_4e53_bb58_31e0d642d47e ; - owl:annotatedTarget "this flame front may originate from a spark or an external naked flame igniting combustible electrolysis gas"@en . + owl:annotatedTarget "vent of special design which provides protection against the propagation of a flame front from or into the interior of a secondary cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_ae56cce3_7a7c_4e53_bb58_31e0d642d47e ; - owl:annotatedTarget "vent of special design which provides protection against the propagation of a flame front from or into the interior of a secondary cell"@en . + owl:annotatedTarget "this flame front may originate from a spark or an external naked flame igniting combustible electrolysis gas"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5395,6 +5386,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_b525a629_a679_464f_bc5b_b49d2fc82686 ; owl:annotatedTarget "an electrochemical cell for conductivity measurements"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; + owl:annotatedTarget "by convention, cell electrode at which an oxidation reaction occurs"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5419,12 +5416,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; owl:annotatedTarget "the concepts of “anode” and “cathode” are related only to the direction of electron flow, not to the polarity of the electrodes"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; - owl:annotatedTarget "by convention, cell electrode at which an oxidation reaction occurs"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5433,15 +5424,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_b79d4f9e_5727_4895_8d7f_5fc18d83eb90 ; - owl:annotatedTarget "in a galvanic cell, parasitic reactions may cause inefficiencies or loss of performance"@en . + owl:annotatedTarget "an unwanted side reaction"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_b79d4f9e_5727_4895_8d7f_5fc18d83eb90 ; - owl:annotatedTarget "an unwanted side reaction"@en . + owl:annotatedTarget "in a galvanic cell, parasitic reactions may cause inefficiencies or loss of performance"@en . [] a owl:Axiom ; dcterms:source "IEEE Standard Glossary of Stationary Battery Terminology (2016), https://doi.org/10.1109/IEEESTD.2016.7552407" ; @@ -5481,12 +5472,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_bbae1ef4_0a95_4e7d_9932_1bf939129eef ; owl:annotatedTarget "current-potential curve in a voltammetry experiment"@en . -[] a owl:Axiom ; - dcterms:source "https://en.wikipedia.org/wiki/Square_wave" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0e33278b_639f_412d_9abd_64c3790026ef ; - owl:annotatedTarget "Periodic potential where the amplitude alternates at a steady frequency between fixed minimum and maximum values, with the same duration at minimum and maximum."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5500,10 +5485,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "part which insures insulation between the plate (electrode) edges and adjacent plates (electrodes) and the container side walls"@en . [] a owl:Axiom ; + dcterms:source "https://en.wikipedia.org/wiki/Square_wave" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d ; - owl:annotatedTarget "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedSource :electrochemistry_0e33278b_639f_412d_9abd_64c3790026ef ; + owl:annotatedTarget "Periodic potential where the amplitude alternates at a steady frequency between fixed minimum and maximum values, with the same duration at minimum and maximum."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5535,12 +5520,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_c3f4b34a_0e2c_46f3_baab_4ebd2682d26f ; owl:annotatedTarget "An ionic liquid is an electrolyte composed of a salt that is liquid below 100 °C. Ionic liquids have found uses in electrochemical analysis, because their unconventional properties include a negligible vapor pressure, a high thermal and electrochemical stability, and exceptional dissolution properties for both organic and inorganic chemical species."@en . -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; - owl:annotatedTarget "Electron conductor in an electrochemical cell connected to the external circuit."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5553,6 +5532,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_c55ec02c_b727_4df1_97ce_91d7bb5d5e91 ; owl:annotatedTarget "unplanned escape of electrolyte, gas or other material from a cell or battery"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_c610d869_cc03_44f0_b40d_ca86e945b9c9 ; + owl:annotatedTarget "cell from which electrolyte cannot escape regardless of its orientation"@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5562,8 +5547,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_c610d869_cc03_44f0_b40d_ca86e945b9c9 ; - owl:annotatedTarget "cell from which electrolyte cannot escape regardless of its orientation"@en . + owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; + owl:annotatedTarget "electronically conductive part in electric contact with a medium of lower electronic conductivity and intended to perform one or more of the functions of emitting charge carriers to or receiving charge carriers from that medium or to establish an electric field in that medium"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5579,21 +5564,21 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; - owl:annotatedTarget "by convention, an oxidation reaction occurs during discharge"@en . + owl:annotatedTarget "for a device having two electrodes, that electrode having the lower electric potential"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; - owl:annotatedTarget "electronically conductive part in electric contact with a medium of lower electronic conductivity and intended to perform one or more of the functions of emitting charge carriers to or receiving charge carriers from that medium or to establish an electric field in that medium"@en . + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; + owl:annotatedTarget "by convention, an oxidation reaction occurs during discharge"@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; - owl:annotatedTarget "for a device having two electrodes, that electrode having the lower electric potential"@en . + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; + owl:annotatedTarget "Electron conductor in an electrochemical cell connected to the external circuit."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5604,8 +5589,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0f827b54_370d_4c63_99a6_80f13b24e55e ; - owl:annotatedTarget "evolution of gas resulting from electrolysis of the water in the electrolyte of a cell"@en . + owl:annotatedSource :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; + owl:annotatedTarget "set of operations that is carried out on a secondary cell or battery and is repeated regularly in the same sequence."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5622,14 +5607,14 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; - owl:annotatedTarget "set of operations that is carried out on a secondary cell or battery and is repeated regularly in the same sequence."@en . + owl:annotatedSource :electrochemistry_d5da9948_e95b_4f12_a2d2_10a48f390c52 ; + owl:annotatedTarget "arrangement of cells or batteries wherein parallel connected cells or batteries are connected in series."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_d5da9948_e95b_4f12_a2d2_10a48f390c52 ; - owl:annotatedTarget "arrangement of cells or batteries wherein parallel connected cells or batteries are connected in series."@en . + owl:annotatedSource :electrochemistry_0f827b54_370d_4c63_99a6_80f13b24e55e ; + owl:annotatedTarget "evolution of gas resulting from electrolysis of the water in the electrolyte of a cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5655,18 +5640,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_df78745e_f9db_4830_88f0_8ce074fcb8ff ; owl:annotatedTarget "liquid metal electrode used in polarography"@en . +[] a owl:Axiom ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; + owl:annotatedTarget "electrochemical cell in which chemical reactions occur spontaneously and chemical energy is converted into electrical energy."@en . + [] a owl:Axiom ; dcterms:references "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; owl:annotatedTarget "An electrochemical cell that spontaneously produces work."@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_113e0469_8ae0_407f_892d_4b988f8d8a08 ; - owl:annotatedTarget "electrochemical cell that has two half-cells separated by a wall permeable to ions, both containing the same electrolyte differing only in their temperatures."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5674,16 +5659,22 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "Electrochemical cell intended to produce electric energy."@en . [] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; - owl:annotatedTarget "electrochemical cell in which chemical reactions occur spontaneously and chemical energy is converted into electrical energy."@en . + owl:annotatedSource :electrochemistry_e2a1dae1_05e4_4bd1_a39d_0eb10db482bc ; + owl:annotatedTarget "method of separating and neutralizing ions by an electric current in an electrolytic cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e2a1dae1_05e4_4bd1_a39d_0eb10db482bc ; - owl:annotatedTarget "method of separating and neutralizing ions by an electric current in an electrolytic cell"@en . + owl:annotatedSource :electrochemistry_113e0469_8ae0_407f_892d_4b988f8d8a08 ; + owl:annotatedTarget "electrochemical cell that has two half-cells separated by a wall permeable to ions, both containing the same electrolyte differing only in their temperatures."@en . + +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; + owl:annotatedTarget "electrochemical cell intended to produce chemical reactions"@en . [] a owl:Axiom ; dcterms:references "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; @@ -5697,18 +5688,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; owl:annotatedTarget "Electrochemical cell in which electrical energy is converted into chemical energy."@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; - owl:annotatedTarget "electrochemical cell intended to produce chemical reactions"@en . - -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_1152ae6b_8b57_4d99_912e_40c6a29342fb ; - owl:annotatedTarget "mass m of electrochemically-transformed substance is proportional to the charge Q passed, m ∝ Q."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5721,6 +5700,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_ec1dce8b_bb46_41a9_b532_6bed381aa557 ; owl:annotatedTarget "secondary cell having a cover provided with an opening through which products of electrolysis and evaporation are allowed to escape freely from the cell to the atmosphere"@en . +[] a owl:Axiom ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_1152ae6b_8b57_4d99_912e_40c6a29342fb ; + owl:annotatedTarget "mass m of electrochemically-transformed substance is proportional to the charge Q passed, m ∝ Q."@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5739,12 +5724,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f0c24970_4c14_4207_bd78_5f2181a67085 ; owl:annotatedTarget "the process of forming a film or a bulk material using an electrochemical process where the electrons are supplied by an external power supply"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_1355816f_a2b5_4800_8001_fc888f5d6b1b ; - owl:annotatedTarget "instrument intended to measure the value of a voltage."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5757,6 +5736,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f47611a2_e081_47f0_b287_3fda5f706154 ; owl:annotatedTarget "chemical reaction which occurs in addition to the main process"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; + owl:annotatedTarget "electrode reaction in which reduction occurs at the cathode"@en . + +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_1355816f_a2b5_4800_8001_fc888f5d6b1b ; + owl:annotatedTarget "instrument intended to measure the value of a voltage."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5769,12 +5760,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; owl:annotatedTarget "electrode reaction, where the energy of electrons in the working electrode is higher than the LUMO orbital of the substrate"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; - owl:annotatedTarget "electrode reaction in which reduction occurs at the cathode"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5782,10 +5767,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "electrode that responds to one, or more than one, species in the solution being investigated, with no appreciable change of bulk solution composition during the measurement"@en . [] a owl:Axiom ; - dcterms:source "IUPAC. Compendium of Chemical Terminology, 2nd ed. (the \"Gold Book\"). Compiled by A. D. McNaught and A. Wilkinson. Blackwell Scientific Publications, Oxford (1997). Online version (2019-) created by S. J. Chalk. ISBN 0-9678550-9-8. https://doi.org/10.1351/goldbook." ; + dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_15325775_6d4c_4192_82f1_e4feca9de426 ; - owl:annotatedTarget "A membrane having ion-exchange groups:"@en . + owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; + owl:annotatedTarget "a material in which the mobile species are ions and free movement of electrons is blocked."@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5799,18 +5784,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; owl:annotatedTarget "liquid or solid substance containing mobile ions that render it conductive"@en . +[] a owl:Axiom ; + dcterms:source "IUPAC. Compendium of Chemical Terminology, 2nd ed. (the \"Gold Book\"). Compiled by A. D. McNaught and A. Wilkinson. Blackwell Scientific Publications, Oxford (1997). Online version (2019-) created by S. J. Chalk. ISBN 0-9678550-9-8. https://doi.org/10.1351/goldbook." ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_15325775_6d4c_4192_82f1_e4feca9de426 ; + owl:annotatedTarget "A membrane having ion-exchange groups:"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; owl:annotatedTarget "substance that provides ions on dissolution in a solvent or on melting"@en . -[] a owl:Axiom ; - dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; - owl:annotatedTarget "a material in which the mobile species are ions and free movement of electrons is blocked."@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5823,18 +5808,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_fb9bf7cb_dd4b_4391_99a1_628263dd6940 ; owl:annotatedTarget "measuring instrument to obtain the electrical charge passed in an experiment, or to produce a known amount of substance in a titration."@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; - owl:annotatedTarget "Electrolyte solution in the cathodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the cathode is placed."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; owl:annotatedTarget "electrolyte on the cathode side of an electrochemical cell that is divided into compartments."@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; + owl:annotatedTarget "Electrolyte solution in the cathodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the cathode is placed."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5931,18 +5916,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_2d32a81a_2148_41bd_84fb_467aa8de4a8f ; owl:annotatedTarget "foil, wire, disc, or mesh electrode made of platinum, which is the most commonly used metallic working electrode in electrochemistry"@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; - owl:annotatedTarget "An interfacial reaction that necessarily involves a charge-transfer step."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; owl:annotatedTarget "electrochemical reaction involving the transfer of electrons between electrolyte and electrode"@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; + owl:annotatedTarget "An interfacial reaction that necessarily involves a charge-transfer step."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5957,15 +5942,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_328c6e36_3706_4d92_abae_432fa3adb2a0 ; - owl:annotatedTarget "a cell baffle has a second function in protecting the plate pack from damage by objects inserted through the filling hole"@en . + owl:annotatedTarget "internal component used to reduce the amount of electrolyte loss due to electrolyte spray being carried in the gas and/or by electrolyte movement"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_328c6e36_3706_4d92_abae_432fa3adb2a0 ; - owl:annotatedTarget "internal component used to reduce the amount of electrolyte loss due to electrolyte spray being carried in the gas and/or by electrolyte movement"@en . + owl:annotatedTarget "a cell baffle has a second function in protecting the plate pack from damage by objects inserted through the filling hole"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5979,6 +5964,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_34bc54e3_de4c_41f8_8d3a_d77c951ee23a ; owl:annotatedTarget "needle-like or tree-like formation of crystalline growth formed during deposition of a material"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; + owl:annotatedTarget "by convention, cell electrode at which, a reduction reaction occurs"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5997,12 +5988,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; owl:annotatedTarget "the concepts of “anode” and “cathode” are related only to the direction of electron flow, not to the polarity of the electrodes"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; - owl:annotatedTarget "by convention, cell electrode at which, a reduction reaction occurs"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -6023,15 +6008,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_3f6c9e09_5f23_41cc_9f85_7de365cef089 ; - owl:annotatedTarget "electrolyte creep is sometimes indicated by the presence of a visible solid deposit or wet spots"@en . + owl:annotatedTarget "gradual and slow spreading of an electrolyte film on the external surface of a cell or battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_3f6c9e09_5f23_41cc_9f85_7de365cef089 ; - owl:annotatedTarget "gradual and slow spreading of an electrolyte film on the external surface of a cell or battery"@en . + owl:annotatedTarget "electrolyte creep is sometimes indicated by the presence of a visible solid deposit or wet spots"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -6041,9 +6026,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_04f28ce3_251d_429e_aa85_ab3eb45bbcd2 ; - owl:annotatedTarget "in lithium batteries thermal runaway may cause melting of lithium"@en . + owl:annotatedTarget "unstable condition arising during constant voltage charge in which the rate of heat dissipation capability, causing a continuous temperature increase with resulting further charge current increase, which can lead to the destruction of the battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -6077,9 +6062,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_04f28ce3_251d_429e_aa85_ab3eb45bbcd2 ; - owl:annotatedTarget "unstable condition arising during constant voltage charge in which the rate of heat dissipation capability, causing a continuous temperature increase with resulting further charge current increase, which can lead to the destruction of the battery"@en . + owl:annotatedTarget "in lithium batteries thermal runaway may cause melting of lithium"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; diff --git a/versions/0.13.0-beta/context/context.json b/versions/0.13.0-beta/context/context.json index ac1b0bb..2006ca7 100644 --- a/versions/0.13.0-beta/context/context.json +++ b/versions/0.13.0-beta/context/context.json @@ -1076,7 +1076,6 @@ "ButlerVolmerEquation": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d48ea516_5cac_4f86_bc88_21b6276c0938", "C": "https://w3id.org/emmo#EMMO_36a9bf69_483b_42fd_8a0c_7ac9206320bc", "CASRN": "https://w3id.org/emmo#EMMO_d2a47cd8_662f_438f_855a_b4378eb992ff", - "CCCVCycling": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e", "CPlusPlus": "https://w3id.org/emmo#EMMO_64aba1e5_24b7_4140_8eb4_676c35698e79", "CRate": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_e1fd84eb_acdb_4b2c_b90c_e899d552a3ee", "CSharp": "https://w3id.org/emmo#EMMO_268a8a97_3a6f_4022_93da_962a66827cdc", @@ -1285,7 +1284,7 @@ "CoatingThickness": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3b938708_e7e4_4ac0_a959_9c04306302e7", "Cobalt": "https://w3id.org/emmo/domain/chemical-substance#substance_8f857eb2_7cc8_4294_954d_e69f2842c084", "CobaltAtom": "https://w3id.org/emmo#EMMO_3fe9d899_f1f1_5657_b176_ac6afff2e93d", - "CobaltBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_838c115b_6bc9_4ce8_9f8d_86a6bf67742a", + "CobaltBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7b811780_7251_481b_a4d3_97d437955099", "CobaltHydroxide": "https://w3id.org/emmo/domain/chemical-substance#substance_29b1c15d_2632_40d7_88f7_43575b68b988", "CobaltIIAcetate": "https://w3id.org/emmo/domain/chemical-substance#substance_4310c690_9810_4a95_8d62_7e78e0b84437", "CobaltIIBistrifluoromethanesulfonylimide": "https://w3id.org/emmo/domain/chemical-substance#substance_f4dffee2_c642_4114_a748_5e93b3908380", @@ -1358,6 +1357,7 @@ "ConstantCurrentCharging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_83f2b1e9_cb67_4dbf_977f_ba54bbae374f", "ConstantCurrentChargingCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_37c38b7e_9ded_481a_85fd_a467f1ee2b9f", "ConstantCurrentConstantVoltageCharging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0cc8f231_0ce5_467e_9c76_29b2c80349ad", + "ConstantCurrentConstantVoltageCycling": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e", "ConstantCurrentDischarging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_53fe3f58_0802_41cf_af69_4784fc42cc30", "ConstantCurrentDischargingCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_08833ed2_6324_411a_b34b_fe64c44cd5ef", "ConstantPotentialPulses": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_84d37a37_88bd_47db_9425_31f73a81d38c", @@ -1590,7 +1590,7 @@ "DeviceTemperature": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_463950b9_fd8d_48de_a52d_b29cab026391", "DewPointTemperature": "https://w3id.org/emmo#EMMO_a383e332_a271_463f_9e44_559604547220", "Diameter": "https://w3id.org/emmo#EMMO_c1c8ac3c_8a1c_4777_8e0b_14c1f9f9b0c6", - "Dichloromethane": "https://w3id.org/emmo/domain/chemical-substance#substance_8385c3c4_5906_48f6_b6b6_4bb60dccc27a", + "Dichloromethane": "https://w3id.org/emmo/domain/chemical-substance#substance_a6feec60_5fe7_4687_b427_3bf2ed06008d", "DieCasting": "https://w3id.org/emmo#EMMO_a85d0b8a_588e_423f_b799_97b0890e9183", "DielectricAndImpedanceSpectroscopy": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#DielectricAndImpedanceSpectroscopy", "Dielectrometry": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Dielectrometry", @@ -1624,7 +1624,7 @@ "Dimethoxyethane": "https://w3id.org/emmo/domain/chemical-substance#substance_b6ecabf9_14a4_4808_a139_55329e70ad42", "Dimethoxymethane": "https://w3id.org/emmo/domain/chemical-substance#substance_21954b0b_c05c_42db_b276_3a931d8aabb1", "DimethylCarbonate": "https://w3id.org/emmo/domain/chemical-substance#substance_c4a7d7bd_497e_457e_b858_ff73254266d0", - "DimethylSulfoxide": "https://w3id.org/emmo/domain/chemical-substance#substance_b593b5dd_7957_4b85_856a_dd59775210b6", + "DimethylSulfoxide": "https://w3id.org/emmo/domain/chemical-substance#substance_ea68e1a4_6be8_4686_8701_ba88b40d00b7", "Dimethylformamide": "https://w3id.org/emmo/domain/chemical-substance#substance_769bdc09_f533_4fde_bb53_20339d5bfcb7", "Dimethylpropyleneurea": "https://w3id.org/emmo/domain/chemical-substance#substance_945c68da_3baf_4da6_b794_dca7aebc4ca7", "Dimethylsulfate": "https://w3id.org/emmo/domain/chemical-substance#substance_3c8fb431_7d9d_4a89_a494_708df34f44d3", @@ -1837,7 +1837,7 @@ "ElectronicModel": "https://w3id.org/emmo#EMMO_6eca09be_17e9_445e_abc9_000aa61b7a11", "ElectronvoltPerMetre": "https://w3id.org/emmo#ElectronvoltPerMetre", "Electroosmosis": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_5641910f_6e69_4ce4_be84_4b1bf14b8916", - "Electroplating": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e", + "Electroplating": "https://w3id.org/emmo#EMMO_30e3edb5_0977_4b9b_9aed_5a4d16c1c07c", "ElementalMaterial": "https://w3id.org/emmo#EMMO_a086af15_a7c3_404c_b4ce_c8e4466f1b4b", "ElementalSubstance": "https://w3id.org/emmo#EMMO_436b11bd_1756_4821_9f14_c9ed6b67552e", "ElementaryBoson": "https://w3id.org/emmo#EMMO_cafd0f10_ce85_48b9_9a36_2b0af141ce21", @@ -2192,11 +2192,12 @@ "ISQBaseQuantity": "https://w3id.org/emmo#EMMO_1a4c1a97_88a7_4d8e_b2f9_2ca58e92dde4", "ISQDerivedQuantity": "https://w3id.org/emmo#EMMO_2946d40b_24a1_47fa_8176_e3f79bb45064", "ISQDimensionlessQuantity": "https://w3id.org/emmo#EMMO_a66427d1_9932_4363_9ec5_7d91f2bfda1e", - "IUPACName": "https://w3id.org/emmo#EMMO_16a3bd5c_75f0_42b3_b000_cb0d018f840e", + "IUPACName": "https://w3id.org/emmo#EMMO_f652e7d2_0b33_4d10_8d0f_2f70089982ba", "IUPACNomencalture": "https://w3id.org/emmo#EMMO_91a0635a_a89a_46de_8928_04a777d145c7", "Icon": "https://w3id.org/emmo#EMMO_d7788d1a_020d_4c78_85a1_13563fcec168", "Illuminance": "https://w3id.org/emmo#EMMO_b51fbd00_a857_4132_9711_0ef70e7bdd20", "IlluminanceTimeUnit": "https://w3id.org/emmo#EMMO_e467cc3f_676c_432e_b70e_19237d1bcc78", + "ImaginaryElectricImpedance": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626", "Impedimetry": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Impedimetry", "InChI": "https://w3id.org/emmo#EMMO_d74ed682_894f_46c5_87cb_167f60926965", "IncreasingPotentialPulses": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_77be01ef_49bd_4f2e_bec8_eec0894b8562", @@ -2288,7 +2289,7 @@ "IridiumSymbol": "https://w3id.org/emmo#EMMO_b8aab013_b729_51f1_bc14_5302e7f97cbe", "Iron": "https://w3id.org/emmo/domain/chemical-substance#substance_89fd13e8_8061_41da_83f4_634144116425", "IronAtom": "https://w3id.org/emmo#EMMO_a4839f08_1080_53bf_9cb3_101e20c2656b", - "IronBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_cc4e178c_bc1f_4502_b6c2_33f304ef6bab", + "IronBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_5e1136d3_df00_40f7_a4bc_8259341053a1", "IronDisulfide": "https://w3id.org/emmo/domain/chemical-substance#substance_c728b6b9_449a_45ff_b5ae_6b7968708f0d", "IronDisulfideElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d2726dd5_69f0_4cb1_bd3c_4c48813e57e7", "IronIIIHydroxide": "https://w3id.org/emmo/domain/chemical-substance#substance_323a2e39_d7d5_4802_884a_9aa41a280986", @@ -2556,6 +2557,7 @@ "LossFactor": "https://w3id.org/emmo#EMMO_c3796906_8063_47d4_92af_890ae08f25fa", "LowPressureCasting": "https://w3id.org/emmo#EMMO_8b2fd84c_8f51_4731_9bd7_830545e78b23", "LowerCriticalMagneticFluxDensity": "https://w3id.org/emmo#EMMO_fd4a6307_f9f7_4b54_b044_caa04e620232", + "LowerCurrentLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea", "LowerFrequencyLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_b66d6553_6136_4754_902a_707e414210c2", "LowerVoltageLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_534dd59c_904c_45d9_8550_ae9d2eb6bbc9", "Lumen": "https://w3id.org/emmo#Lumen", @@ -2608,7 +2610,7 @@ "MagnesiumTriflate": "https://w3id.org/emmo/domain/chemical-substance#substance_df24fad8_7ef0_4330_a3f2_c4d65d9a3be8", "MagnesiumTrifluoromethanesulfonyloxalatoborate": "https://w3id.org/emmo/domain/chemical-substance#substance_2b7473ba_9156_489a_880f_3a2f746cd104", "MagneticDipoleMoment": "https://w3id.org/emmo#EMMO_81e767f1_59b1_4d7a_bf69_17f322241831", - "MagneticDipoleMomentUnit": "https://w3id.org/emmo#EMMO_5073dc80_aec2_4a3b_8057_fababfcbfe11", + "MagneticDipoleMomentUnit": "https://w3id.org/emmo#EMMO_1c2226a9_22f0_40c8_8928_5a01d398f96e", "MagneticFieldStrength": "https://w3id.org/emmo#EMMO_b4895f75_41c8_4fd9_b6d6_4d5f7c99c423", "MagneticFieldStrengthUnit": "https://w3id.org/emmo#EMMO_e6b83139_ba92_4fbd_a8b2_c8dde55844a1", "MagneticFlux": "https://w3id.org/emmo#EMMO_3b931698_937e_49be_ab1b_36fa52d91181", @@ -2676,7 +2678,7 @@ "MassExcess": "https://w3id.org/emmo#EMMO_7dd84949_0afa_4313_9b89_7bb0dd2e7771", "MassFlow": "https://w3id.org/emmo#EMMO_6d61ee3c_c5b6_4452_bc11_e9c33af992a7", "MassFluxUnit": "https://w3id.org/emmo#EMMO_e35d4936_b2e3_4cd6_a437_f1c864b3d450", - "MassFraction": "https://w3id.org/emmo/disciplines/units/coherentsiunits#EMMO_089f13b1_ceb3_4d2a_8795_b4a2d92916da", + "MassFraction": "https://w3id.org/emmo#EMMO_7c055d65_2929_40e1_af4f_4bf10995ad50", "MassFractionOfDryMatter": "https://w3id.org/emmo#EMMO_8f171308_f902_42c5_ac1d_d5259022e9c1", "MassFractionOfWater": "https://w3id.org/emmo#EMMO_cac16ce6_2cef_405d_ac63_0f918db4875e", "MassFractionUnit": "https://w3id.org/emmo#EMMO_18448443_dcf1_49b8_a321_cf46e2c393e1", @@ -3027,6 +3029,7 @@ "NobeliumAtom": "https://w3id.org/emmo#EMMO_49eb0790_50c2_5691_a8bf_dfa6f4a9f6c7", "NobeliumSymbol": "https://w3id.org/emmo#EMMO_c1bb775c_0888_5b88_9cce_c49bae1d298b", "NobleGasElementalSubstance": "https://w3id.org/emmo/domain/chemical-substance#substance_cac14194_2d5f_4fe6_b794_a9319f6d76ee", + "NominalCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100", "NominalProperty": "https://w3id.org/emmo#EMMO_909415d1_7c43_4d5e_bbeb_7e1910159f66", "NominalVoltage": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_639b844a_e801_436b_985d_28926129ead6", "NonActivePower": "https://w3id.org/emmo#EMMO_83318add_d05e_40fc_93ea_c6cd605df437", @@ -3061,6 +3064,7 @@ "NumberOfFiniteVolumeCellsInX": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_e73586eb_8475_4879_a43e_087c702ea6bf", "NumberOfFiniteVolumeCellsInY": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_c2a85d02_c6b4_42df_b5ed_a9904ec34a5c", "NumberOfFiniteVolumeCellsInZ": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a5e00e3a_736c_4200_8d04_ed222fe07037", + "NumberOfIterations": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_88dd2bce_fb17_4705_905d_892681812290", "NumberOfTurnsInAWinding": "https://w3id.org/emmo#EMMO_eefaa0ef_e7d4_4633_bf79_655bb55f4a49", "Numeral": "https://w3id.org/emmo#EMMO_74b05aed_66bf_43c8_aa2c_752a9ca8be03", "Numerical": "https://w3id.org/emmo#EMMO_4ce76d7f_03f8_45b6_9003_90052a79bfaa", @@ -3211,7 +3215,7 @@ "Permittivity": "https://w3id.org/emmo#EMMO_0ee5779e_d798_4ee5_9bfe_c392d5bea112", "PermittivityUnit": "https://w3id.org/emmo#EMMO_5f89cb0c_3171_47ee_b2ab_027a07c34c4b", "Persistence": "https://w3id.org/emmo#EMMO_e04884d9_eda6_487e_93d5_7722d7eda96b", - "Person": "http://xmlns.com/foaf/0.1/Person", + "Person": "https://schema.org/Person", "Perspective": "https://w3id.org/emmo#EMMO_49267eba_5548_4163_8f36_518d65b583f9", "Peta": "https://w3id.org/emmo#EMMO_d7c74480_a568_4470_acff_f18b499cc850", "PetaPrefixedUnit": "https://w3id.org/emmo#EMMO_43a6b269_da31_4bb6_a537_c97df4fff32a", @@ -3298,7 +3302,7 @@ "Porosity": "https://w3id.org/emmo#EMMO_3a6578ac_aee0_43b9_9bc6_1eb208c8c9a9", "PorousElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3663991d_9319_4f7a_922b_f0e428b58801", "PorousSeparator": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_58413d4e_2885_459e_ac06_8d45e661cf91", - "PositionVector": "https://w3id.org/emmo#EMMO_4312cae4_03ba_457e_b35d_0671a7db350c", + "PositionVector": "https://w3id.org/emmo#EMMO_44da6d75_54a4_4aa8_bd3a_156f6e9abb8e", "PositiveElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_aff732a9_238a_4734_977c_b2ba202af126", "PositiveTerminal": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_522f0c0b_cf33_4328_af71_12e38dae6798", "Positron": "https://w3id.org/emmo#EMMO_26a38b26_38ea_4acf_b212_db9e34c71b7a", @@ -3483,7 +3487,7 @@ "R54215": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_fc9e7ba3_5084_4c2a_b488_c6a96af99232", "R616": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_dc019f3f_e5f3_4eeb_bab9_a845a02223a0", "R621": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_15ec346a_6d3c_4161_95e1_9cf889965f85", - "R626": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_68c1c36e_1548_4247_bae2_fe7102a2c4ff", + "R626": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6b275583_433f_46f7_aafd_ebc9409257cc", "R712": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_bb2faf17_b819_4876_b17f_fa82917cf85d", "R716": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_34cb7ea7_2436_46e0_806e_a3c7835ae228", "R721": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3279f575_1c62_4bf2_a6e8_de4c7ff36f8e", @@ -3535,6 +3539,7 @@ "ReactivePower": "https://w3id.org/emmo#EMMO_d8030875_6d89_4645_9728_bbc3b8690609", "ReactorTimeConstant": "https://w3id.org/emmo#EMMO_b03dfad7_eab8_4949_9d10_dd4fd12faaef", "Real": "https://w3id.org/emmo#EMMO_18d180e4_5e3e_42f7_820c_e08951223486", + "RealElectricImpedance": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f", "ReciprocalAmountPerVolumeUnit": "https://w3id.org/emmo#EMMO_aef218f9_6ded_4db9_9263_e78eed55e5d6", "ReciprocalCentiMetre": "https://w3id.org/emmo#ReciprocalCentiMetre", "ReciprocalCubicCentiMetre": "https://w3id.org/emmo#ReciprocalCubicCentiMetre", @@ -3637,6 +3642,7 @@ "ResponseTimeAtAnISE": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_1a104474_c326_4a29_ac26_26a05ac8f72c", "RestEnergy": "https://w3id.org/emmo#EMMO_5117c5fe_f661_46f8_83c3_b48947f1532a", "RestMass": "https://w3id.org/emmo#EMMO_3c947caf_4070_4c79_a3a3_e53274ac9944", + "Resting": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b", "RestingTime": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_2678a656_4a27_4706_8dde_b0a93e9b92fa", "ReversibleHydrogenElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0d9ba00d_04bc_4bdc_85af_3380694f6f68", "RevolutionPerMinute": "https://w3id.org/emmo#RevolutionPerMinute", @@ -3790,7 +3796,7 @@ "SiemensSquareMetrePerMole": "https://w3id.org/emmo#SiemensSquareMetrePerMole", "Sievert": "https://w3id.org/emmo#Sievert", "Sign": "https://w3id.org/emmo#EMMO_b21a56ed_f969_4612_a6ec_cb7766f7f31d", - "Signal": "https://w3id.org/emmo/domain/chameo#Signal", + "Signal": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Signal", "SignalReferencePotential": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_68059d94_4c21_4065_b329_07faeebc7e87", "Silicon": "https://w3id.org/emmo/domain/chemical-substance#substance_68c0876b_cb62_41cd_846d_95cc9d9a8733", "SiliconAtom": "https://w3id.org/emmo#EMMO_798b0c96_82ca_5ce8_8d5f_f9f72668cf5d", @@ -4318,6 +4324,7 @@ "UpQuark": "https://w3id.org/emmo#EMMO_0a3f04a6_ba3a_49d9_99da_08b0e26f51f0", "UpQuarkType": "https://w3id.org/emmo#EMMO_fc47b76f_ad01_4cd0_8fc6_55532000e7c8", "UpperCriticalMagneticFluxDensity": "https://w3id.org/emmo#EMMO_6bfe6ad2_96ba_4478_81e5_d8881c550757", + "UpperCurrentLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45", "UpperFrequencyLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_666f0b69_9c74_49a3_80b3_96a188332462", "UpperVoltageLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6dcd5baf_58cd_43f5_a692_51508e036c88", "UraniumAtom": "https://w3id.org/emmo#EMMO_b233f8c0_37d8_51ae_9264_560e6649e246", diff --git a/versions/0.13.0-beta/electrochemicalquantities.ttl b/versions/0.13.0-beta/electrochemicalquantities.ttl index 882a543..96cb275 100644 --- a/versions/0.13.0-beta/electrochemicalquantities.ttl +++ b/versions/0.13.0-beta/electrochemicalquantities.ttl @@ -24,8 +24,6 @@ emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f a owl:AnnotationProperty . emmo:EMMO_5c78b424_087b_4e31_8c91_6422f1be1e86 owl:equivalentClass :electrochemistry_9c657fdc_b9d3_4964_907c_f9a6e8c5f52b . -emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 :electrochemistry_097ea615_c209_4edd_a1a1_5eea71d98fe8 "acimp/ohms"@en . - emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry_37b24a94_cae0_4d7a_9519_9f7692dec607 ; skos:altLabel "MassDiffusivity"@en ; emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q604008"@en ; @@ -101,6 +99,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "D40ParticleSize"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 40% of the sample's particles fall."@en . +:electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626 a owl:Class ; + rdfs:label "ImaginaryElectricImpedance"@en ; + rdfs:comment "the imaginary part of the complex electric impedance"@en ; + rdfs:subClassOf emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 ; + skos:prefLabel "ImaginaryElectricImpedance"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the imaginary part of the complex electric impedance"@en . + :electrochemistry_02d2d1d1_241c_429b_b4e7_31f2c3dc4835 a owl:Class ; rdfs:label "D95ParticleSize"@en ; rdfs:comment "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 95% of the sample's particles fall."@en ; @@ -381,6 +386,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "D50ParticleSize"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 50% of the sample's particles fall."@en . +:electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45 a owl:Class ; + rdfs:label "UpperCurrentLimit"@en ; + rdfs:comment "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en ; + rdfs:subClassOf :electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 ; + skos:prefLabel "UpperCurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + :electrochemistry_3e54f9e3_a31d_4821_9bfb_ef953a42c35b a owl:Class ; rdfs:label "MaximumPulseDischargingCurrent"@en ; rdfs:comment "the maximum current approved for pulse discharge of an electrochemical device"@en ; @@ -608,6 +620,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "ChargingCurrent"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electric current applied to an electrochemical device during a charging process"@en . +:electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea a owl:Class ; + rdfs:label "LowerCurrentLimit"@en ; + rdfs:comment "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en ; + rdfs:subClassOf :electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 ; + skos:prefLabel "LowerCurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + :electrochemistry_7f073272_8925_4344_995c_a5a6dd1fcde6 a owl:Class ; rdfs:label "ChargingConstantCurrentPercentage"@en ; rdfs:comment "the percentage of the total charge capacity that is obtained during a constant current charge process"@en ; @@ -705,6 +724,20 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "DischargingSpecificCapacity"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "quotient of the capacity of a cell or battery [ or electrode or active material ] obtained during a discharge process by its mass."@en . +:electrochemistry_88dd2bce_fb17_4705_905d_892681812290 a owl:Class ; + rdfs:label "NumberOfIterations"@en ; + rdfs:comment "the number of times an iterative process should occur"@en ; + rdfs:subClassOf emmo:EMMO_ba882f34_0d71_4e4f_9d92_0c076c633a2c ; + skos:prefLabel "NumberOfIterations"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the number of times an iterative process should occur"@en . + +:electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100 a owl:Class ; + rdfs:label "NominalCapacity"@en ; + rdfs:comment "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en ; + rdfs:subClassOf :electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 ; + skos:prefLabel "NominalCapacity"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en . + :electrochemistry_8e943e12_ecc0_4093_899e_7226be6be7f2 a owl:Class ; rdfs:label "D90ParticleSize"@en ; rdfs:comment "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 90% of the sample's particles fall."@en ; @@ -820,6 +853,15 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the celsius temperature of the ambient environment"@en ; :electrochemistry_1b717a20_17e3_4480_8c60_c4ae94058f05 "Environmental_Temperature (C)"@en . +:electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f a owl:Class ; + rdfs:label "RealElectricImpedance"@en ; + rdfs:comment "the imaginary part of the complex electric impedance"@en ; + rdfs:subClassOf emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 ; + skos:altLabel "ACResistance"@en ; + skos:prefLabel "RealElectricImpedance"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q1048490"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the imaginary part of the complex electric impedance"@en . + :electrochemistry_ae108db7_8765_4329_9908_059277dee586 a owl:Class ; rdfs:label "StepCapacity"@en ; rdfs:comment "the amount of charge that has passed through an electrochemical device within the time interval of a given testing step"@en ; @@ -1084,8 +1126,8 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry ; dcterms:license "https://creativecommons.org/licenses/by/4.0/legalcode" ; owl:imports ; - owl:versionIRI ; - owl:versionInfo "0.17.0-beta" . + owl:versionIRI ; + owl:versionInfo "0.18.0-beta" . a owl:NamedIndividual, foaf:Person ; @@ -1866,6 +1908,8 @@ In either case, the magnitude of the catalytic current depends on the applied po emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electric potential of an ion-selective electrode (ISE) and activity of an analyte ion at which the potential of the ISE is independent of temperature"@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1351/goldbook.I03304"@en . +emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 :electrochemistry_097ea615_c209_4edd_a1a1_5eea71d98fe8 "acimp/ohms"@en . + emmo:EMMO_e218c625_6a39_47a9_8d08_a2ef41c152a9 rdfs:subClassOf :electrochemistry_02eb0465_4f94_453c_8c1f_5ddf80134634 ; skos:altLabel "GravimetricEnergyDensity"@en ; :electrochemistry_811aafc3_0c6d_470e_b67e_ff5c82992609 "CmpEng(mWh/g)"@en . @@ -1997,14 +2041,6 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog skos:prefLabel "TemperatureLimit"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the temperature of a system"@en . -:electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 a owl:Class ; - rdfs:label "RatedCapacity"@en ; - rdfs:comment "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en ; - rdfs:subClassOf :electrochemistry_791c1915_a791_4450_acd8_7f94764743b5 ; - skos:prefLabel "RatedCapacity"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-03-15"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en . - :electrochemistry_9ed7210c_c4fa_467b_822d_ba12f885bdf4 a owl:Class ; rdfs:label "ConcentrationOverpotential"@en ; rdfs:comment "The concentration overpotential of an electrode reaction at a given electrode current density (c.d.) is basically the difference in equilibrium potentials across the diffusion layer. More precisely, it is the potential of a reference electrode (of the same electrode reaction as the working electrode ) with the interfacial concentrations which establish themselves at c.d., relative to the potential of a similar reference electrode with the concentrations of the bulk solution. From such a measured potential difference, with c.d. flowing, one needs to subtract the ohmic potential drop prevailing between the two electrodes."@en, @@ -2110,6 +2146,14 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog skos:prefLabel "NumberOfFiniteVolumeCells"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "number of discrete finite volume cells in a grid or sub-grid"@en . +:electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 a owl:Class ; + rdfs:label "RatedCapacity"@en ; + rdfs:comment "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en ; + rdfs:subClassOf :electrochemistry_791c1915_a791_4450_acd8_7f94764743b5 ; + skos:prefLabel "RatedCapacity"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-03-15"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en . + :electrochemistry_cc519a19_b8d5_4e3f_b893_3a884888ad79 a owl:Class ; rdfs:label "MaximumTemperature"@en ; rdfs:comment "the maximum allowable temperature"@en ; @@ -2186,14 +2230,6 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa :electrochemistry_a07dd85b_d0df_4d5d_8b0c_14d20ea3fe45 "current"@en ; :electrochemistry_ea9f4dba_8ca2_419e_9cdf_ce54e9ebbd46 "Current (A)"@en . -:electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 a owl:Class ; - rdfs:label "CurrentLimit"@en ; - rdfs:comment "limit on the electric current of an electrical system"@en ; - rdfs:subClassOf emmo:EMMO_c995ae70_3b84_4ebb_bcfc_69e6a281bb88, - :electrochemistry_b395a244_3a75_4737_be38_981bfa1277fe ; - skos:prefLabel "CurrentLimit"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the electric current of an electrical system"@en . - :electrochemistry_900e357f_2ee3_425a_a0b6_322661117787 a owl:Class ; rdfs:label "ElectrochemicalProperty"@en ; rdfs:subClassOf emmo:EMMO_909415d1_7c43_4d5e_bbeb_7e1910159f66 ; @@ -2292,6 +2328,14 @@ foaf:Person a owl:Class ; emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Faradaic_current"@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://goldbook.iupac.org/terms/view/F02321"@en . +:electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 a owl:Class ; + rdfs:label "CurrentLimit"@en ; + rdfs:comment "limit on the electric current of an electrical system"@en ; + rdfs:subClassOf emmo:EMMO_c995ae70_3b84_4ebb_bcfc_69e6a281bb88, + :electrochemistry_b395a244_3a75_4737_be38_981bfa1277fe ; + skos:prefLabel "CurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the electric current of an electrical system"@en . + :electrochemistry_1cd1d777_e67b_47eb_81f1_edac35d9f2c6 a owl:Class ; rdfs:label "Overpotential"@en ; rdfs:comment "difference between the electrode potential with current flow, and the electrode potential without current flow, i.e. the equilibrium potential"@en, diff --git a/versions/0.13.0-beta/electrochemistry-inferred.ttl b/versions/0.13.0-beta/electrochemistry-inferred.ttl index f4fa0f9..c704a22 100644 --- a/versions/0.13.0-beta/electrochemistry-inferred.ttl +++ b/versions/0.13.0-beta/electrochemistry-inferred.ttl @@ -7,7 +7,7 @@ @base . rdf:type owl:Ontology ; - owl:versionIRI ; + owl:versionIRI ; ""@en , "CHAMEO is a domain ontology designed to model the common aspects across the different characterisation techniques and methodologies."@en , """Defines physical quantities in the International System of Quantities (ISQ). ISQ was made an official ISO standard in 2009 and is defined in the ISO/IEC 80000 standard. @@ -146,12 +146,12 @@ The symbolic module includes symbols, symbolic constructs and formal languages." "https://w3id.org/emmo/domain/characterisation-methodology/chameo" ; "2024-04-12" , "2024-06-23"^^xsd:date , - "2024-07-03"^^xsd:date ; + "2024-07-05"^^xsd:date ; "https://creativecommons.org/licenses/by/4.0/legalcode" , "https://creativecommons.org/licenses/by/4.0/legalcode"@en ; "2024-04-12" , "2024-06-23"^^xsd:date , - "2024-07-03"^^xsd:date ; + "2024-07-05"^^xsd:date ; "EMMC ASBL" , "EMMC ASBL"@en , """EMMC ASBL @@ -241,11 +241,11 @@ We kindly acknowledge NIST for reusing their content, including the selection of "You can contact EMMO Authors via emmo@emmc.eu"@en ; owl:backwardCompatibleWith "" , " " , - "0.16.0-beta" ; - owl:priorVersion "0.16.0-beta" , + "0.17.0-beta" ; + owl:priorVersion "0.17.0-beta" , "0.5.0-beta" , "1.0.0-beta2" ; - owl:versionInfo "0.17.0-beta" , + owl:versionInfo "0.18.0-beta" , "0.6.0-beta" , "1.0.0-beta3" , "1.0.0-beta7" ; @@ -2333,7 +2333,7 @@ While the EMMO FOL introduces the quantum causality relation C(x,y) as primitive rdf:type owl:ObjectProperty ; rdfs:subPropertyOf ; rdfs:domain ; - rdfs:range ; + rdfs:range ; "hasSolvent"@en . @@ -2364,7 +2364,7 @@ While the EMMO FOL introduces the quantum causality relation C(x,y) as primitive rdf:type owl:ObjectProperty ; rdfs:subPropertyOf ; rdfs:domain ; - rdfs:range ; + rdfs:range ; "hasSolute"@en . @@ -34532,7 +34532,7 @@ Wikipedia"""@en ; , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "ZincElectrode"@en ; "an electrode in which the main active material is zinc metal"@en ; @@ -34555,7 +34555,7 @@ Wikipedia"""@en ; rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "LithiumElectrode"@en ; "an electrode in which the active material is lithium metal" . @@ -44391,164 +44391,11 @@ Wear is defined as the progressive removal of the material from a solid surface "InChI=1S/Pb" . -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0139937b_2724_4864_84fb_f14bcfb83538 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0bdf0bb9_41fc_455d_af11_a249e24acdf6 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0f2f65a7_5cc4_4c86_a4d0_676771c646f1 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_250fa43e_1f26_4ed8_b787_91a2325a8e7b - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_25f6ff4c_53ad_4837_97c4_aa6f06099bb5 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_2a540939_3908_4f85_92f9_c46da7d4e9cb - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_2a87ca10_fc6a_4d61_b48c_d9790a566ee3 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_3899a9c9_9b34_443e_8ce6_0257589bb38a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_3ac62305_acd6_4312_9e31_4f824bd2530d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_4126ee09_b9c6_4694_bf33_0d8970e05f72 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_4c62d334_a124_40b3_9fd1_fe713d01a6af - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_5088ad54_b37d_4ee1_a086_d6c17e644f9a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_5cee19d2_f916_4264_a8ed_efed13a808d2 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_68c0876b_cb62_41cd_846d_95cc9d9a8733 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_68f9b85e_340f_46ec_96da_ebb6bd62f5fd - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_73d4606c_7460_4a5c_9413_793bdf35753e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_7dc738d6_74f2_489e_ae84_a6dbdf627f2e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_848003a2_71ee_4967_8039_354c907ec7f4 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_97439fbb_155f_433d_9edd_d510cd491f24 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_9bd78e1c_a4dc_41b6_8013_adb51df1ffdc - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_9da78aea_d436_40e2_a68f_c3dee32b825e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_aa8e9cc4_5f66_4307_b1c8_26fac7653a90 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_acdb232f_8041_4e11_8a11_5db2d2baae4d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_b01771a9_218a_4b01_b20f_4021cfa0b7d5 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_b3815a7f_f64a_48f6_b0ce_d0032578c699 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c109ca45_08c7_4436_a818_a9c575785e2f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c28a0967_ed23_48cc_a14e_a651d75a19db - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c5582dae_ccff_4fbe_adaa_078091054640 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c728b6b9_449a_45ff_b5ae_6b7968708f0d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_cd17ca33_ae3d_4738_8930_547673bf6c1f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_cdd18f0c_e7b3_4d09_b3dd_c09fe4b1adba - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_d53259a7_0d9c_48b9_a6c1_4418169df303 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_d673ceb2_3045_4e2e_8cad_56f5169b542f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_db74b6b7_09fc_40db_a7d5_6eb86b69192a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_dc5fb846_1824_40f8_9834_81f118aa1c2d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_dcdbdbed_2e20_40d1_a7a5_5761de7f0618 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_e1e6ff98_0725_4d27_ab21_2ca5a95371f0 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_e8fafdc8_6cd3_4dd0_9630_10ca8e3f1827 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_f3e7979a_e3ef_450a_8762_7d8778afe478 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_f7525766_90cf_43e9_8932_7cb3b14f676f - rdf:type owl:Class . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626 + rdf:type owl:Class ; + rdfs:subClassOf ; + "ImaginaryElectricImpedance"@en ; + "the imaginary part of the complex electric impedance"@en . ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_01260656_ac32_472e_9513_a607366538ec @@ -44872,11 +44719,11 @@ Wear is defined as the progressive removal of the material from a solid surface rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCLCOElectrode"@en ; @@ -45639,7 +45486,7 @@ and t* through mathematical models, provided that the long-time potential- deter , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LFPElectrode"@en ; @@ -46241,7 +46088,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "PtElectrode"@en ; "PlatinumElectrode"@en ; @@ -46343,7 +46190,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SiliconOxideGraphiteElectrode"@en ; @@ -46477,7 +46324,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "FTOElectrode"@en ; @@ -46500,7 +46347,7 @@ Aluminum foil"""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "NiOOHElectrode"@en , "NickelOxyhydroxideElectrode"@en ; @@ -46544,6 +46391,14 @@ Aluminum foil"""@en . "a coin case with a nominal diameter of 7.9 mm and a height of 1.65 mm"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b + rdf:type owl:Class ; + rdfs:subClassOf , + ; + "Resting"@en ; + "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 rdf:type owl:Class ; rdfs:subClassOf ; @@ -46811,6 +46666,13 @@ Aluminum foil"""@en . "A material relation in electrochemistry."@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45 + rdf:type owl:Class ; + rdfs:subClassOf ; + "UpperCurrentLimit"@en ; + "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3e54f9e3_a31d_4821_9bfb_ef953a42c35b rdf:type owl:Class ; rdfs:subClassOf , @@ -46981,7 +46843,7 @@ Aluminum foil"""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNMOElectrode"@en ; @@ -47201,11 +47063,11 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCLMOElectrode"@en ; @@ -47294,7 +47156,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumNickelPhosphateElectrode"@en ; @@ -47549,7 +47411,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumIronPhosphateElectrode"@en ; @@ -47904,7 +47766,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "CarbonMonofluorideElectrode"@en ; "electrode in which the active material is carbon monofluoride"@en ; @@ -48131,7 +47993,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "HardCarbonElectrode"@en ; "electrode in which the active material is hard carbon"@en . @@ -48291,7 +48153,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "SAE"@en ; "SolidAmalgamElectrode"@en ; @@ -48426,7 +48288,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LTOElectrode"@en ; @@ -48518,20 +48380,13 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ] . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "system that consists of at least two electron conductors (electrodes) in contact with ionic conductors (electrolytes)"@en ; - "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6fec8cc1_4e6c_428e_8343_6cf3c286a185 rdf:type owl:Class ; rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "AuElectrode"@en ; "GoldElectrode"@en ; @@ -48691,7 +48546,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NiOElectrode"@en ; @@ -48721,7 +48576,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "TiO2Electrode"@en ; @@ -48915,13 +48770,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ] . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "in secondary cells, the active material is restored to its original state during charge"@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - [ rdf:type owl:Axiom ; owl:annotatedSource ; owl:annotatedProperty ; @@ -48965,6 +48813,13 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s "an electrode in which the primary active material consists of caesium or caesium compounds"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea + rdf:type owl:Class ; + rdfs:subClassOf ; + "LowerCurrentLimit"@en ; + "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7f073272_8925_4344_995c_a5a6dd1fcde6 rdf:type owl:Class ; rdfs:subClassOf ; @@ -49118,7 +48973,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "LiquidGalliumElectrode"@en ; "a liquid electrode with an active material of gallium"@en . @@ -49188,7 +49043,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "ZnOElectrode"@en ; @@ -49446,6 +49301,13 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "an electrode in which the primary active material consists of sulfur or sulfur compounds"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_88dd2bce_fb17_4705_905d_892681812290 + rdf:type owl:Class ; + rdfs:subClassOf ; + "NumberOfIterations"@en ; + "the number of times an iterative process should occur"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8968eb7a_9a65_4286_a596_c31b998df329 rdf:type owl:Class ; rdfs:subClassOf ; @@ -49504,6 +49366,13 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "substance that increases chemical reaction speed, and which is conserved after the reaction"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100 + rdf:type owl:Class ; + rdfs:subClassOf ; + "NominalCapacity"@en ; + "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8b40856f_1ca2_4137_9616_7fb624671909 rdf:type owl:Class ; rdfs:subClassOf , @@ -50109,7 +49978,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumCobaltPhosphateElectrode"@en ; @@ -50298,13 +50167,6 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; "plate in which the active material is applied as a paste to a conductive current collector"@en . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "plate in which the active material is applied as a paste to a conductive current collector"@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a24f8581_a5a4_41a4_bb45_d0fdd5c0d810 rdf:type owl:Class ; @@ -50397,7 +50259,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "SilverOxideElectrode"@en ; "an electrode in which the primary active material consists of manganese dioxide or vmanganese dioxide compounds"@en ; @@ -50427,7 +50289,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "AgElectrode"@en ; "SilverElectrode"@en ; @@ -50662,7 +50524,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "CupricOxideElectrode"@en ; "CopperOxideElectrode"@en ; @@ -50751,6 +50613,15 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "Environmental_Temperature (C)"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f + rdf:type owl:Class ; + rdfs:subClassOf ; + "ACResistance"@en ; + "RealElectricImpedance"@en ; + "https://www.wikidata.org/wiki/Q1048490"@en ; + "the imaginary part of the complex electric impedance"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abfadc99_6e43_4d37_9b04_7fc5b0f327ae rdf:type owl:Class ; rdfs:subClassOf , @@ -50782,7 +50653,8 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e rdf:type owl:Class ; rdfs:subClassOf ; - "CCCVCycling"@en ; + "CCCVCycling"@en ; + "ConstantCurrentConstantVoltageCycling"@en ; "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en . @@ -51030,7 +50902,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCElectrode"@en ; @@ -51360,11 +51232,11 @@ of other configurations are used."""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNMOLFPElectrode"@en ; @@ -51466,13 +51338,6 @@ of other configurations are used."""@en . "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; "https://en.wikipedia.org/wiki/Fuel_cell"@en . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_bea04148_10d9_4eda_9cd5_8f609d7e9ff8 rdf:type owl:Class ; @@ -51568,7 +51433,7 @@ of other configurations are used."""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LMOElectrode"@en ; @@ -51751,11 +51616,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "ITO"@en ; @@ -51809,7 +51674,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "GraphiteElectrode"@en ; "electrode in which the active material is graphite"@en . @@ -51928,7 +51793,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "MnO2Electrode"@en ; "ManganeseDioxideElectrode"@en ; @@ -51943,7 +51808,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNOElectrode"@en ; @@ -51963,7 +51828,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "IrO2Electrode"@en ; @@ -51977,7 +51842,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumManganesePhosphateElectrode"@en ; @@ -52146,7 +52011,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "IronDisulfideElectrode"@en ; "an electrode in which the primary active material consists of iron disulfide or iron disulfide compounds."@en ; @@ -52509,7 +52374,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "HgElectrode"@en ; "MercuryElectrode"@en ; @@ -52785,11 +52650,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SiliconGraphiteElectrode"@en ; @@ -52802,7 +52667,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumManganeseOxideElectrode"@en ; @@ -53004,7 +52869,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumCobaltOxideElectrode"@en ; @@ -53096,7 +52961,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NCAElectrode"@en ; @@ -53315,7 +53180,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "PbOElectrode"@en ; @@ -53401,7 +53266,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumChromiumOxideElectrode"@en ; @@ -53621,7 +53486,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LCOElectrode"@en ; @@ -53672,11 +53537,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LMOLFPElectrode"@en ; @@ -53808,10 +53673,10 @@ In either case, the magnitude of the catalytic current depends on the applied po "The universe is considered as a causally self-connected object, encompassing all other objects. For this reason is unique."@en . -[ owl:qualifiedCardinality "3"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "3"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "4"^^xsd:nonNegativeInteger @@ -53835,10 +53700,10 @@ In either case, the magnitude of the catalytic current depends on the applied po [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:minQualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:minQualifiedCardinality "2"^^xsd:nonNegativeInteger +[ owl:minQualifiedCardinality "1"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger @@ -53850,7 +53715,7 @@ In either case, the magnitude of the catalytic current depends on the applied po [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:minQualifiedCardinality "2"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger diff --git a/versions/0.13.0-beta/electrochemistry.ttl b/versions/0.13.0-beta/electrochemistry.ttl index baa1206..d442e3c 100644 --- a/versions/0.13.0-beta/electrochemistry.ttl +++ b/versions/0.13.0-beta/electrochemistry.ttl @@ -1,6 +1,6 @@ @prefix : . @prefix bibo: . -@prefix chemsub: . +@prefix chemsub: . @prefix dcterms: . @prefix emmo: . @prefix foaf: . @@ -54,9 +54,9 @@ schema:name a owl:AnnotationProperty . dcterms:created "2022-11-25"^^xsd:date ; dcterms:creator , ; - dcterms:issued "2024-07-03"^^xsd:date ; + dcterms:issued "2024-07-05"^^xsd:date ; dcterms:license "https://creativecommons.org/licenses/by/4.0/legalcode" ; - dcterms:modified "2024-07-03"^^xsd:date ; + dcterms:modified "2024-07-05"^^xsd:date ; dcterms:publisher "EMMO" ; dcterms:source , , @@ -67,13 +67,13 @@ schema:name a owl:AnnotationProperty . bibo:status "unstable" ; vann:preferredNamespacePrefix "echem" ; vann:preferredNamespaceUri "https://w3id.org/emmo/domain/electrochemistry" ; - owl:backwardCompatibleWith "0.16.0-beta" ; + owl:backwardCompatibleWith "0.17.0-beta" ; owl:imports , , - ; - owl:priorVersion "0.16.0-beta" ; - owl:versionIRI ; - owl:versionInfo "0.17.0-beta" ; + ; + owl:priorVersion "0.17.0-beta" ; + owl:versionIRI ; + owl:versionInfo "0.18.0-beta" ; foaf:logo "https://raw.githubusercontent.com/emmo-repo/domain-electrochemistry/gh-pages/assets/img/fig/png/domain-electrochemistry-logo.png" . :electrochemistry_027d437e_3bbf_4eda_940b_e509f8d2b993 a owl:Class ; @@ -535,6 +535,14 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "R716" ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a coin case with a nominal diameter of 7.9 mm and a height of 1.65 mm"@en . +:electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b a owl:Class ; + rdfs:label "Resting"@en ; + rdfs:comment "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en ; + rdfs:subClassOf , + :electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 ; + skos:prefLabel "Resting"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en . + :electrochemistry_36444184_1100_4271_869f_7f2d983aaecb a owl:Class ; rdfs:label "P45173115" ; rdfs:comment "a prismatic case with a nominal length of 45 mm, width of 173 mm, and height of 115 mm"@en ; @@ -1564,6 +1572,15 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "TinBasedElectrode"@en ; emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "an electrode in which the primary active material consists of tin or tin compounds"@en . +:electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c a owl:Class ; + rdfs:label "PastedPlate"@en ; + rdfs:comment "plate in which the active material is applied as a paste to a conductive current collector"@en ; + rdfs:subClassOf :electrochemistry_92147e31_d015_4889_a092_04fbab033f15 ; + skos:altLabel "PastedElectrode"@en ; + skos:prefLabel "PastedPlate"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "plate in which the active material is applied as a paste to a conductive current collector"@en . + :electrochemistry_a277e420_2483_44d5_a2bc_4e421dea231a a owl:Class ; rdfs:label "R926" ; rdfs:comment "a coin case with a nominal diameter of 9.5 mm and a height of 2.6 mm"@en ; @@ -1658,10 +1675,11 @@ schema:name a owl:AnnotationProperty . emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a coin case with a nominal diameter of 11.6 mm and a height of 4.2 mm"@en . :electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e a owl:Class ; - rdfs:label "CCCVCycling"@en ; + rdfs:label "ConstantCurrentConstantVoltageCycling"@en ; rdfs:comment "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en ; rdfs:subClassOf :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; - skos:prefLabel "CCCVCycling"@en ; + skos:altLabel "CCCVCycling"@en ; + skos:prefLabel "ConstantCurrentConstantVoltageCycling"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en . :electrochemistry_ad9cdad6_66e8_471e_a7c6_b79f37c20814 a owl:Class ; @@ -1783,6 +1801,17 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "P20100141" ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a prismatic case with a nominal length of 20 mm, width of 100 mm, and height of 141 mm"@en . +:electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d a owl:Class ; + rdfs:label "FuelCell"@en ; + rdfs:comment "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; + rdfs:subClassOf :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; + skos:prefLabel "FuelCell"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q180253"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-05"@en ; + emmo:EMMO_6dd685dd_1895_46e4_b227_be9f7d643c25 "https://dbpedia.org/page/Fuel_cell"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; + emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Fuel_cell"@en . + :electrochemistry_bea04148_10d9_4eda_9cd5_8f609d7e9ff8 a owl:Class ; rdfs:label "CelsiusTemperatureMeasurement"@en ; rdfs:comment "measurement of temperature"@en ; @@ -3335,15 +3364,6 @@ schema:name a owl:AnnotationProperty . "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-26"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "interface between an electrolyte and an electrode where an electrode reaction takes place."@en . -:electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c a owl:Class ; - rdfs:label "PastedPlate"@en ; - rdfs:comment "plate in which the active material is applied as a paste to a conductive current collector"@en ; - rdfs:subClassOf :electrochemistry_92147e31_d015_4889_a092_04fbab033f15 ; - skos:altLabel "PastedElectrode"@en ; - skos:prefLabel "PastedPlate"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "plate in which the active material is applied as a paste to a conductive current collector"@en . - :electrochemistry_a462859d_d8bd_48ea_8bde_1576f1248a1e a owl:Class ; rdfs:label "SilverElectrode"@en ; rdfs:comment "electrode in the form of foil, mesh, wire, rod, tube, powder, pellets, or single crystal of silver"@en ; @@ -3459,17 +3479,6 @@ of other configurations are used."""@en . emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-19"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "part which insures insulation between the plate (electrode) edges and adjacent plates (electrodes) and the container side walls"@en . -:electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d a owl:Class ; - rdfs:label "FuelCell"@en ; - rdfs:comment "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - rdfs:subClassOf :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; - skos:prefLabel "FuelCell"@en ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q180253"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-05"@en ; - emmo:EMMO_6dd685dd_1895_46e4_b227_be9f7d643c25 "https://dbpedia.org/page/Fuel_cell"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Fuel_cell"@en . - :electrochemistry_bed5b5f9_b89d_45e3_a8c2_81b70ae21847 a owl:Class ; rdfs:label "SeriesParallelConnection"@en ; rdfs:comment "arrangement of cells or batteries wherein in series connected cells or batteries are connected in parallel."@en ; @@ -4518,15 +4527,20 @@ schema:Person a owl:Class ; skos:prefLabel "BimetallicOxideElectrode"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "an electrode consisting of two metal oxide active materials"@en . -:electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 a owl:Class ; - rdfs:label "GalvanostaticProcess"@en ; - rdfs:comment "a process in which the electric current is kept constant"@en ; - rdfs:subClassOf [ a owl:Restriction ; - owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; 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+ emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; + emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "material which reacts chemically to produce electric energy when the cell discharges", + "in secondary cells, the active material is restored to its original state during charge"@en . :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 a owl:Class ; rdfs:label "PotentiometricStrippingAnalysis"@en ; @@ -4601,20 +4615,15 @@ schema:Person a owl:Class ; "The electrode (or interfacial) reaction involves all the processes (chemical reaction, structural reorganization, adsorption) accompanying the charge transfer step."@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1351/goldbook.E01960"@en . -:electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 a owl:Class ; - rdfs:label "ActiveMaterial"@en ; - rdfs:comment "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; - rdfs:subClassOf :electrochemistry_b5ea31c9_bb10_4276_980e_c3eceb1efc82, - :electrochemistry_ebdb68e9_c4b5_4d57_a042_c0f51d446755 ; - skos:altLabel "ActiveElectrochemicalMaterial"@en, - "ElectrochemicallyActiveMaterial"@en ; - skos:prefLabel "ActiveMaterial"@en ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q120907375" ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-33", - "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-14"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "material which reacts chemically to produce electric energy when the cell discharges", - "in secondary cells, the active material is restored to its original state during charge"@en . +:electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 a owl:Class ; + rdfs:label "GalvanostaticProcess"@en ; + rdfs:comment "a process in which the electric current is kept constant"@en ; + rdfs:subClassOf [ a owl:Restriction ; + owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; + owl:someValuesFrom :electrochemistry_22725105_c941_4b14_a4a2_fcb627958607 ], + :electrochemistry_5548f188_df00_4c05_ae98_7846e92efe36 ; + skos:prefLabel "GalvanostaticProcess"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a process in which the electric current is kept constant"@en . :electrochemistry_8a1c9a7b_978c_4421_a9c1_d0b07b42aab9 a owl:Class ; rdfs:label "ChemicalReaction"@en ; @@ -4953,9 +4962,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "extremely resistant to many chemicals, impermeable to gases and liquids, and has good electrical conductivity, high hardness and strength, and biocompatibility"@en . + owl:annotatedTarget "electrode made of glassy carbon material with an intertwined graphitic ribbon structure, formed by pyrolysis of a resol precursor at temperatures up to 3000 °C"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -4976,28 +4985,22 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "A disc electrode that is embedded in the centre of a cylinder which rotates in solution around the longitudinal cylinder axis."@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "composite system in which the supplied electric energy mainly produces chemical reactions or, conversely, in which the energy released by chemical reactions is mainly delivered by the system as electric energy"@en . + owl:annotatedTarget "a system containing two electrodes that allow transport of electrons, separated by an electrolyte that allows movement of ions but blocks movement of electrons."@en . [] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "system that consists of at least two electron conductors (electrodes) in contact with ionic conductors (electrolytes)"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" . + owl:annotatedTarget "composite system in which the supplied electric energy mainly produces chemical reactions or, conversely, in which the energy released by chemical reactions is mainly delivered by the system as electric energy"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "glassy carbon combines glass-like mechanical characteristics with physical properties similar to graphite, owing to its “graphene ribbon” structure"@en . - -[] a owl:Axiom ; - dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "a system containing two electrodes that allow transport of electrons, separated by an electrolyte that allows movement of ions but blocks movement of electrons."@en . + owl:annotatedTarget "extremely resistant to many chemicals, impermeable to gases and liquids, and has good electrical conductivity, high hardness and strength, and biocompatibility"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5033,13 +5036,13 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "one of the most frequently used working electrodes"@en . + owl:annotatedTarget "glassy carbon combines glass-like mechanical characteristics with physical properties similar to graphite, owing to its “graphene ribbon” structure"@en . [] a owl:Axiom ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; - owl:annotatedTarget "in secondary cells, the active material is restored to its original state during charge"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedTarget "material that is oxidized or reduced at an electrode in an electrochemical cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5047,12 +5050,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; owl:annotatedTarget "material which reacts chemically to produce electric energy when the cell discharges" . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; - owl:annotatedTarget "material that is oxidized or reduced at an electrode in an electrochemical cell"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5061,9 +5058,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "electrode made of glassy carbon material with an intertwined graphitic ribbon structure, formed by pyrolysis of a resol precursor at temperatures up to 3000 °C"@en . + owl:annotatedTarget "one of the most frequently used working electrodes"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5083,18 +5080,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_83f2b1e9_cb67_4dbf_977f_ba54bbae374f ; owl:annotatedTarget "charge during which the electric current is maintained at a constant value regardless of the battery voltage or temperature"@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; - owl:annotatedTarget "Electrolyte solution in the anodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the anode is placed."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; owl:annotatedTarget "electrolyte on the anode side of an electrochemical cell that is divided into compartments"@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; + owl:annotatedTarget "Electrolyte solution in the anodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the anode is placed."@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5133,15 +5130,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_8d3bf304_78e4_4e99_abe1_6ab429e44ed1 ; - owl:annotatedTarget "a sealed cell may be equipped with a safety device to prevent a dangerously high internal pressure and is designed to operate during its life in its original sealed state"@en . + owl:annotatedTarget "cell which remains closed and does not release either gas or liquid when operated within the limits specified by the manufacturer"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_8d3bf304_78e4_4e99_abe1_6ab429e44ed1 ; - owl:annotatedTarget "cell which remains closed and does not release either gas or liquid when operated within the limits specified by the manufacturer"@en . + owl:annotatedTarget "a sealed cell may be equipped with a safety device to prevent a dangerously high internal pressure and is designed to operate during its life in its original sealed state"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5150,10 +5147,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "capacitor consisting of a metallic plate as first conductor, a very thin oxide film formed on the metal as the dielectric and an electrolyte as second conductor"@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_06d8e1ee_924a_4915_998d_33a69f41dadc ; - owl:annotatedTarget "operation during which an electrochemical cell supplies electric energy as the result of chemical changes within the cell"@en . + owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; + owl:annotatedTarget "two-step electrochemical measurement in which 1) material is accumulated at an electrode and 2) the material is removed by chemical reaction or electrochemically at constant current with measurement of electrode potential"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5161,6 +5158,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; owl:annotatedTarget "historically for the analysis of metal ions, mercury ions were added to the test solution to form a mercury amalgam when reduced. Alternatively, an HMDE or MFE was used and the oxidizing agent added after amalgam formation. However, the toxicity of mercury and its compounds have all but precluded the present-day use of mercury"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_06d8e1ee_924a_4915_998d_33a69f41dadc ; + owl:annotatedTarget "operation during which an electrochemical cell supplies electric energy as the result of chemical changes within the cell"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5179,12 +5182,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; owl:annotatedTarget "the time between changes in potential in step 2 is related to the concentration of analyte in the solution"@en . -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; - owl:annotatedTarget "two-step electrochemical measurement in which 1) material is accumulated at an electrode and 2) the material is removed by chemical reaction or electrochemically at constant current with measurement of electrode potential"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5211,15 +5208,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_9ee6e728_e8f5_4b36_a045_d63da69dfc85 ; - owl:annotatedTarget "overcharge is also the act of charging beyond a certain limit specified by the manufacturer"@en . + owl:annotatedTarget "continued charging of a fully charged secondary cell or battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_9ee6e728_e8f5_4b36_a045_d63da69dfc85 ; - owl:annotatedTarget "continued charging of a fully charged secondary cell or battery"@en . + owl:annotatedTarget "overcharge is also the act of charging beyond a certain limit specified by the manufacturer"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5227,6 +5224,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_9f466223_e20a_474d_ac4d_6d4b6131c275 ; owl:annotatedTarget "an electrode that holds its potential essentially constant by efficiently allowing electric current to pass"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_a0580fa9_5073_44af_b33e_7adbc83892d0 ; + owl:annotatedTarget "electrode reaction in which oxidation occurs at the anode"@en . + [] a owl:Axiom ; dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5242,14 +5245,14 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0580fa9_5073_44af_b33e_7adbc83892d0 ; - owl:annotatedTarget "electrode reaction in which oxidation occurs at the anode"@en . + owl:annotatedSource :electrochemistry_a0a619d7_da95_41f0_8bc3_9c19d636d543 ; + owl:annotatedTarget "electrode that serves only as a source or sink for electrons without playing a chemical role in the electrode reaction"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0a619d7_da95_41f0_8bc3_9c19d636d543 ; - owl:annotatedTarget "electrode that serves only as a source or sink for electrons without playing a chemical role in the electrode reaction"@en . + owl:annotatedSource :electrochemistry_a0fcb105_587f_45d8_a89a_46dc8f745069 ; + owl:annotatedTarget "partial or complete external covering of a cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5260,14 +5263,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0fcb105_587f_45d8_a89a_46dc8f745069 ; - owl:annotatedTarget "partial or complete external covering of a cell"@en . - -[] a owl:Axiom ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c ; - owl:annotatedTarget "plate in which the active material is applied as a paste to a conductive current collector"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedSource :electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e ; + owl:annotatedTarget "process inside an electrolytic cell used to coat a conductive object with a layer of a material"@en . [] a owl:Axiom ; dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; @@ -5278,8 +5275,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e ; - owl:annotatedTarget "process inside an electrolytic cell used to coat a conductive object with a layer of a material"@en . + owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; + owl:annotatedTarget "component of a cell which permits the flow of gas in one direction only"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5287,12 +5284,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; owl:annotatedTarget "a valve has a characteristic venting or opening and closing pressure"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; - owl:annotatedTarget "component of a cell which permits the flow of gas in one direction only"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5305,6 +5296,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a462859d_d8bd_48ea_8bde_1576f1248a1e ; owl:annotatedTarget "electrode in the form of foil, mesh, wire, rod, tube, powder, pellets, or single crystal of silver"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; + owl:annotatedTarget "a chemical reaction in an electrolyte involving a transfer of electrons between chemical components or between chemical components and an electrode"@en . + [] a owl:Axiom ; dcterms:source "Bockris, J. O'M. and Despić, . Aleksandar R. (2011, December 15). Electrochemical reaction. Encyclopedia Britannica. https://www.britannica.com/science/electrochemical-reaction" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5317,12 +5314,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; owl:annotatedTarget "the electrode reaction can also involve other chemical reactions including subreactions on a cell electrode"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; - owl:annotatedTarget "a chemical reaction in an electrolyte involving a transfer of electrons between chemical components or between chemical components and an electrode"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5355,15 +5346,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_ae56cce3_7a7c_4e53_bb58_31e0d642d47e ; - owl:annotatedTarget "this flame front may originate from a spark or an external naked flame igniting combustible electrolysis gas"@en . + owl:annotatedTarget "vent of special design which provides protection against the propagation of a flame front from or into the interior of a secondary cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_ae56cce3_7a7c_4e53_bb58_31e0d642d47e ; - owl:annotatedTarget "vent of special design which provides protection against the propagation of a flame front from or into the interior of a secondary cell"@en . + owl:annotatedTarget "this flame front may originate from a spark or an external naked flame igniting combustible electrolysis gas"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5395,6 +5386,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_b525a629_a679_464f_bc5b_b49d2fc82686 ; owl:annotatedTarget "an electrochemical cell for conductivity measurements"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; + owl:annotatedTarget "by convention, cell electrode at which an oxidation reaction occurs"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5419,12 +5416,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; owl:annotatedTarget "the concepts of “anode” and “cathode” are related only to the direction of electron flow, not to the polarity of the electrodes"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; - owl:annotatedTarget "by convention, cell electrode at which an oxidation reaction occurs"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5433,15 +5424,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_b79d4f9e_5727_4895_8d7f_5fc18d83eb90 ; - owl:annotatedTarget "in a galvanic cell, parasitic reactions may cause inefficiencies or loss of performance"@en . + owl:annotatedTarget "an unwanted side reaction"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_b79d4f9e_5727_4895_8d7f_5fc18d83eb90 ; - owl:annotatedTarget "an unwanted side reaction"@en . + owl:annotatedTarget "in a galvanic cell, parasitic reactions may cause inefficiencies or loss of performance"@en . [] a owl:Axiom ; dcterms:source "IEEE Standard Glossary of Stationary Battery Terminology (2016), https://doi.org/10.1109/IEEESTD.2016.7552407" ; @@ -5481,12 +5472,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_bbae1ef4_0a95_4e7d_9932_1bf939129eef ; owl:annotatedTarget "current-potential curve in a voltammetry experiment"@en . -[] a owl:Axiom ; - dcterms:source "https://en.wikipedia.org/wiki/Square_wave" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0e33278b_639f_412d_9abd_64c3790026ef ; - owl:annotatedTarget "Periodic potential where the amplitude alternates at a steady frequency between fixed minimum and maximum values, with the same duration at minimum and maximum."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5500,10 +5485,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "part which insures insulation between the plate (electrode) edges and adjacent plates (electrodes) and the container side walls"@en . [] a owl:Axiom ; + dcterms:source "https://en.wikipedia.org/wiki/Square_wave" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d ; - owl:annotatedTarget "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedSource :electrochemistry_0e33278b_639f_412d_9abd_64c3790026ef ; + owl:annotatedTarget "Periodic potential where the amplitude alternates at a steady frequency between fixed minimum and maximum values, with the same duration at minimum and maximum."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5535,12 +5520,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_c3f4b34a_0e2c_46f3_baab_4ebd2682d26f ; owl:annotatedTarget "An ionic liquid is an electrolyte composed of a salt that is liquid below 100 °C. Ionic liquids have found uses in electrochemical analysis, because their unconventional properties include a negligible vapor pressure, a high thermal and electrochemical stability, and exceptional dissolution properties for both organic and inorganic chemical species."@en . -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; - owl:annotatedTarget "Electron conductor in an electrochemical cell connected to the external circuit."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5553,6 +5532,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_c55ec02c_b727_4df1_97ce_91d7bb5d5e91 ; owl:annotatedTarget "unplanned escape of electrolyte, gas or other material from a cell or battery"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_c610d869_cc03_44f0_b40d_ca86e945b9c9 ; + owl:annotatedTarget "cell from which electrolyte cannot escape regardless of its orientation"@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5562,8 +5547,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_c610d869_cc03_44f0_b40d_ca86e945b9c9 ; - owl:annotatedTarget "cell from which electrolyte cannot escape regardless of its orientation"@en . + owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; + owl:annotatedTarget "electronically conductive part in electric contact with a medium of lower electronic conductivity and intended to perform one or more of the functions of emitting charge carriers to or receiving charge carriers from that medium or to establish an electric field in that medium"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5579,21 +5564,21 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; - owl:annotatedTarget "by convention, an oxidation reaction occurs during discharge"@en . + owl:annotatedTarget "for a device having two electrodes, that electrode having the lower electric potential"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; - owl:annotatedTarget "electronically conductive part in electric contact with a medium of lower electronic conductivity and intended to perform one or more of the functions of emitting charge carriers to or receiving charge carriers from that medium or to establish an electric field in that medium"@en . + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; + owl:annotatedTarget "by convention, an oxidation reaction occurs during discharge"@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; - owl:annotatedTarget "for a device having two electrodes, that electrode having the lower electric potential"@en . + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; + owl:annotatedTarget "Electron conductor in an electrochemical cell connected to the external circuit."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5604,8 +5589,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0f827b54_370d_4c63_99a6_80f13b24e55e ; - owl:annotatedTarget "evolution of gas resulting from electrolysis of the water in the electrolyte of a cell"@en . + owl:annotatedSource :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; + owl:annotatedTarget "set of operations that is carried out on a secondary cell or battery and is repeated regularly in the same sequence."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5622,14 +5607,14 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; - owl:annotatedTarget "set of operations that is carried out on a secondary cell or battery and is repeated regularly in the same sequence."@en . + owl:annotatedSource :electrochemistry_d5da9948_e95b_4f12_a2d2_10a48f390c52 ; + owl:annotatedTarget "arrangement of cells or batteries wherein parallel connected cells or batteries are connected in series."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_d5da9948_e95b_4f12_a2d2_10a48f390c52 ; - owl:annotatedTarget "arrangement of cells or batteries wherein parallel connected cells or batteries are connected in series."@en . + owl:annotatedSource :electrochemistry_0f827b54_370d_4c63_99a6_80f13b24e55e ; + owl:annotatedTarget "evolution of gas resulting from electrolysis of the water in the electrolyte of a cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5655,18 +5640,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_df78745e_f9db_4830_88f0_8ce074fcb8ff ; owl:annotatedTarget "liquid metal electrode used in polarography"@en . +[] a owl:Axiom ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; + owl:annotatedTarget "electrochemical cell in which chemical reactions occur spontaneously and chemical energy is converted into electrical energy."@en . + [] a owl:Axiom ; dcterms:references "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; owl:annotatedTarget "An electrochemical cell that spontaneously produces work."@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_113e0469_8ae0_407f_892d_4b988f8d8a08 ; - owl:annotatedTarget "electrochemical cell that has two half-cells separated by a wall permeable to ions, both containing the same electrolyte differing only in their temperatures."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5674,16 +5659,22 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "Electrochemical cell intended to produce electric energy."@en . [] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; - owl:annotatedTarget "electrochemical cell in which chemical reactions occur spontaneously and chemical energy is converted into electrical energy."@en . + owl:annotatedSource :electrochemistry_e2a1dae1_05e4_4bd1_a39d_0eb10db482bc ; + owl:annotatedTarget "method of separating and neutralizing ions by an electric current in an electrolytic cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e2a1dae1_05e4_4bd1_a39d_0eb10db482bc ; - owl:annotatedTarget "method of separating and neutralizing ions by an electric current in an electrolytic cell"@en . + owl:annotatedSource :electrochemistry_113e0469_8ae0_407f_892d_4b988f8d8a08 ; + owl:annotatedTarget "electrochemical cell that has two half-cells separated by a wall permeable to ions, both containing the same electrolyte differing only in their temperatures."@en . + +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; + owl:annotatedTarget "electrochemical cell intended to produce chemical reactions"@en . [] a owl:Axiom ; dcterms:references "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; @@ -5697,18 +5688,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; owl:annotatedTarget "Electrochemical cell in which electrical energy is converted into chemical energy."@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; - owl:annotatedTarget "electrochemical cell intended to produce chemical reactions"@en . - -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_1152ae6b_8b57_4d99_912e_40c6a29342fb ; - owl:annotatedTarget "mass m of electrochemically-transformed substance is proportional to the charge Q passed, m ∝ Q."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5721,6 +5700,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_ec1dce8b_bb46_41a9_b532_6bed381aa557 ; owl:annotatedTarget "secondary cell having a cover provided with an opening through which products of electrolysis and evaporation are allowed to escape freely from the cell to the atmosphere"@en . +[] a owl:Axiom ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_1152ae6b_8b57_4d99_912e_40c6a29342fb ; + owl:annotatedTarget "mass m of electrochemically-transformed substance is proportional to the charge Q passed, m ∝ Q."@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5739,12 +5724,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f0c24970_4c14_4207_bd78_5f2181a67085 ; owl:annotatedTarget "the process of forming a film or a bulk material using an electrochemical process where the electrons are supplied by an external power supply"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_1355816f_a2b5_4800_8001_fc888f5d6b1b ; - owl:annotatedTarget "instrument intended to measure the value of a voltage."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5757,6 +5736,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f47611a2_e081_47f0_b287_3fda5f706154 ; owl:annotatedTarget "chemical reaction which occurs in addition to the main process"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; + owl:annotatedTarget "electrode reaction in which reduction occurs at the cathode"@en . + +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_1355816f_a2b5_4800_8001_fc888f5d6b1b ; + owl:annotatedTarget "instrument intended to measure the value of a voltage."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5769,12 +5760,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; owl:annotatedTarget "electrode reaction, where the energy of electrons in the working electrode is higher than the LUMO orbital of the substrate"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; - owl:annotatedTarget "electrode reaction in which reduction occurs at the cathode"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5782,10 +5767,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "electrode that responds to one, or more than one, species in the solution being investigated, with no appreciable change of bulk solution composition during the measurement"@en . [] a owl:Axiom ; - dcterms:source "IUPAC. Compendium of Chemical Terminology, 2nd ed. (the \"Gold Book\"). Compiled by A. D. McNaught and A. Wilkinson. Blackwell Scientific Publications, Oxford (1997). Online version (2019-) created by S. J. Chalk. ISBN 0-9678550-9-8. https://doi.org/10.1351/goldbook." ; + dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_15325775_6d4c_4192_82f1_e4feca9de426 ; - owl:annotatedTarget "A membrane having ion-exchange groups:"@en . + owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; + owl:annotatedTarget "a material in which the mobile species are ions and free movement of electrons is blocked."@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5799,18 +5784,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; owl:annotatedTarget "liquid or solid substance containing mobile ions that render it conductive"@en . +[] a owl:Axiom ; + dcterms:source "IUPAC. Compendium of Chemical Terminology, 2nd ed. (the \"Gold Book\"). Compiled by A. D. McNaught and A. Wilkinson. Blackwell Scientific Publications, Oxford (1997). Online version (2019-) created by S. J. Chalk. ISBN 0-9678550-9-8. https://doi.org/10.1351/goldbook." ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_15325775_6d4c_4192_82f1_e4feca9de426 ; + owl:annotatedTarget "A membrane having ion-exchange groups:"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; owl:annotatedTarget "substance that provides ions on dissolution in a solvent or on melting"@en . -[] a owl:Axiom ; - dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; - owl:annotatedTarget "a material in which the mobile species are ions and free movement of electrons is blocked."@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5823,18 +5808,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_fb9bf7cb_dd4b_4391_99a1_628263dd6940 ; owl:annotatedTarget "measuring instrument to obtain the electrical charge passed in an experiment, or to produce a known amount of substance in a titration."@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; - owl:annotatedTarget "Electrolyte solution in the cathodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the cathode is placed."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; owl:annotatedTarget "electrolyte on the cathode side of an electrochemical cell that is divided into compartments."@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; + owl:annotatedTarget "Electrolyte solution in the cathodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the cathode is placed."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5931,18 +5916,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_2d32a81a_2148_41bd_84fb_467aa8de4a8f ; owl:annotatedTarget "foil, wire, disc, or mesh electrode made of platinum, which is the most commonly used metallic working electrode in electrochemistry"@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; - owl:annotatedTarget "An interfacial reaction that necessarily involves a charge-transfer step."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; owl:annotatedTarget "electrochemical reaction involving the transfer of electrons between electrolyte and electrode"@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; + owl:annotatedTarget "An interfacial reaction that necessarily involves a charge-transfer step."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5957,15 +5942,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_328c6e36_3706_4d92_abae_432fa3adb2a0 ; - owl:annotatedTarget "a cell baffle has a second function in protecting the plate pack from damage by objects inserted through the filling hole"@en . + owl:annotatedTarget "internal component used to reduce the amount of electrolyte loss due to electrolyte spray being carried in the gas and/or by electrolyte movement"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_328c6e36_3706_4d92_abae_432fa3adb2a0 ; - owl:annotatedTarget "internal component used to reduce the amount of electrolyte loss due to electrolyte spray being carried in the gas and/or by electrolyte movement"@en . + owl:annotatedTarget "a cell baffle has a second function in protecting the plate pack from damage by objects inserted through the filling hole"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5979,6 +5964,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_34bc54e3_de4c_41f8_8d3a_d77c951ee23a ; owl:annotatedTarget "needle-like or tree-like formation of crystalline growth formed during deposition of a material"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; + owl:annotatedTarget "by convention, cell electrode at which, a reduction reaction occurs"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5997,12 +5988,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; owl:annotatedTarget "the concepts of “anode” and “cathode” are related only to the direction of electron flow, not to the polarity of the electrodes"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; - owl:annotatedTarget "by convention, cell electrode at which, a reduction reaction occurs"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -6023,15 +6008,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_3f6c9e09_5f23_41cc_9f85_7de365cef089 ; - owl:annotatedTarget "electrolyte creep is sometimes indicated by the presence of a visible solid deposit or wet spots"@en . + owl:annotatedTarget "gradual and slow spreading of an electrolyte film on the external surface of a cell or battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_3f6c9e09_5f23_41cc_9f85_7de365cef089 ; - owl:annotatedTarget "gradual and slow spreading of an electrolyte film on the external surface of a cell or battery"@en . + owl:annotatedTarget "electrolyte creep is sometimes indicated by the presence of a visible solid deposit or wet spots"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -6041,9 +6026,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_04f28ce3_251d_429e_aa85_ab3eb45bbcd2 ; - owl:annotatedTarget "in lithium batteries thermal runaway may cause melting of lithium"@en . + owl:annotatedTarget "unstable condition arising during constant voltage charge in which the rate of heat dissipation capability, causing a continuous temperature increase with resulting further charge current increase, which can lead to the destruction of the battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -6077,9 +6062,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_04f28ce3_251d_429e_aa85_ab3eb45bbcd2 ; - owl:annotatedTarget "unstable condition arising during constant voltage charge in which the rate of heat dissipation capability, causing a continuous temperature increase with resulting further charge current increase, which can lead to the destruction of the battery"@en . + owl:annotatedTarget "in lithium batteries thermal runaway may cause melting of lithium"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; diff --git a/versions/0.14.0-beta/context/context.json b/versions/0.14.0-beta/context/context.json index ac1b0bb..2006ca7 100644 --- a/versions/0.14.0-beta/context/context.json +++ b/versions/0.14.0-beta/context/context.json @@ -1076,7 +1076,6 @@ "ButlerVolmerEquation": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d48ea516_5cac_4f86_bc88_21b6276c0938", "C": "https://w3id.org/emmo#EMMO_36a9bf69_483b_42fd_8a0c_7ac9206320bc", "CASRN": "https://w3id.org/emmo#EMMO_d2a47cd8_662f_438f_855a_b4378eb992ff", - "CCCVCycling": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e", "CPlusPlus": "https://w3id.org/emmo#EMMO_64aba1e5_24b7_4140_8eb4_676c35698e79", "CRate": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_e1fd84eb_acdb_4b2c_b90c_e899d552a3ee", "CSharp": "https://w3id.org/emmo#EMMO_268a8a97_3a6f_4022_93da_962a66827cdc", @@ -1285,7 +1284,7 @@ "CoatingThickness": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3b938708_e7e4_4ac0_a959_9c04306302e7", "Cobalt": "https://w3id.org/emmo/domain/chemical-substance#substance_8f857eb2_7cc8_4294_954d_e69f2842c084", "CobaltAtom": "https://w3id.org/emmo#EMMO_3fe9d899_f1f1_5657_b176_ac6afff2e93d", - "CobaltBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_838c115b_6bc9_4ce8_9f8d_86a6bf67742a", + "CobaltBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7b811780_7251_481b_a4d3_97d437955099", "CobaltHydroxide": "https://w3id.org/emmo/domain/chemical-substance#substance_29b1c15d_2632_40d7_88f7_43575b68b988", "CobaltIIAcetate": "https://w3id.org/emmo/domain/chemical-substance#substance_4310c690_9810_4a95_8d62_7e78e0b84437", "CobaltIIBistrifluoromethanesulfonylimide": "https://w3id.org/emmo/domain/chemical-substance#substance_f4dffee2_c642_4114_a748_5e93b3908380", @@ -1358,6 +1357,7 @@ "ConstantCurrentCharging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_83f2b1e9_cb67_4dbf_977f_ba54bbae374f", "ConstantCurrentChargingCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_37c38b7e_9ded_481a_85fd_a467f1ee2b9f", "ConstantCurrentConstantVoltageCharging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0cc8f231_0ce5_467e_9c76_29b2c80349ad", + "ConstantCurrentConstantVoltageCycling": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e", "ConstantCurrentDischarging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_53fe3f58_0802_41cf_af69_4784fc42cc30", "ConstantCurrentDischargingCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_08833ed2_6324_411a_b34b_fe64c44cd5ef", "ConstantPotentialPulses": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_84d37a37_88bd_47db_9425_31f73a81d38c", @@ -1590,7 +1590,7 @@ "DeviceTemperature": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_463950b9_fd8d_48de_a52d_b29cab026391", "DewPointTemperature": "https://w3id.org/emmo#EMMO_a383e332_a271_463f_9e44_559604547220", "Diameter": "https://w3id.org/emmo#EMMO_c1c8ac3c_8a1c_4777_8e0b_14c1f9f9b0c6", - "Dichloromethane": "https://w3id.org/emmo/domain/chemical-substance#substance_8385c3c4_5906_48f6_b6b6_4bb60dccc27a", + "Dichloromethane": "https://w3id.org/emmo/domain/chemical-substance#substance_a6feec60_5fe7_4687_b427_3bf2ed06008d", "DieCasting": "https://w3id.org/emmo#EMMO_a85d0b8a_588e_423f_b799_97b0890e9183", "DielectricAndImpedanceSpectroscopy": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#DielectricAndImpedanceSpectroscopy", "Dielectrometry": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Dielectrometry", @@ -1624,7 +1624,7 @@ "Dimethoxyethane": "https://w3id.org/emmo/domain/chemical-substance#substance_b6ecabf9_14a4_4808_a139_55329e70ad42", "Dimethoxymethane": "https://w3id.org/emmo/domain/chemical-substance#substance_21954b0b_c05c_42db_b276_3a931d8aabb1", "DimethylCarbonate": "https://w3id.org/emmo/domain/chemical-substance#substance_c4a7d7bd_497e_457e_b858_ff73254266d0", - "DimethylSulfoxide": "https://w3id.org/emmo/domain/chemical-substance#substance_b593b5dd_7957_4b85_856a_dd59775210b6", + "DimethylSulfoxide": "https://w3id.org/emmo/domain/chemical-substance#substance_ea68e1a4_6be8_4686_8701_ba88b40d00b7", "Dimethylformamide": "https://w3id.org/emmo/domain/chemical-substance#substance_769bdc09_f533_4fde_bb53_20339d5bfcb7", "Dimethylpropyleneurea": "https://w3id.org/emmo/domain/chemical-substance#substance_945c68da_3baf_4da6_b794_dca7aebc4ca7", "Dimethylsulfate": "https://w3id.org/emmo/domain/chemical-substance#substance_3c8fb431_7d9d_4a89_a494_708df34f44d3", @@ -1837,7 +1837,7 @@ "ElectronicModel": "https://w3id.org/emmo#EMMO_6eca09be_17e9_445e_abc9_000aa61b7a11", "ElectronvoltPerMetre": "https://w3id.org/emmo#ElectronvoltPerMetre", "Electroosmosis": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_5641910f_6e69_4ce4_be84_4b1bf14b8916", - "Electroplating": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e", + "Electroplating": "https://w3id.org/emmo#EMMO_30e3edb5_0977_4b9b_9aed_5a4d16c1c07c", "ElementalMaterial": "https://w3id.org/emmo#EMMO_a086af15_a7c3_404c_b4ce_c8e4466f1b4b", "ElementalSubstance": "https://w3id.org/emmo#EMMO_436b11bd_1756_4821_9f14_c9ed6b67552e", "ElementaryBoson": "https://w3id.org/emmo#EMMO_cafd0f10_ce85_48b9_9a36_2b0af141ce21", @@ -2192,11 +2192,12 @@ "ISQBaseQuantity": "https://w3id.org/emmo#EMMO_1a4c1a97_88a7_4d8e_b2f9_2ca58e92dde4", "ISQDerivedQuantity": "https://w3id.org/emmo#EMMO_2946d40b_24a1_47fa_8176_e3f79bb45064", "ISQDimensionlessQuantity": "https://w3id.org/emmo#EMMO_a66427d1_9932_4363_9ec5_7d91f2bfda1e", - "IUPACName": "https://w3id.org/emmo#EMMO_16a3bd5c_75f0_42b3_b000_cb0d018f840e", + "IUPACName": "https://w3id.org/emmo#EMMO_f652e7d2_0b33_4d10_8d0f_2f70089982ba", "IUPACNomencalture": "https://w3id.org/emmo#EMMO_91a0635a_a89a_46de_8928_04a777d145c7", "Icon": "https://w3id.org/emmo#EMMO_d7788d1a_020d_4c78_85a1_13563fcec168", "Illuminance": "https://w3id.org/emmo#EMMO_b51fbd00_a857_4132_9711_0ef70e7bdd20", "IlluminanceTimeUnit": "https://w3id.org/emmo#EMMO_e467cc3f_676c_432e_b70e_19237d1bcc78", + "ImaginaryElectricImpedance": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626", "Impedimetry": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Impedimetry", "InChI": "https://w3id.org/emmo#EMMO_d74ed682_894f_46c5_87cb_167f60926965", "IncreasingPotentialPulses": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_77be01ef_49bd_4f2e_bec8_eec0894b8562", @@ -2288,7 +2289,7 @@ "IridiumSymbol": "https://w3id.org/emmo#EMMO_b8aab013_b729_51f1_bc14_5302e7f97cbe", "Iron": "https://w3id.org/emmo/domain/chemical-substance#substance_89fd13e8_8061_41da_83f4_634144116425", "IronAtom": "https://w3id.org/emmo#EMMO_a4839f08_1080_53bf_9cb3_101e20c2656b", - "IronBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_cc4e178c_bc1f_4502_b6c2_33f304ef6bab", + "IronBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_5e1136d3_df00_40f7_a4bc_8259341053a1", "IronDisulfide": "https://w3id.org/emmo/domain/chemical-substance#substance_c728b6b9_449a_45ff_b5ae_6b7968708f0d", "IronDisulfideElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d2726dd5_69f0_4cb1_bd3c_4c48813e57e7", "IronIIIHydroxide": "https://w3id.org/emmo/domain/chemical-substance#substance_323a2e39_d7d5_4802_884a_9aa41a280986", @@ -2556,6 +2557,7 @@ "LossFactor": "https://w3id.org/emmo#EMMO_c3796906_8063_47d4_92af_890ae08f25fa", "LowPressureCasting": "https://w3id.org/emmo#EMMO_8b2fd84c_8f51_4731_9bd7_830545e78b23", "LowerCriticalMagneticFluxDensity": "https://w3id.org/emmo#EMMO_fd4a6307_f9f7_4b54_b044_caa04e620232", + "LowerCurrentLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea", "LowerFrequencyLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_b66d6553_6136_4754_902a_707e414210c2", "LowerVoltageLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_534dd59c_904c_45d9_8550_ae9d2eb6bbc9", "Lumen": "https://w3id.org/emmo#Lumen", @@ -2608,7 +2610,7 @@ "MagnesiumTriflate": "https://w3id.org/emmo/domain/chemical-substance#substance_df24fad8_7ef0_4330_a3f2_c4d65d9a3be8", "MagnesiumTrifluoromethanesulfonyloxalatoborate": "https://w3id.org/emmo/domain/chemical-substance#substance_2b7473ba_9156_489a_880f_3a2f746cd104", "MagneticDipoleMoment": "https://w3id.org/emmo#EMMO_81e767f1_59b1_4d7a_bf69_17f322241831", - "MagneticDipoleMomentUnit": "https://w3id.org/emmo#EMMO_5073dc80_aec2_4a3b_8057_fababfcbfe11", + "MagneticDipoleMomentUnit": "https://w3id.org/emmo#EMMO_1c2226a9_22f0_40c8_8928_5a01d398f96e", "MagneticFieldStrength": "https://w3id.org/emmo#EMMO_b4895f75_41c8_4fd9_b6d6_4d5f7c99c423", "MagneticFieldStrengthUnit": "https://w3id.org/emmo#EMMO_e6b83139_ba92_4fbd_a8b2_c8dde55844a1", "MagneticFlux": "https://w3id.org/emmo#EMMO_3b931698_937e_49be_ab1b_36fa52d91181", @@ -2676,7 +2678,7 @@ "MassExcess": "https://w3id.org/emmo#EMMO_7dd84949_0afa_4313_9b89_7bb0dd2e7771", "MassFlow": "https://w3id.org/emmo#EMMO_6d61ee3c_c5b6_4452_bc11_e9c33af992a7", "MassFluxUnit": "https://w3id.org/emmo#EMMO_e35d4936_b2e3_4cd6_a437_f1c864b3d450", - "MassFraction": "https://w3id.org/emmo/disciplines/units/coherentsiunits#EMMO_089f13b1_ceb3_4d2a_8795_b4a2d92916da", + "MassFraction": "https://w3id.org/emmo#EMMO_7c055d65_2929_40e1_af4f_4bf10995ad50", "MassFractionOfDryMatter": "https://w3id.org/emmo#EMMO_8f171308_f902_42c5_ac1d_d5259022e9c1", "MassFractionOfWater": "https://w3id.org/emmo#EMMO_cac16ce6_2cef_405d_ac63_0f918db4875e", "MassFractionUnit": "https://w3id.org/emmo#EMMO_18448443_dcf1_49b8_a321_cf46e2c393e1", @@ -3027,6 +3029,7 @@ "NobeliumAtom": "https://w3id.org/emmo#EMMO_49eb0790_50c2_5691_a8bf_dfa6f4a9f6c7", "NobeliumSymbol": "https://w3id.org/emmo#EMMO_c1bb775c_0888_5b88_9cce_c49bae1d298b", "NobleGasElementalSubstance": "https://w3id.org/emmo/domain/chemical-substance#substance_cac14194_2d5f_4fe6_b794_a9319f6d76ee", + "NominalCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100", "NominalProperty": "https://w3id.org/emmo#EMMO_909415d1_7c43_4d5e_bbeb_7e1910159f66", "NominalVoltage": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_639b844a_e801_436b_985d_28926129ead6", "NonActivePower": "https://w3id.org/emmo#EMMO_83318add_d05e_40fc_93ea_c6cd605df437", @@ -3061,6 +3064,7 @@ "NumberOfFiniteVolumeCellsInX": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_e73586eb_8475_4879_a43e_087c702ea6bf", "NumberOfFiniteVolumeCellsInY": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_c2a85d02_c6b4_42df_b5ed_a9904ec34a5c", "NumberOfFiniteVolumeCellsInZ": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a5e00e3a_736c_4200_8d04_ed222fe07037", + "NumberOfIterations": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_88dd2bce_fb17_4705_905d_892681812290", "NumberOfTurnsInAWinding": "https://w3id.org/emmo#EMMO_eefaa0ef_e7d4_4633_bf79_655bb55f4a49", "Numeral": "https://w3id.org/emmo#EMMO_74b05aed_66bf_43c8_aa2c_752a9ca8be03", "Numerical": "https://w3id.org/emmo#EMMO_4ce76d7f_03f8_45b6_9003_90052a79bfaa", @@ -3211,7 +3215,7 @@ "Permittivity": "https://w3id.org/emmo#EMMO_0ee5779e_d798_4ee5_9bfe_c392d5bea112", "PermittivityUnit": "https://w3id.org/emmo#EMMO_5f89cb0c_3171_47ee_b2ab_027a07c34c4b", "Persistence": "https://w3id.org/emmo#EMMO_e04884d9_eda6_487e_93d5_7722d7eda96b", - "Person": "http://xmlns.com/foaf/0.1/Person", + "Person": "https://schema.org/Person", "Perspective": "https://w3id.org/emmo#EMMO_49267eba_5548_4163_8f36_518d65b583f9", "Peta": "https://w3id.org/emmo#EMMO_d7c74480_a568_4470_acff_f18b499cc850", "PetaPrefixedUnit": "https://w3id.org/emmo#EMMO_43a6b269_da31_4bb6_a537_c97df4fff32a", @@ -3298,7 +3302,7 @@ "Porosity": "https://w3id.org/emmo#EMMO_3a6578ac_aee0_43b9_9bc6_1eb208c8c9a9", "PorousElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3663991d_9319_4f7a_922b_f0e428b58801", "PorousSeparator": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_58413d4e_2885_459e_ac06_8d45e661cf91", - "PositionVector": "https://w3id.org/emmo#EMMO_4312cae4_03ba_457e_b35d_0671a7db350c", + "PositionVector": "https://w3id.org/emmo#EMMO_44da6d75_54a4_4aa8_bd3a_156f6e9abb8e", "PositiveElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_aff732a9_238a_4734_977c_b2ba202af126", "PositiveTerminal": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_522f0c0b_cf33_4328_af71_12e38dae6798", "Positron": "https://w3id.org/emmo#EMMO_26a38b26_38ea_4acf_b212_db9e34c71b7a", @@ -3483,7 +3487,7 @@ "R54215": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_fc9e7ba3_5084_4c2a_b488_c6a96af99232", "R616": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_dc019f3f_e5f3_4eeb_bab9_a845a02223a0", "R621": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_15ec346a_6d3c_4161_95e1_9cf889965f85", - "R626": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_68c1c36e_1548_4247_bae2_fe7102a2c4ff", + "R626": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6b275583_433f_46f7_aafd_ebc9409257cc", "R712": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_bb2faf17_b819_4876_b17f_fa82917cf85d", "R716": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_34cb7ea7_2436_46e0_806e_a3c7835ae228", "R721": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3279f575_1c62_4bf2_a6e8_de4c7ff36f8e", @@ -3535,6 +3539,7 @@ "ReactivePower": "https://w3id.org/emmo#EMMO_d8030875_6d89_4645_9728_bbc3b8690609", "ReactorTimeConstant": "https://w3id.org/emmo#EMMO_b03dfad7_eab8_4949_9d10_dd4fd12faaef", "Real": "https://w3id.org/emmo#EMMO_18d180e4_5e3e_42f7_820c_e08951223486", + "RealElectricImpedance": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f", "ReciprocalAmountPerVolumeUnit": "https://w3id.org/emmo#EMMO_aef218f9_6ded_4db9_9263_e78eed55e5d6", "ReciprocalCentiMetre": "https://w3id.org/emmo#ReciprocalCentiMetre", "ReciprocalCubicCentiMetre": "https://w3id.org/emmo#ReciprocalCubicCentiMetre", @@ -3637,6 +3642,7 @@ "ResponseTimeAtAnISE": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_1a104474_c326_4a29_ac26_26a05ac8f72c", "RestEnergy": "https://w3id.org/emmo#EMMO_5117c5fe_f661_46f8_83c3_b48947f1532a", "RestMass": "https://w3id.org/emmo#EMMO_3c947caf_4070_4c79_a3a3_e53274ac9944", + "Resting": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b", "RestingTime": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_2678a656_4a27_4706_8dde_b0a93e9b92fa", "ReversibleHydrogenElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0d9ba00d_04bc_4bdc_85af_3380694f6f68", "RevolutionPerMinute": "https://w3id.org/emmo#RevolutionPerMinute", @@ -3790,7 +3796,7 @@ "SiemensSquareMetrePerMole": "https://w3id.org/emmo#SiemensSquareMetrePerMole", "Sievert": "https://w3id.org/emmo#Sievert", "Sign": "https://w3id.org/emmo#EMMO_b21a56ed_f969_4612_a6ec_cb7766f7f31d", - "Signal": "https://w3id.org/emmo/domain/chameo#Signal", + "Signal": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Signal", "SignalReferencePotential": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_68059d94_4c21_4065_b329_07faeebc7e87", "Silicon": "https://w3id.org/emmo/domain/chemical-substance#substance_68c0876b_cb62_41cd_846d_95cc9d9a8733", "SiliconAtom": "https://w3id.org/emmo#EMMO_798b0c96_82ca_5ce8_8d5f_f9f72668cf5d", @@ -4318,6 +4324,7 @@ "UpQuark": "https://w3id.org/emmo#EMMO_0a3f04a6_ba3a_49d9_99da_08b0e26f51f0", "UpQuarkType": "https://w3id.org/emmo#EMMO_fc47b76f_ad01_4cd0_8fc6_55532000e7c8", "UpperCriticalMagneticFluxDensity": "https://w3id.org/emmo#EMMO_6bfe6ad2_96ba_4478_81e5_d8881c550757", + "UpperCurrentLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45", "UpperFrequencyLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_666f0b69_9c74_49a3_80b3_96a188332462", "UpperVoltageLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6dcd5baf_58cd_43f5_a692_51508e036c88", "UraniumAtom": "https://w3id.org/emmo#EMMO_b233f8c0_37d8_51ae_9264_560e6649e246", diff --git a/versions/0.14.0-beta/electrochemicalquantities.ttl b/versions/0.14.0-beta/electrochemicalquantities.ttl index 882a543..96cb275 100644 --- a/versions/0.14.0-beta/electrochemicalquantities.ttl +++ b/versions/0.14.0-beta/electrochemicalquantities.ttl @@ -24,8 +24,6 @@ emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f a owl:AnnotationProperty . emmo:EMMO_5c78b424_087b_4e31_8c91_6422f1be1e86 owl:equivalentClass :electrochemistry_9c657fdc_b9d3_4964_907c_f9a6e8c5f52b . -emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 :electrochemistry_097ea615_c209_4edd_a1a1_5eea71d98fe8 "acimp/ohms"@en . - emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry_37b24a94_cae0_4d7a_9519_9f7692dec607 ; skos:altLabel "MassDiffusivity"@en ; emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q604008"@en ; @@ -101,6 +99,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "D40ParticleSize"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 40% of the sample's particles fall."@en . +:electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626 a owl:Class ; + rdfs:label "ImaginaryElectricImpedance"@en ; + rdfs:comment "the imaginary part of the complex electric impedance"@en ; + rdfs:subClassOf emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 ; + skos:prefLabel "ImaginaryElectricImpedance"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the imaginary part of the complex electric impedance"@en . + :electrochemistry_02d2d1d1_241c_429b_b4e7_31f2c3dc4835 a owl:Class ; rdfs:label "D95ParticleSize"@en ; rdfs:comment "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 95% of the sample's particles fall."@en ; @@ -381,6 +386,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "D50ParticleSize"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 50% of the sample's particles fall."@en . +:electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45 a owl:Class ; + rdfs:label "UpperCurrentLimit"@en ; + rdfs:comment "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en ; + rdfs:subClassOf :electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 ; + skos:prefLabel "UpperCurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + :electrochemistry_3e54f9e3_a31d_4821_9bfb_ef953a42c35b a owl:Class ; rdfs:label "MaximumPulseDischargingCurrent"@en ; rdfs:comment "the maximum current approved for pulse discharge of an electrochemical device"@en ; @@ -608,6 +620,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "ChargingCurrent"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electric current applied to an electrochemical device during a charging process"@en . +:electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea a owl:Class ; + rdfs:label "LowerCurrentLimit"@en ; + rdfs:comment "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en ; + rdfs:subClassOf :electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 ; + skos:prefLabel "LowerCurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + :electrochemistry_7f073272_8925_4344_995c_a5a6dd1fcde6 a owl:Class ; rdfs:label "ChargingConstantCurrentPercentage"@en ; rdfs:comment "the percentage of the total charge capacity that is obtained during a constant current charge process"@en ; @@ -705,6 +724,20 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "DischargingSpecificCapacity"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "quotient of the capacity of a cell or battery [ or electrode or active material ] obtained during a discharge process by its mass."@en . +:electrochemistry_88dd2bce_fb17_4705_905d_892681812290 a owl:Class ; + rdfs:label "NumberOfIterations"@en ; + rdfs:comment "the number of times an iterative process should occur"@en ; + rdfs:subClassOf emmo:EMMO_ba882f34_0d71_4e4f_9d92_0c076c633a2c ; + skos:prefLabel "NumberOfIterations"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the number of times an iterative process should occur"@en . + +:electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100 a owl:Class ; + rdfs:label "NominalCapacity"@en ; + rdfs:comment "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en ; + rdfs:subClassOf :electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 ; + skos:prefLabel "NominalCapacity"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en . + :electrochemistry_8e943e12_ecc0_4093_899e_7226be6be7f2 a owl:Class ; rdfs:label "D90ParticleSize"@en ; rdfs:comment "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 90% of the sample's particles fall."@en ; @@ -820,6 +853,15 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the celsius temperature of the ambient environment"@en ; :electrochemistry_1b717a20_17e3_4480_8c60_c4ae94058f05 "Environmental_Temperature (C)"@en . +:electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f a owl:Class ; + rdfs:label "RealElectricImpedance"@en ; + rdfs:comment "the imaginary part of the complex electric impedance"@en ; + rdfs:subClassOf emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 ; + skos:altLabel "ACResistance"@en ; + skos:prefLabel "RealElectricImpedance"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q1048490"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the imaginary part of the complex electric impedance"@en . + :electrochemistry_ae108db7_8765_4329_9908_059277dee586 a owl:Class ; rdfs:label "StepCapacity"@en ; rdfs:comment "the amount of charge that has passed through an electrochemical device within the time interval of a given testing step"@en ; @@ -1084,8 +1126,8 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry ; dcterms:license "https://creativecommons.org/licenses/by/4.0/legalcode" ; owl:imports ; - owl:versionIRI ; - owl:versionInfo "0.17.0-beta" . + owl:versionIRI ; + owl:versionInfo "0.18.0-beta" . a owl:NamedIndividual, foaf:Person ; @@ -1866,6 +1908,8 @@ In either case, the magnitude of the catalytic current depends on the applied po emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electric potential of an ion-selective electrode (ISE) and activity of an analyte ion at which the potential of the ISE is independent of temperature"@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1351/goldbook.I03304"@en . +emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 :electrochemistry_097ea615_c209_4edd_a1a1_5eea71d98fe8 "acimp/ohms"@en . + emmo:EMMO_e218c625_6a39_47a9_8d08_a2ef41c152a9 rdfs:subClassOf :electrochemistry_02eb0465_4f94_453c_8c1f_5ddf80134634 ; skos:altLabel "GravimetricEnergyDensity"@en ; :electrochemistry_811aafc3_0c6d_470e_b67e_ff5c82992609 "CmpEng(mWh/g)"@en . @@ -1997,14 +2041,6 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog skos:prefLabel "TemperatureLimit"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the temperature of a system"@en . -:electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 a owl:Class ; - rdfs:label "RatedCapacity"@en ; - rdfs:comment "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en ; - rdfs:subClassOf :electrochemistry_791c1915_a791_4450_acd8_7f94764743b5 ; - skos:prefLabel "RatedCapacity"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-03-15"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en . - :electrochemistry_9ed7210c_c4fa_467b_822d_ba12f885bdf4 a owl:Class ; rdfs:label "ConcentrationOverpotential"@en ; rdfs:comment "The concentration overpotential of an electrode reaction at a given electrode current density (c.d.) is basically the difference in equilibrium potentials across the diffusion layer. More precisely, it is the potential of a reference electrode (of the same electrode reaction as the working electrode ) with the interfacial concentrations which establish themselves at c.d., relative to the potential of a similar reference electrode with the concentrations of the bulk solution. From such a measured potential difference, with c.d. flowing, one needs to subtract the ohmic potential drop prevailing between the two electrodes."@en, @@ -2110,6 +2146,14 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog skos:prefLabel "NumberOfFiniteVolumeCells"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "number of discrete finite volume cells in a grid or sub-grid"@en . +:electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 a owl:Class ; + rdfs:label "RatedCapacity"@en ; + rdfs:comment "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en ; + rdfs:subClassOf :electrochemistry_791c1915_a791_4450_acd8_7f94764743b5 ; + skos:prefLabel "RatedCapacity"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-03-15"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en . + :electrochemistry_cc519a19_b8d5_4e3f_b893_3a884888ad79 a owl:Class ; rdfs:label "MaximumTemperature"@en ; rdfs:comment "the maximum allowable temperature"@en ; @@ -2186,14 +2230,6 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa :electrochemistry_a07dd85b_d0df_4d5d_8b0c_14d20ea3fe45 "current"@en ; :electrochemistry_ea9f4dba_8ca2_419e_9cdf_ce54e9ebbd46 "Current (A)"@en . -:electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 a owl:Class ; - rdfs:label "CurrentLimit"@en ; - rdfs:comment "limit on the electric current of an electrical system"@en ; - rdfs:subClassOf emmo:EMMO_c995ae70_3b84_4ebb_bcfc_69e6a281bb88, - :electrochemistry_b395a244_3a75_4737_be38_981bfa1277fe ; - skos:prefLabel "CurrentLimit"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the electric current of an electrical system"@en . - :electrochemistry_900e357f_2ee3_425a_a0b6_322661117787 a owl:Class ; rdfs:label "ElectrochemicalProperty"@en ; rdfs:subClassOf emmo:EMMO_909415d1_7c43_4d5e_bbeb_7e1910159f66 ; @@ -2292,6 +2328,14 @@ foaf:Person a owl:Class ; emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Faradaic_current"@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://goldbook.iupac.org/terms/view/F02321"@en . +:electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 a owl:Class ; + rdfs:label "CurrentLimit"@en ; + rdfs:comment "limit on the electric current of an electrical system"@en ; + rdfs:subClassOf emmo:EMMO_c995ae70_3b84_4ebb_bcfc_69e6a281bb88, + :electrochemistry_b395a244_3a75_4737_be38_981bfa1277fe ; + skos:prefLabel "CurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the electric current of an electrical system"@en . + :electrochemistry_1cd1d777_e67b_47eb_81f1_edac35d9f2c6 a owl:Class ; rdfs:label "Overpotential"@en ; rdfs:comment "difference between the electrode potential with current flow, and the electrode potential without current flow, i.e. the equilibrium potential"@en, diff --git a/versions/0.14.0-beta/electrochemistry-inferred.ttl b/versions/0.14.0-beta/electrochemistry-inferred.ttl index f4fa0f9..c704a22 100644 --- a/versions/0.14.0-beta/electrochemistry-inferred.ttl +++ b/versions/0.14.0-beta/electrochemistry-inferred.ttl @@ -7,7 +7,7 @@ @base . rdf:type owl:Ontology ; - owl:versionIRI ; + owl:versionIRI ; ""@en , "CHAMEO is a domain ontology designed to model the common aspects across the different characterisation techniques and methodologies."@en , """Defines physical quantities in the International System of Quantities (ISQ). ISQ was made an official ISO standard in 2009 and is defined in the ISO/IEC 80000 standard. @@ -146,12 +146,12 @@ The symbolic module includes symbols, symbolic constructs and formal languages." "https://w3id.org/emmo/domain/characterisation-methodology/chameo" ; "2024-04-12" , "2024-06-23"^^xsd:date , - "2024-07-03"^^xsd:date ; + "2024-07-05"^^xsd:date ; "https://creativecommons.org/licenses/by/4.0/legalcode" , "https://creativecommons.org/licenses/by/4.0/legalcode"@en ; "2024-04-12" , "2024-06-23"^^xsd:date , - "2024-07-03"^^xsd:date ; + "2024-07-05"^^xsd:date ; "EMMC ASBL" , "EMMC ASBL"@en , """EMMC ASBL @@ -241,11 +241,11 @@ We kindly acknowledge NIST for reusing their content, including the selection of "You can contact EMMO Authors via emmo@emmc.eu"@en ; owl:backwardCompatibleWith "" , " " , - "0.16.0-beta" ; - owl:priorVersion "0.16.0-beta" , + "0.17.0-beta" ; + owl:priorVersion "0.17.0-beta" , "0.5.0-beta" , "1.0.0-beta2" ; - owl:versionInfo "0.17.0-beta" , + owl:versionInfo "0.18.0-beta" , "0.6.0-beta" , "1.0.0-beta3" , "1.0.0-beta7" ; @@ -2333,7 +2333,7 @@ While the EMMO FOL introduces the quantum causality relation C(x,y) as primitive rdf:type owl:ObjectProperty ; rdfs:subPropertyOf ; rdfs:domain ; - rdfs:range ; + rdfs:range ; "hasSolvent"@en . @@ -2364,7 +2364,7 @@ While the EMMO FOL introduces the quantum causality relation C(x,y) as primitive rdf:type owl:ObjectProperty ; rdfs:subPropertyOf ; rdfs:domain ; - rdfs:range ; + rdfs:range ; "hasSolute"@en . @@ -34532,7 +34532,7 @@ Wikipedia"""@en ; , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "ZincElectrode"@en ; "an electrode in which the main active material is zinc metal"@en ; @@ -34555,7 +34555,7 @@ Wikipedia"""@en ; rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "LithiumElectrode"@en ; "an electrode in which the active material is lithium metal" . @@ -44391,164 +44391,11 @@ Wear is defined as the progressive removal of the material from a solid surface "InChI=1S/Pb" . -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0139937b_2724_4864_84fb_f14bcfb83538 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0bdf0bb9_41fc_455d_af11_a249e24acdf6 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0f2f65a7_5cc4_4c86_a4d0_676771c646f1 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_250fa43e_1f26_4ed8_b787_91a2325a8e7b - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_25f6ff4c_53ad_4837_97c4_aa6f06099bb5 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_2a540939_3908_4f85_92f9_c46da7d4e9cb - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_2a87ca10_fc6a_4d61_b48c_d9790a566ee3 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_3899a9c9_9b34_443e_8ce6_0257589bb38a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_3ac62305_acd6_4312_9e31_4f824bd2530d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_4126ee09_b9c6_4694_bf33_0d8970e05f72 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_4c62d334_a124_40b3_9fd1_fe713d01a6af - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_5088ad54_b37d_4ee1_a086_d6c17e644f9a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_5cee19d2_f916_4264_a8ed_efed13a808d2 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_68c0876b_cb62_41cd_846d_95cc9d9a8733 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_68f9b85e_340f_46ec_96da_ebb6bd62f5fd - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_73d4606c_7460_4a5c_9413_793bdf35753e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_7dc738d6_74f2_489e_ae84_a6dbdf627f2e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_848003a2_71ee_4967_8039_354c907ec7f4 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_97439fbb_155f_433d_9edd_d510cd491f24 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_9bd78e1c_a4dc_41b6_8013_adb51df1ffdc - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_9da78aea_d436_40e2_a68f_c3dee32b825e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_aa8e9cc4_5f66_4307_b1c8_26fac7653a90 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_acdb232f_8041_4e11_8a11_5db2d2baae4d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_b01771a9_218a_4b01_b20f_4021cfa0b7d5 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_b3815a7f_f64a_48f6_b0ce_d0032578c699 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c109ca45_08c7_4436_a818_a9c575785e2f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c28a0967_ed23_48cc_a14e_a651d75a19db - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c5582dae_ccff_4fbe_adaa_078091054640 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c728b6b9_449a_45ff_b5ae_6b7968708f0d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_cd17ca33_ae3d_4738_8930_547673bf6c1f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_cdd18f0c_e7b3_4d09_b3dd_c09fe4b1adba - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_d53259a7_0d9c_48b9_a6c1_4418169df303 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_d673ceb2_3045_4e2e_8cad_56f5169b542f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_db74b6b7_09fc_40db_a7d5_6eb86b69192a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_dc5fb846_1824_40f8_9834_81f118aa1c2d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_dcdbdbed_2e20_40d1_a7a5_5761de7f0618 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_e1e6ff98_0725_4d27_ab21_2ca5a95371f0 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_e8fafdc8_6cd3_4dd0_9630_10ca8e3f1827 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_f3e7979a_e3ef_450a_8762_7d8778afe478 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_f7525766_90cf_43e9_8932_7cb3b14f676f - rdf:type owl:Class . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626 + rdf:type owl:Class ; + rdfs:subClassOf ; + "ImaginaryElectricImpedance"@en ; + "the imaginary part of the complex electric impedance"@en . ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_01260656_ac32_472e_9513_a607366538ec @@ -44872,11 +44719,11 @@ Wear is defined as the progressive removal of the material from a solid surface rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCLCOElectrode"@en ; @@ -45639,7 +45486,7 @@ and t* through mathematical models, provided that the long-time potential- deter , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LFPElectrode"@en ; @@ -46241,7 +46088,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "PtElectrode"@en ; "PlatinumElectrode"@en ; @@ -46343,7 +46190,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SiliconOxideGraphiteElectrode"@en ; @@ -46477,7 +46324,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "FTOElectrode"@en ; @@ -46500,7 +46347,7 @@ Aluminum foil"""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "NiOOHElectrode"@en , "NickelOxyhydroxideElectrode"@en ; @@ -46544,6 +46391,14 @@ Aluminum foil"""@en . "a coin case with a nominal diameter of 7.9 mm and a height of 1.65 mm"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b + rdf:type owl:Class ; + rdfs:subClassOf , + ; + "Resting"@en ; + "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 rdf:type owl:Class ; rdfs:subClassOf ; @@ -46811,6 +46666,13 @@ Aluminum foil"""@en . "A material relation in electrochemistry."@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45 + rdf:type owl:Class ; + rdfs:subClassOf ; + "UpperCurrentLimit"@en ; + "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3e54f9e3_a31d_4821_9bfb_ef953a42c35b rdf:type owl:Class ; rdfs:subClassOf , @@ -46981,7 +46843,7 @@ Aluminum foil"""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNMOElectrode"@en ; @@ -47201,11 +47063,11 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCLMOElectrode"@en ; @@ -47294,7 +47156,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumNickelPhosphateElectrode"@en ; @@ -47549,7 +47411,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumIronPhosphateElectrode"@en ; @@ -47904,7 +47766,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "CarbonMonofluorideElectrode"@en ; "electrode in which the active material is carbon monofluoride"@en ; @@ -48131,7 +47993,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "HardCarbonElectrode"@en ; "electrode in which the active material is hard carbon"@en . @@ -48291,7 +48153,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "SAE"@en ; "SolidAmalgamElectrode"@en ; @@ -48426,7 +48288,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LTOElectrode"@en ; @@ -48518,20 +48380,13 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ] . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "system that consists of at least two electron conductors (electrodes) in contact with ionic conductors (electrolytes)"@en ; - "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6fec8cc1_4e6c_428e_8343_6cf3c286a185 rdf:type owl:Class ; rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "AuElectrode"@en ; "GoldElectrode"@en ; @@ -48691,7 +48546,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NiOElectrode"@en ; @@ -48721,7 +48576,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "TiO2Electrode"@en ; @@ -48915,13 +48770,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ] . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "in secondary cells, the active material is restored to its original state during charge"@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - [ rdf:type owl:Axiom ; owl:annotatedSource ; owl:annotatedProperty ; @@ -48965,6 +48813,13 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s "an electrode in which the primary active material consists of caesium or caesium compounds"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea + rdf:type owl:Class ; + rdfs:subClassOf ; + "LowerCurrentLimit"@en ; + "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7f073272_8925_4344_995c_a5a6dd1fcde6 rdf:type owl:Class ; rdfs:subClassOf ; @@ -49118,7 +48973,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "LiquidGalliumElectrode"@en ; "a liquid electrode with an active material of gallium"@en . @@ -49188,7 +49043,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "ZnOElectrode"@en ; @@ -49446,6 +49301,13 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "an electrode in which the primary active material consists of sulfur or sulfur compounds"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_88dd2bce_fb17_4705_905d_892681812290 + rdf:type owl:Class ; + rdfs:subClassOf ; + "NumberOfIterations"@en ; + "the number of times an iterative process should occur"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8968eb7a_9a65_4286_a596_c31b998df329 rdf:type owl:Class ; rdfs:subClassOf ; @@ -49504,6 +49366,13 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "substance that increases chemical reaction speed, and which is conserved after the reaction"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100 + rdf:type owl:Class ; + rdfs:subClassOf ; + "NominalCapacity"@en ; + "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8b40856f_1ca2_4137_9616_7fb624671909 rdf:type owl:Class ; rdfs:subClassOf , @@ -50109,7 +49978,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumCobaltPhosphateElectrode"@en ; @@ -50298,13 +50167,6 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; "plate in which the active material is applied as a paste to a conductive current collector"@en . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "plate in which the active material is applied as a paste to a conductive current collector"@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a24f8581_a5a4_41a4_bb45_d0fdd5c0d810 rdf:type owl:Class ; @@ -50397,7 +50259,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "SilverOxideElectrode"@en ; "an electrode in which the primary active material consists of manganese dioxide or vmanganese dioxide compounds"@en ; @@ -50427,7 +50289,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "AgElectrode"@en ; "SilverElectrode"@en ; @@ -50662,7 +50524,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "CupricOxideElectrode"@en ; "CopperOxideElectrode"@en ; @@ -50751,6 +50613,15 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "Environmental_Temperature (C)"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f + rdf:type owl:Class ; + rdfs:subClassOf ; + "ACResistance"@en ; + "RealElectricImpedance"@en ; + "https://www.wikidata.org/wiki/Q1048490"@en ; + "the imaginary part of the complex electric impedance"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abfadc99_6e43_4d37_9b04_7fc5b0f327ae rdf:type owl:Class ; rdfs:subClassOf , @@ -50782,7 +50653,8 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e rdf:type owl:Class ; rdfs:subClassOf ; - "CCCVCycling"@en ; + "CCCVCycling"@en ; + "ConstantCurrentConstantVoltageCycling"@en ; "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en . @@ -51030,7 +50902,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCElectrode"@en ; @@ -51360,11 +51232,11 @@ of other configurations are used."""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNMOLFPElectrode"@en ; @@ -51466,13 +51338,6 @@ of other configurations are used."""@en . "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; "https://en.wikipedia.org/wiki/Fuel_cell"@en . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_bea04148_10d9_4eda_9cd5_8f609d7e9ff8 rdf:type owl:Class ; @@ -51568,7 +51433,7 @@ of other configurations are used."""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LMOElectrode"@en ; @@ -51751,11 +51616,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "ITO"@en ; @@ -51809,7 +51674,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "GraphiteElectrode"@en ; "electrode in which the active material is graphite"@en . @@ -51928,7 +51793,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "MnO2Electrode"@en ; "ManganeseDioxideElectrode"@en ; @@ -51943,7 +51808,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNOElectrode"@en ; @@ -51963,7 +51828,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "IrO2Electrode"@en ; @@ -51977,7 +51842,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumManganesePhosphateElectrode"@en ; @@ -52146,7 +52011,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "IronDisulfideElectrode"@en ; "an electrode in which the primary active material consists of iron disulfide or iron disulfide compounds."@en ; @@ -52509,7 +52374,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "HgElectrode"@en ; "MercuryElectrode"@en ; @@ -52785,11 +52650,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SiliconGraphiteElectrode"@en ; @@ -52802,7 +52667,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumManganeseOxideElectrode"@en ; @@ -53004,7 +52869,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumCobaltOxideElectrode"@en ; @@ -53096,7 +52961,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NCAElectrode"@en ; @@ -53315,7 +53180,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "PbOElectrode"@en ; @@ -53401,7 +53266,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumChromiumOxideElectrode"@en ; @@ -53621,7 +53486,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LCOElectrode"@en ; @@ -53672,11 +53537,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LMOLFPElectrode"@en ; @@ -53808,10 +53673,10 @@ In either case, the magnitude of the catalytic current depends on the applied po "The universe is considered as a causally self-connected object, encompassing all other objects. For this reason is unique."@en . -[ owl:qualifiedCardinality "3"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "3"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "4"^^xsd:nonNegativeInteger @@ -53835,10 +53700,10 @@ In either case, the magnitude of the catalytic current depends on the applied po [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:minQualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:minQualifiedCardinality "2"^^xsd:nonNegativeInteger +[ owl:minQualifiedCardinality "1"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger @@ -53850,7 +53715,7 @@ In either case, the magnitude of the catalytic current depends on the applied po [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:minQualifiedCardinality "2"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger diff --git a/versions/0.14.0-beta/electrochemistry.ttl b/versions/0.14.0-beta/electrochemistry.ttl index baa1206..d442e3c 100644 --- a/versions/0.14.0-beta/electrochemistry.ttl +++ b/versions/0.14.0-beta/electrochemistry.ttl @@ -1,6 +1,6 @@ @prefix : . @prefix bibo: . -@prefix chemsub: . +@prefix chemsub: . @prefix dcterms: . @prefix emmo: . @prefix foaf: . @@ -54,9 +54,9 @@ schema:name a owl:AnnotationProperty . dcterms:created "2022-11-25"^^xsd:date ; dcterms:creator , ; - dcterms:issued "2024-07-03"^^xsd:date ; + dcterms:issued "2024-07-05"^^xsd:date ; dcterms:license "https://creativecommons.org/licenses/by/4.0/legalcode" ; - dcterms:modified "2024-07-03"^^xsd:date ; + dcterms:modified "2024-07-05"^^xsd:date ; dcterms:publisher "EMMO" ; dcterms:source , , @@ -67,13 +67,13 @@ schema:name a owl:AnnotationProperty . bibo:status "unstable" ; vann:preferredNamespacePrefix "echem" ; vann:preferredNamespaceUri "https://w3id.org/emmo/domain/electrochemistry" ; - owl:backwardCompatibleWith "0.16.0-beta" ; + owl:backwardCompatibleWith "0.17.0-beta" ; owl:imports , , - ; - owl:priorVersion "0.16.0-beta" ; - owl:versionIRI ; - owl:versionInfo "0.17.0-beta" ; + ; + owl:priorVersion "0.17.0-beta" ; + owl:versionIRI ; + owl:versionInfo "0.18.0-beta" ; foaf:logo "https://raw.githubusercontent.com/emmo-repo/domain-electrochemistry/gh-pages/assets/img/fig/png/domain-electrochemistry-logo.png" . :electrochemistry_027d437e_3bbf_4eda_940b_e509f8d2b993 a owl:Class ; @@ -535,6 +535,14 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "R716" ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a coin case with a nominal diameter of 7.9 mm and a height of 1.65 mm"@en . +:electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b a owl:Class ; + rdfs:label "Resting"@en ; + rdfs:comment "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en ; + rdfs:subClassOf , + :electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 ; + skos:prefLabel "Resting"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en . + :electrochemistry_36444184_1100_4271_869f_7f2d983aaecb a owl:Class ; rdfs:label "P45173115" ; rdfs:comment "a prismatic case with a nominal length of 45 mm, width of 173 mm, and height of 115 mm"@en ; @@ -1564,6 +1572,15 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "TinBasedElectrode"@en ; emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "an electrode in which the primary active material consists of tin or tin compounds"@en . +:electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c a owl:Class ; + rdfs:label "PastedPlate"@en ; + rdfs:comment "plate in which the active material is applied as a paste to a conductive current collector"@en ; + rdfs:subClassOf :electrochemistry_92147e31_d015_4889_a092_04fbab033f15 ; + skos:altLabel "PastedElectrode"@en ; + skos:prefLabel "PastedPlate"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "plate in which the active material is applied as a paste to a conductive current collector"@en . + :electrochemistry_a277e420_2483_44d5_a2bc_4e421dea231a a owl:Class ; rdfs:label "R926" ; rdfs:comment "a coin case with a nominal diameter of 9.5 mm and a height of 2.6 mm"@en ; @@ -1658,10 +1675,11 @@ schema:name a owl:AnnotationProperty . emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a coin case with a nominal diameter of 11.6 mm and a height of 4.2 mm"@en . :electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e a owl:Class ; - rdfs:label "CCCVCycling"@en ; + rdfs:label "ConstantCurrentConstantVoltageCycling"@en ; rdfs:comment "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en ; rdfs:subClassOf :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; - skos:prefLabel "CCCVCycling"@en ; + skos:altLabel "CCCVCycling"@en ; + skos:prefLabel "ConstantCurrentConstantVoltageCycling"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en . :electrochemistry_ad9cdad6_66e8_471e_a7c6_b79f37c20814 a owl:Class ; @@ -1783,6 +1801,17 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "P20100141" ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a prismatic case with a nominal length of 20 mm, width of 100 mm, and height of 141 mm"@en . +:electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d a owl:Class ; + rdfs:label "FuelCell"@en ; + rdfs:comment "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; + rdfs:subClassOf :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; + skos:prefLabel "FuelCell"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q180253"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-05"@en ; + emmo:EMMO_6dd685dd_1895_46e4_b227_be9f7d643c25 "https://dbpedia.org/page/Fuel_cell"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; + emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Fuel_cell"@en . + :electrochemistry_bea04148_10d9_4eda_9cd5_8f609d7e9ff8 a owl:Class ; rdfs:label "CelsiusTemperatureMeasurement"@en ; rdfs:comment "measurement of temperature"@en ; @@ -3335,15 +3364,6 @@ schema:name a owl:AnnotationProperty . "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-26"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "interface between an electrolyte and an electrode where an electrode reaction takes place."@en . -:electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c a owl:Class ; - rdfs:label "PastedPlate"@en ; - rdfs:comment "plate in which the active material is applied as a paste to a conductive current collector"@en ; - rdfs:subClassOf :electrochemistry_92147e31_d015_4889_a092_04fbab033f15 ; - skos:altLabel "PastedElectrode"@en ; - skos:prefLabel "PastedPlate"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "plate in which the active material is applied as a paste to a conductive current collector"@en . - :electrochemistry_a462859d_d8bd_48ea_8bde_1576f1248a1e a owl:Class ; rdfs:label "SilverElectrode"@en ; rdfs:comment "electrode in the form of foil, mesh, wire, rod, tube, powder, pellets, or single crystal of silver"@en ; @@ -3459,17 +3479,6 @@ of other configurations are used."""@en . emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-19"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "part which insures insulation between the plate (electrode) edges and adjacent plates (electrodes) and the container side walls"@en . -:electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d a owl:Class ; - rdfs:label "FuelCell"@en ; - rdfs:comment "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - rdfs:subClassOf :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; - skos:prefLabel "FuelCell"@en ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q180253"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-05"@en ; - emmo:EMMO_6dd685dd_1895_46e4_b227_be9f7d643c25 "https://dbpedia.org/page/Fuel_cell"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Fuel_cell"@en . - :electrochemistry_bed5b5f9_b89d_45e3_a8c2_81b70ae21847 a owl:Class ; rdfs:label "SeriesParallelConnection"@en ; rdfs:comment "arrangement of cells or batteries wherein in series connected cells or batteries are connected in parallel."@en ; @@ -4518,15 +4527,20 @@ schema:Person a owl:Class ; skos:prefLabel "BimetallicOxideElectrode"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "an electrode consisting of two metal oxide active materials"@en . -:electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 a owl:Class ; - rdfs:label "GalvanostaticProcess"@en ; - rdfs:comment "a process in which the electric current is kept constant"@en ; - rdfs:subClassOf [ a owl:Restriction ; - owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; - owl:someValuesFrom :electrochemistry_22725105_c941_4b14_a4a2_fcb627958607 ], - :electrochemistry_5548f188_df00_4c05_ae98_7846e92efe36 ; - skos:prefLabel "GalvanostaticProcess"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a process in which the electric current is kept constant"@en . +:electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 a owl:Class ; + rdfs:label "ActiveMaterial"@en ; + rdfs:comment "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; + rdfs:subClassOf :electrochemistry_b5ea31c9_bb10_4276_980e_c3eceb1efc82, + :electrochemistry_ebdb68e9_c4b5_4d57_a042_c0f51d446755 ; + skos:altLabel "ActiveElectrochemicalMaterial"@en, + "ElectrochemicallyActiveMaterial"@en ; + skos:prefLabel "ActiveMaterial"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q120907375" ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-33", + "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-14"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; + emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "material which reacts chemically to produce electric energy when the cell discharges", + "in secondary cells, the active material is restored to its original state during charge"@en . :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 a owl:Class ; rdfs:label "PotentiometricStrippingAnalysis"@en ; @@ -4601,20 +4615,15 @@ schema:Person a owl:Class ; "The electrode (or interfacial) reaction involves all the processes (chemical reaction, structural reorganization, adsorption) accompanying the charge transfer step."@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1351/goldbook.E01960"@en . -:electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 a owl:Class ; - rdfs:label "ActiveMaterial"@en ; - rdfs:comment "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; - rdfs:subClassOf :electrochemistry_b5ea31c9_bb10_4276_980e_c3eceb1efc82, - :electrochemistry_ebdb68e9_c4b5_4d57_a042_c0f51d446755 ; - skos:altLabel "ActiveElectrochemicalMaterial"@en, - "ElectrochemicallyActiveMaterial"@en ; - skos:prefLabel "ActiveMaterial"@en ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q120907375" ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-33", - "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-14"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "material which reacts chemically to produce electric energy when the cell discharges", - "in secondary cells, the active material is restored to its original state during charge"@en . +:electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 a owl:Class ; + rdfs:label "GalvanostaticProcess"@en ; + rdfs:comment "a process in which the electric current is kept constant"@en ; + rdfs:subClassOf [ a owl:Restriction ; + owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; + owl:someValuesFrom :electrochemistry_22725105_c941_4b14_a4a2_fcb627958607 ], + :electrochemistry_5548f188_df00_4c05_ae98_7846e92efe36 ; + skos:prefLabel "GalvanostaticProcess"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a process in which the electric current is kept constant"@en . :electrochemistry_8a1c9a7b_978c_4421_a9c1_d0b07b42aab9 a owl:Class ; rdfs:label "ChemicalReaction"@en ; @@ -4953,9 +4962,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "extremely resistant to many chemicals, impermeable to gases and liquids, and has good electrical conductivity, high hardness and strength, and biocompatibility"@en . + owl:annotatedTarget "electrode made of glassy carbon material with an intertwined graphitic ribbon structure, formed by pyrolysis of a resol precursor at temperatures up to 3000 °C"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -4976,28 +4985,22 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "A disc electrode that is embedded in the centre of a cylinder which rotates in solution around the longitudinal cylinder axis."@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "composite system in which the supplied electric energy mainly produces chemical reactions or, conversely, in which the energy released by chemical reactions is mainly delivered by the system as electric energy"@en . + owl:annotatedTarget "a system containing two electrodes that allow transport of electrons, separated by an electrolyte that allows movement of ions but blocks movement of electrons."@en . [] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "system that consists of at least two electron conductors (electrodes) in contact with ionic conductors (electrolytes)"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" . + owl:annotatedTarget "composite system in which the supplied electric energy mainly produces chemical reactions or, conversely, in which the energy released by chemical reactions is mainly delivered by the system as electric energy"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "glassy carbon combines glass-like mechanical characteristics with physical properties similar to graphite, owing to its “graphene ribbon” structure"@en . - -[] a owl:Axiom ; - dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "a system containing two electrodes that allow transport of electrons, separated by an electrolyte that allows movement of ions but blocks movement of electrons."@en . + owl:annotatedTarget "extremely resistant to many chemicals, impermeable to gases and liquids, and has good electrical conductivity, high hardness and strength, and biocompatibility"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5033,13 +5036,13 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "one of the most frequently used working electrodes"@en . + owl:annotatedTarget "glassy carbon combines glass-like mechanical characteristics with physical properties similar to graphite, owing to its “graphene ribbon” structure"@en . [] a owl:Axiom ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; - owl:annotatedTarget "in secondary cells, the active material is restored to its original state during charge"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedTarget "material that is oxidized or reduced at an electrode in an electrochemical cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5047,12 +5050,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; owl:annotatedTarget "material which reacts chemically to produce electric energy when the cell discharges" . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; - owl:annotatedTarget "material that is oxidized or reduced at an electrode in an electrochemical cell"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5061,9 +5058,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "electrode made of glassy carbon material with an intertwined graphitic ribbon structure, formed by pyrolysis of a resol precursor at temperatures up to 3000 °C"@en . + owl:annotatedTarget "one of the most frequently used working electrodes"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5083,18 +5080,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_83f2b1e9_cb67_4dbf_977f_ba54bbae374f ; owl:annotatedTarget "charge during which the electric current is maintained at a constant value regardless of the battery voltage or temperature"@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; - owl:annotatedTarget "Electrolyte solution in the anodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the anode is placed."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; owl:annotatedTarget "electrolyte on the anode side of an electrochemical cell that is divided into compartments"@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; + owl:annotatedTarget "Electrolyte solution in the anodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the anode is placed."@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5133,15 +5130,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_8d3bf304_78e4_4e99_abe1_6ab429e44ed1 ; - owl:annotatedTarget "a sealed cell may be equipped with a safety device to prevent a dangerously high internal pressure and is designed to operate during its life in its original sealed state"@en . + owl:annotatedTarget "cell which remains closed and does not release either gas or liquid when operated within the limits specified by the manufacturer"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_8d3bf304_78e4_4e99_abe1_6ab429e44ed1 ; - owl:annotatedTarget "cell which remains closed and does not release either gas or liquid when operated within the limits specified by the manufacturer"@en . + owl:annotatedTarget "a sealed cell may be equipped with a safety device to prevent a dangerously high internal pressure and is designed to operate during its life in its original sealed state"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5150,10 +5147,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "capacitor consisting of a metallic plate as first conductor, a very thin oxide film formed on the metal as the dielectric and an electrolyte as second conductor"@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_06d8e1ee_924a_4915_998d_33a69f41dadc ; - owl:annotatedTarget "operation during which an electrochemical cell supplies electric energy as the result of chemical changes within the cell"@en . + owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; + owl:annotatedTarget "two-step electrochemical measurement in which 1) material is accumulated at an electrode and 2) the material is removed by chemical reaction or electrochemically at constant current with measurement of electrode potential"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5161,6 +5158,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; owl:annotatedTarget "historically for the analysis of metal ions, mercury ions were added to the test solution to form a mercury amalgam when reduced. Alternatively, an HMDE or MFE was used and the oxidizing agent added after amalgam formation. However, the toxicity of mercury and its compounds have all but precluded the present-day use of mercury"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_06d8e1ee_924a_4915_998d_33a69f41dadc ; + owl:annotatedTarget "operation during which an electrochemical cell supplies electric energy as the result of chemical changes within the cell"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5179,12 +5182,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; owl:annotatedTarget "the time between changes in potential in step 2 is related to the concentration of analyte in the solution"@en . -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; - owl:annotatedTarget "two-step electrochemical measurement in which 1) material is accumulated at an electrode and 2) the material is removed by chemical reaction or electrochemically at constant current with measurement of electrode potential"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5211,15 +5208,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_9ee6e728_e8f5_4b36_a045_d63da69dfc85 ; - owl:annotatedTarget "overcharge is also the act of charging beyond a certain limit specified by the manufacturer"@en . + owl:annotatedTarget "continued charging of a fully charged secondary cell or battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_9ee6e728_e8f5_4b36_a045_d63da69dfc85 ; - owl:annotatedTarget "continued charging of a fully charged secondary cell or battery"@en . + owl:annotatedTarget "overcharge is also the act of charging beyond a certain limit specified by the manufacturer"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5227,6 +5224,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_9f466223_e20a_474d_ac4d_6d4b6131c275 ; owl:annotatedTarget "an electrode that holds its potential essentially constant by efficiently allowing electric current to pass"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_a0580fa9_5073_44af_b33e_7adbc83892d0 ; + owl:annotatedTarget "electrode reaction in which oxidation occurs at the anode"@en . + [] a owl:Axiom ; dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5242,14 +5245,14 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0580fa9_5073_44af_b33e_7adbc83892d0 ; - owl:annotatedTarget "electrode reaction in which oxidation occurs at the anode"@en . + owl:annotatedSource :electrochemistry_a0a619d7_da95_41f0_8bc3_9c19d636d543 ; + owl:annotatedTarget "electrode that serves only as a source or sink for electrons without playing a chemical role in the electrode reaction"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0a619d7_da95_41f0_8bc3_9c19d636d543 ; - owl:annotatedTarget "electrode that serves only as a source or sink for electrons without playing a chemical role in the electrode reaction"@en . + owl:annotatedSource :electrochemistry_a0fcb105_587f_45d8_a89a_46dc8f745069 ; + owl:annotatedTarget "partial or complete external covering of a cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5260,14 +5263,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0fcb105_587f_45d8_a89a_46dc8f745069 ; - owl:annotatedTarget "partial or complete external covering of a cell"@en . - -[] a owl:Axiom ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c ; - owl:annotatedTarget "plate in which the active material is applied as a paste to a conductive current collector"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedSource :electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e ; + owl:annotatedTarget "process inside an electrolytic cell used to coat a conductive object with a layer of a material"@en . [] a owl:Axiom ; dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; @@ -5278,8 +5275,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e ; - owl:annotatedTarget "process inside an electrolytic cell used to coat a conductive object with a layer of a material"@en . + owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; + owl:annotatedTarget "component of a cell which permits the flow of gas in one direction only"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5287,12 +5284,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; owl:annotatedTarget "a valve has a characteristic venting or opening and closing pressure"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; - owl:annotatedTarget "component of a cell which permits the flow of gas in one direction only"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5305,6 +5296,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a462859d_d8bd_48ea_8bde_1576f1248a1e ; owl:annotatedTarget "electrode in the form of foil, mesh, wire, rod, tube, powder, pellets, or single crystal of silver"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; + owl:annotatedTarget "a chemical reaction in an electrolyte involving a transfer of electrons between chemical components or between chemical components and an electrode"@en . + [] a owl:Axiom ; dcterms:source "Bockris, J. O'M. and Despić, . Aleksandar R. (2011, December 15). Electrochemical reaction. Encyclopedia Britannica. https://www.britannica.com/science/electrochemical-reaction" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5317,12 +5314,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; owl:annotatedTarget "the electrode reaction can also involve other chemical reactions including subreactions on a cell electrode"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; - owl:annotatedTarget "a chemical reaction in an electrolyte involving a transfer of electrons between chemical components or between chemical components and an electrode"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5355,15 +5346,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_ae56cce3_7a7c_4e53_bb58_31e0d642d47e ; - owl:annotatedTarget "this flame front may originate from a spark or an external naked flame igniting combustible electrolysis gas"@en . + owl:annotatedTarget "vent of special design which provides protection against the propagation of a flame front from or into the interior of a secondary cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_ae56cce3_7a7c_4e53_bb58_31e0d642d47e ; - owl:annotatedTarget "vent of special design which provides protection against the propagation of a flame front from or into the interior of a secondary cell"@en . + owl:annotatedTarget "this flame front may originate from a spark or an external naked flame igniting combustible electrolysis gas"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5395,6 +5386,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_b525a629_a679_464f_bc5b_b49d2fc82686 ; owl:annotatedTarget "an electrochemical cell for conductivity measurements"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; + owl:annotatedTarget "by convention, cell electrode at which an oxidation reaction occurs"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5419,12 +5416,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; owl:annotatedTarget "the concepts of “anode” and “cathode” are related only to the direction of electron flow, not to the polarity of the electrodes"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; - owl:annotatedTarget "by convention, cell electrode at which an oxidation reaction occurs"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5433,15 +5424,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_b79d4f9e_5727_4895_8d7f_5fc18d83eb90 ; - owl:annotatedTarget "in a galvanic cell, parasitic reactions may cause inefficiencies or loss of performance"@en . + owl:annotatedTarget "an unwanted side reaction"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_b79d4f9e_5727_4895_8d7f_5fc18d83eb90 ; - owl:annotatedTarget "an unwanted side reaction"@en . + owl:annotatedTarget "in a galvanic cell, parasitic reactions may cause inefficiencies or loss of performance"@en . [] a owl:Axiom ; dcterms:source "IEEE Standard Glossary of Stationary Battery Terminology (2016), https://doi.org/10.1109/IEEESTD.2016.7552407" ; @@ -5481,12 +5472,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_bbae1ef4_0a95_4e7d_9932_1bf939129eef ; owl:annotatedTarget "current-potential curve in a voltammetry experiment"@en . -[] a owl:Axiom ; - dcterms:source "https://en.wikipedia.org/wiki/Square_wave" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0e33278b_639f_412d_9abd_64c3790026ef ; - owl:annotatedTarget "Periodic potential where the amplitude alternates at a steady frequency between fixed minimum and maximum values, with the same duration at minimum and maximum."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5500,10 +5485,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "part which insures insulation between the plate (electrode) edges and adjacent plates (electrodes) and the container side walls"@en . [] a owl:Axiom ; + dcterms:source "https://en.wikipedia.org/wiki/Square_wave" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d ; - owl:annotatedTarget "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedSource :electrochemistry_0e33278b_639f_412d_9abd_64c3790026ef ; + owl:annotatedTarget "Periodic potential where the amplitude alternates at a steady frequency between fixed minimum and maximum values, with the same duration at minimum and maximum."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5535,12 +5520,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_c3f4b34a_0e2c_46f3_baab_4ebd2682d26f ; owl:annotatedTarget "An ionic liquid is an electrolyte composed of a salt that is liquid below 100 °C. Ionic liquids have found uses in electrochemical analysis, because their unconventional properties include a negligible vapor pressure, a high thermal and electrochemical stability, and exceptional dissolution properties for both organic and inorganic chemical species."@en . -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; - owl:annotatedTarget "Electron conductor in an electrochemical cell connected to the external circuit."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5553,6 +5532,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_c55ec02c_b727_4df1_97ce_91d7bb5d5e91 ; owl:annotatedTarget "unplanned escape of electrolyte, gas or other material from a cell or battery"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_c610d869_cc03_44f0_b40d_ca86e945b9c9 ; + owl:annotatedTarget "cell from which electrolyte cannot escape regardless of its orientation"@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5562,8 +5547,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_c610d869_cc03_44f0_b40d_ca86e945b9c9 ; - owl:annotatedTarget "cell from which electrolyte cannot escape regardless of its orientation"@en . + owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; + owl:annotatedTarget "electronically conductive part in electric contact with a medium of lower electronic conductivity and intended to perform one or more of the functions of emitting charge carriers to or receiving charge carriers from that medium or to establish an electric field in that medium"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5579,21 +5564,21 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; - owl:annotatedTarget "by convention, an oxidation reaction occurs during discharge"@en . + owl:annotatedTarget "for a device having two electrodes, that electrode having the lower electric potential"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; - owl:annotatedTarget "electronically conductive part in electric contact with a medium of lower electronic conductivity and intended to perform one or more of the functions of emitting charge carriers to or receiving charge carriers from that medium or to establish an electric field in that medium"@en . + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; + owl:annotatedTarget "by convention, an oxidation reaction occurs during discharge"@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; - owl:annotatedTarget "for a device having two electrodes, that electrode having the lower electric potential"@en . + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; + owl:annotatedTarget "Electron conductor in an electrochemical cell connected to the external circuit."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5604,8 +5589,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0f827b54_370d_4c63_99a6_80f13b24e55e ; - owl:annotatedTarget "evolution of gas resulting from electrolysis of the water in the electrolyte of a cell"@en . + owl:annotatedSource :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; + owl:annotatedTarget "set of operations that is carried out on a secondary cell or battery and is repeated regularly in the same sequence."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5622,14 +5607,14 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; - owl:annotatedTarget "set of operations that is carried out on a secondary cell or battery and is repeated regularly in the same sequence."@en . + owl:annotatedSource :electrochemistry_d5da9948_e95b_4f12_a2d2_10a48f390c52 ; + owl:annotatedTarget "arrangement of cells or batteries wherein parallel connected cells or batteries are connected in series."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_d5da9948_e95b_4f12_a2d2_10a48f390c52 ; - owl:annotatedTarget "arrangement of cells or batteries wherein parallel connected cells or batteries are connected in series."@en . + owl:annotatedSource :electrochemistry_0f827b54_370d_4c63_99a6_80f13b24e55e ; + owl:annotatedTarget "evolution of gas resulting from electrolysis of the water in the electrolyte of a cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5655,18 +5640,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_df78745e_f9db_4830_88f0_8ce074fcb8ff ; owl:annotatedTarget "liquid metal electrode used in polarography"@en . +[] a owl:Axiom ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; + owl:annotatedTarget "electrochemical cell in which chemical reactions occur spontaneously and chemical energy is converted into electrical energy."@en . + [] a owl:Axiom ; dcterms:references "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; owl:annotatedTarget "An electrochemical cell that spontaneously produces work."@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_113e0469_8ae0_407f_892d_4b988f8d8a08 ; - owl:annotatedTarget "electrochemical cell that has two half-cells separated by a wall permeable to ions, both containing the same electrolyte differing only in their temperatures."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5674,16 +5659,22 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "Electrochemical cell intended to produce electric energy."@en . [] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; - owl:annotatedTarget "electrochemical cell in which chemical reactions occur spontaneously and chemical energy is converted into electrical energy."@en . + owl:annotatedSource :electrochemistry_e2a1dae1_05e4_4bd1_a39d_0eb10db482bc ; + owl:annotatedTarget "method of separating and neutralizing ions by an electric current in an electrolytic cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e2a1dae1_05e4_4bd1_a39d_0eb10db482bc ; - owl:annotatedTarget "method of separating and neutralizing ions by an electric current in an electrolytic cell"@en . + owl:annotatedSource :electrochemistry_113e0469_8ae0_407f_892d_4b988f8d8a08 ; + owl:annotatedTarget "electrochemical cell that has two half-cells separated by a wall permeable to ions, both containing the same electrolyte differing only in their temperatures."@en . + +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; + owl:annotatedTarget "electrochemical cell intended to produce chemical reactions"@en . [] a owl:Axiom ; dcterms:references "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; @@ -5697,18 +5688,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; owl:annotatedTarget "Electrochemical cell in which electrical energy is converted into chemical energy."@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; - owl:annotatedTarget "electrochemical cell intended to produce chemical reactions"@en . - -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_1152ae6b_8b57_4d99_912e_40c6a29342fb ; - owl:annotatedTarget "mass m of electrochemically-transformed substance is proportional to the charge Q passed, m ∝ Q."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5721,6 +5700,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_ec1dce8b_bb46_41a9_b532_6bed381aa557 ; owl:annotatedTarget "secondary cell having a cover provided with an opening through which products of electrolysis and evaporation are allowed to escape freely from the cell to the atmosphere"@en . +[] a owl:Axiom ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_1152ae6b_8b57_4d99_912e_40c6a29342fb ; + owl:annotatedTarget "mass m of electrochemically-transformed substance is proportional to the charge Q passed, m ∝ Q."@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5739,12 +5724,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f0c24970_4c14_4207_bd78_5f2181a67085 ; owl:annotatedTarget "the process of forming a film or a bulk material using an electrochemical process where the electrons are supplied by an external power supply"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_1355816f_a2b5_4800_8001_fc888f5d6b1b ; - owl:annotatedTarget "instrument intended to measure the value of a voltage."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5757,6 +5736,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f47611a2_e081_47f0_b287_3fda5f706154 ; owl:annotatedTarget "chemical reaction which occurs in addition to the main process"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; + owl:annotatedTarget "electrode reaction in which reduction occurs at the cathode"@en . + +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_1355816f_a2b5_4800_8001_fc888f5d6b1b ; + owl:annotatedTarget "instrument intended to measure the value of a voltage."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5769,12 +5760,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; owl:annotatedTarget "electrode reaction, where the energy of electrons in the working electrode is higher than the LUMO orbital of the substrate"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; - owl:annotatedTarget "electrode reaction in which reduction occurs at the cathode"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5782,10 +5767,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "electrode that responds to one, or more than one, species in the solution being investigated, with no appreciable change of bulk solution composition during the measurement"@en . [] a owl:Axiom ; - dcterms:source "IUPAC. Compendium of Chemical Terminology, 2nd ed. (the \"Gold Book\"). Compiled by A. D. McNaught and A. Wilkinson. Blackwell Scientific Publications, Oxford (1997). Online version (2019-) created by S. J. Chalk. ISBN 0-9678550-9-8. https://doi.org/10.1351/goldbook." ; + dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_15325775_6d4c_4192_82f1_e4feca9de426 ; - owl:annotatedTarget "A membrane having ion-exchange groups:"@en . + owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; + owl:annotatedTarget "a material in which the mobile species are ions and free movement of electrons is blocked."@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5799,18 +5784,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; owl:annotatedTarget "liquid or solid substance containing mobile ions that render it conductive"@en . +[] a owl:Axiom ; + dcterms:source "IUPAC. Compendium of Chemical Terminology, 2nd ed. (the \"Gold Book\"). Compiled by A. D. McNaught and A. Wilkinson. Blackwell Scientific Publications, Oxford (1997). Online version (2019-) created by S. J. Chalk. ISBN 0-9678550-9-8. https://doi.org/10.1351/goldbook." ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_15325775_6d4c_4192_82f1_e4feca9de426 ; + owl:annotatedTarget "A membrane having ion-exchange groups:"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; owl:annotatedTarget "substance that provides ions on dissolution in a solvent or on melting"@en . -[] a owl:Axiom ; - dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; - owl:annotatedTarget "a material in which the mobile species are ions and free movement of electrons is blocked."@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5823,18 +5808,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_fb9bf7cb_dd4b_4391_99a1_628263dd6940 ; owl:annotatedTarget "measuring instrument to obtain the electrical charge passed in an experiment, or to produce a known amount of substance in a titration."@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; - owl:annotatedTarget "Electrolyte solution in the cathodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the cathode is placed."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; owl:annotatedTarget "electrolyte on the cathode side of an electrochemical cell that is divided into compartments."@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; + owl:annotatedTarget "Electrolyte solution in the cathodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the cathode is placed."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5931,18 +5916,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_2d32a81a_2148_41bd_84fb_467aa8de4a8f ; owl:annotatedTarget "foil, wire, disc, or mesh electrode made of platinum, which is the most commonly used metallic working electrode in electrochemistry"@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; - owl:annotatedTarget "An interfacial reaction that necessarily involves a charge-transfer step."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; owl:annotatedTarget "electrochemical reaction involving the transfer of electrons between electrolyte and electrode"@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; + owl:annotatedTarget "An interfacial reaction that necessarily involves a charge-transfer step."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5957,15 +5942,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_328c6e36_3706_4d92_abae_432fa3adb2a0 ; - owl:annotatedTarget "a cell baffle has a second function in protecting the plate pack from damage by objects inserted through the filling hole"@en . + owl:annotatedTarget "internal component used to reduce the amount of electrolyte loss due to electrolyte spray being carried in the gas and/or by electrolyte movement"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_328c6e36_3706_4d92_abae_432fa3adb2a0 ; - owl:annotatedTarget "internal component used to reduce the amount of electrolyte loss due to electrolyte spray being carried in the gas and/or by electrolyte movement"@en . + owl:annotatedTarget "a cell baffle has a second function in protecting the plate pack from damage by objects inserted through the filling hole"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5979,6 +5964,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_34bc54e3_de4c_41f8_8d3a_d77c951ee23a ; owl:annotatedTarget "needle-like or tree-like formation of crystalline growth formed during deposition of a material"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; + owl:annotatedTarget "by convention, cell electrode at which, a reduction reaction occurs"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5997,12 +5988,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; owl:annotatedTarget "the concepts of “anode” and “cathode” are related only to the direction of electron flow, not to the polarity of the electrodes"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; - owl:annotatedTarget "by convention, cell electrode at which, a reduction reaction occurs"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -6023,15 +6008,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_3f6c9e09_5f23_41cc_9f85_7de365cef089 ; - owl:annotatedTarget "electrolyte creep is sometimes indicated by the presence of a visible solid deposit or wet spots"@en . + owl:annotatedTarget "gradual and slow spreading of an electrolyte film on the external surface of a cell or battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_3f6c9e09_5f23_41cc_9f85_7de365cef089 ; - owl:annotatedTarget "gradual and slow spreading of an electrolyte film on the external surface of a cell or battery"@en . + owl:annotatedTarget "electrolyte creep is sometimes indicated by the presence of a visible solid deposit or wet spots"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -6041,9 +6026,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_04f28ce3_251d_429e_aa85_ab3eb45bbcd2 ; - owl:annotatedTarget "in lithium batteries thermal runaway may cause melting of lithium"@en . + owl:annotatedTarget "unstable condition arising during constant voltage charge in which the rate of heat dissipation capability, causing a continuous temperature increase with resulting further charge current increase, which can lead to the destruction of the battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -6077,9 +6062,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_04f28ce3_251d_429e_aa85_ab3eb45bbcd2 ; - owl:annotatedTarget "unstable condition arising during constant voltage charge in which the rate of heat dissipation capability, causing a continuous temperature increase with resulting further charge current increase, which can lead to the destruction of the battery"@en . + owl:annotatedTarget "in lithium batteries thermal runaway may cause melting of lithium"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; diff --git a/versions/0.15.0-beta/context/context.json b/versions/0.15.0-beta/context/context.json index ac1b0bb..2006ca7 100644 --- a/versions/0.15.0-beta/context/context.json +++ b/versions/0.15.0-beta/context/context.json @@ -1076,7 +1076,6 @@ "ButlerVolmerEquation": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d48ea516_5cac_4f86_bc88_21b6276c0938", "C": "https://w3id.org/emmo#EMMO_36a9bf69_483b_42fd_8a0c_7ac9206320bc", "CASRN": "https://w3id.org/emmo#EMMO_d2a47cd8_662f_438f_855a_b4378eb992ff", - "CCCVCycling": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e", "CPlusPlus": "https://w3id.org/emmo#EMMO_64aba1e5_24b7_4140_8eb4_676c35698e79", "CRate": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_e1fd84eb_acdb_4b2c_b90c_e899d552a3ee", "CSharp": "https://w3id.org/emmo#EMMO_268a8a97_3a6f_4022_93da_962a66827cdc", @@ -1285,7 +1284,7 @@ "CoatingThickness": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3b938708_e7e4_4ac0_a959_9c04306302e7", "Cobalt": "https://w3id.org/emmo/domain/chemical-substance#substance_8f857eb2_7cc8_4294_954d_e69f2842c084", "CobaltAtom": "https://w3id.org/emmo#EMMO_3fe9d899_f1f1_5657_b176_ac6afff2e93d", - "CobaltBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_838c115b_6bc9_4ce8_9f8d_86a6bf67742a", + "CobaltBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7b811780_7251_481b_a4d3_97d437955099", "CobaltHydroxide": "https://w3id.org/emmo/domain/chemical-substance#substance_29b1c15d_2632_40d7_88f7_43575b68b988", "CobaltIIAcetate": "https://w3id.org/emmo/domain/chemical-substance#substance_4310c690_9810_4a95_8d62_7e78e0b84437", "CobaltIIBistrifluoromethanesulfonylimide": "https://w3id.org/emmo/domain/chemical-substance#substance_f4dffee2_c642_4114_a748_5e93b3908380", @@ -1358,6 +1357,7 @@ "ConstantCurrentCharging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_83f2b1e9_cb67_4dbf_977f_ba54bbae374f", "ConstantCurrentChargingCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_37c38b7e_9ded_481a_85fd_a467f1ee2b9f", "ConstantCurrentConstantVoltageCharging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0cc8f231_0ce5_467e_9c76_29b2c80349ad", + "ConstantCurrentConstantVoltageCycling": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e", "ConstantCurrentDischarging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_53fe3f58_0802_41cf_af69_4784fc42cc30", "ConstantCurrentDischargingCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_08833ed2_6324_411a_b34b_fe64c44cd5ef", "ConstantPotentialPulses": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_84d37a37_88bd_47db_9425_31f73a81d38c", @@ -1590,7 +1590,7 @@ "DeviceTemperature": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_463950b9_fd8d_48de_a52d_b29cab026391", "DewPointTemperature": "https://w3id.org/emmo#EMMO_a383e332_a271_463f_9e44_559604547220", "Diameter": "https://w3id.org/emmo#EMMO_c1c8ac3c_8a1c_4777_8e0b_14c1f9f9b0c6", - "Dichloromethane": "https://w3id.org/emmo/domain/chemical-substance#substance_8385c3c4_5906_48f6_b6b6_4bb60dccc27a", + "Dichloromethane": "https://w3id.org/emmo/domain/chemical-substance#substance_a6feec60_5fe7_4687_b427_3bf2ed06008d", "DieCasting": "https://w3id.org/emmo#EMMO_a85d0b8a_588e_423f_b799_97b0890e9183", "DielectricAndImpedanceSpectroscopy": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#DielectricAndImpedanceSpectroscopy", "Dielectrometry": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Dielectrometry", @@ -1624,7 +1624,7 @@ "Dimethoxyethane": "https://w3id.org/emmo/domain/chemical-substance#substance_b6ecabf9_14a4_4808_a139_55329e70ad42", "Dimethoxymethane": "https://w3id.org/emmo/domain/chemical-substance#substance_21954b0b_c05c_42db_b276_3a931d8aabb1", "DimethylCarbonate": "https://w3id.org/emmo/domain/chemical-substance#substance_c4a7d7bd_497e_457e_b858_ff73254266d0", - "DimethylSulfoxide": "https://w3id.org/emmo/domain/chemical-substance#substance_b593b5dd_7957_4b85_856a_dd59775210b6", + "DimethylSulfoxide": "https://w3id.org/emmo/domain/chemical-substance#substance_ea68e1a4_6be8_4686_8701_ba88b40d00b7", "Dimethylformamide": "https://w3id.org/emmo/domain/chemical-substance#substance_769bdc09_f533_4fde_bb53_20339d5bfcb7", "Dimethylpropyleneurea": "https://w3id.org/emmo/domain/chemical-substance#substance_945c68da_3baf_4da6_b794_dca7aebc4ca7", "Dimethylsulfate": "https://w3id.org/emmo/domain/chemical-substance#substance_3c8fb431_7d9d_4a89_a494_708df34f44d3", @@ -1837,7 +1837,7 @@ "ElectronicModel": "https://w3id.org/emmo#EMMO_6eca09be_17e9_445e_abc9_000aa61b7a11", "ElectronvoltPerMetre": "https://w3id.org/emmo#ElectronvoltPerMetre", "Electroosmosis": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_5641910f_6e69_4ce4_be84_4b1bf14b8916", - "Electroplating": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e", + "Electroplating": "https://w3id.org/emmo#EMMO_30e3edb5_0977_4b9b_9aed_5a4d16c1c07c", "ElementalMaterial": "https://w3id.org/emmo#EMMO_a086af15_a7c3_404c_b4ce_c8e4466f1b4b", "ElementalSubstance": "https://w3id.org/emmo#EMMO_436b11bd_1756_4821_9f14_c9ed6b67552e", "ElementaryBoson": "https://w3id.org/emmo#EMMO_cafd0f10_ce85_48b9_9a36_2b0af141ce21", @@ -2192,11 +2192,12 @@ "ISQBaseQuantity": "https://w3id.org/emmo#EMMO_1a4c1a97_88a7_4d8e_b2f9_2ca58e92dde4", "ISQDerivedQuantity": "https://w3id.org/emmo#EMMO_2946d40b_24a1_47fa_8176_e3f79bb45064", "ISQDimensionlessQuantity": "https://w3id.org/emmo#EMMO_a66427d1_9932_4363_9ec5_7d91f2bfda1e", - "IUPACName": "https://w3id.org/emmo#EMMO_16a3bd5c_75f0_42b3_b000_cb0d018f840e", + "IUPACName": "https://w3id.org/emmo#EMMO_f652e7d2_0b33_4d10_8d0f_2f70089982ba", "IUPACNomencalture": "https://w3id.org/emmo#EMMO_91a0635a_a89a_46de_8928_04a777d145c7", "Icon": "https://w3id.org/emmo#EMMO_d7788d1a_020d_4c78_85a1_13563fcec168", "Illuminance": "https://w3id.org/emmo#EMMO_b51fbd00_a857_4132_9711_0ef70e7bdd20", "IlluminanceTimeUnit": "https://w3id.org/emmo#EMMO_e467cc3f_676c_432e_b70e_19237d1bcc78", + "ImaginaryElectricImpedance": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626", "Impedimetry": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Impedimetry", "InChI": "https://w3id.org/emmo#EMMO_d74ed682_894f_46c5_87cb_167f60926965", "IncreasingPotentialPulses": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_77be01ef_49bd_4f2e_bec8_eec0894b8562", @@ -2288,7 +2289,7 @@ "IridiumSymbol": "https://w3id.org/emmo#EMMO_b8aab013_b729_51f1_bc14_5302e7f97cbe", "Iron": "https://w3id.org/emmo/domain/chemical-substance#substance_89fd13e8_8061_41da_83f4_634144116425", "IronAtom": "https://w3id.org/emmo#EMMO_a4839f08_1080_53bf_9cb3_101e20c2656b", - "IronBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_cc4e178c_bc1f_4502_b6c2_33f304ef6bab", + "IronBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_5e1136d3_df00_40f7_a4bc_8259341053a1", "IronDisulfide": "https://w3id.org/emmo/domain/chemical-substance#substance_c728b6b9_449a_45ff_b5ae_6b7968708f0d", "IronDisulfideElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d2726dd5_69f0_4cb1_bd3c_4c48813e57e7", "IronIIIHydroxide": "https://w3id.org/emmo/domain/chemical-substance#substance_323a2e39_d7d5_4802_884a_9aa41a280986", @@ -2556,6 +2557,7 @@ "LossFactor": "https://w3id.org/emmo#EMMO_c3796906_8063_47d4_92af_890ae08f25fa", "LowPressureCasting": "https://w3id.org/emmo#EMMO_8b2fd84c_8f51_4731_9bd7_830545e78b23", "LowerCriticalMagneticFluxDensity": "https://w3id.org/emmo#EMMO_fd4a6307_f9f7_4b54_b044_caa04e620232", + "LowerCurrentLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea", "LowerFrequencyLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_b66d6553_6136_4754_902a_707e414210c2", "LowerVoltageLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_534dd59c_904c_45d9_8550_ae9d2eb6bbc9", "Lumen": "https://w3id.org/emmo#Lumen", @@ -2608,7 +2610,7 @@ "MagnesiumTriflate": "https://w3id.org/emmo/domain/chemical-substance#substance_df24fad8_7ef0_4330_a3f2_c4d65d9a3be8", "MagnesiumTrifluoromethanesulfonyloxalatoborate": "https://w3id.org/emmo/domain/chemical-substance#substance_2b7473ba_9156_489a_880f_3a2f746cd104", "MagneticDipoleMoment": "https://w3id.org/emmo#EMMO_81e767f1_59b1_4d7a_bf69_17f322241831", - "MagneticDipoleMomentUnit": "https://w3id.org/emmo#EMMO_5073dc80_aec2_4a3b_8057_fababfcbfe11", + "MagneticDipoleMomentUnit": "https://w3id.org/emmo#EMMO_1c2226a9_22f0_40c8_8928_5a01d398f96e", "MagneticFieldStrength": "https://w3id.org/emmo#EMMO_b4895f75_41c8_4fd9_b6d6_4d5f7c99c423", "MagneticFieldStrengthUnit": "https://w3id.org/emmo#EMMO_e6b83139_ba92_4fbd_a8b2_c8dde55844a1", "MagneticFlux": "https://w3id.org/emmo#EMMO_3b931698_937e_49be_ab1b_36fa52d91181", @@ -2676,7 +2678,7 @@ "MassExcess": "https://w3id.org/emmo#EMMO_7dd84949_0afa_4313_9b89_7bb0dd2e7771", "MassFlow": "https://w3id.org/emmo#EMMO_6d61ee3c_c5b6_4452_bc11_e9c33af992a7", "MassFluxUnit": "https://w3id.org/emmo#EMMO_e35d4936_b2e3_4cd6_a437_f1c864b3d450", - "MassFraction": "https://w3id.org/emmo/disciplines/units/coherentsiunits#EMMO_089f13b1_ceb3_4d2a_8795_b4a2d92916da", + "MassFraction": "https://w3id.org/emmo#EMMO_7c055d65_2929_40e1_af4f_4bf10995ad50", "MassFractionOfDryMatter": "https://w3id.org/emmo#EMMO_8f171308_f902_42c5_ac1d_d5259022e9c1", "MassFractionOfWater": "https://w3id.org/emmo#EMMO_cac16ce6_2cef_405d_ac63_0f918db4875e", "MassFractionUnit": "https://w3id.org/emmo#EMMO_18448443_dcf1_49b8_a321_cf46e2c393e1", @@ -3027,6 +3029,7 @@ "NobeliumAtom": "https://w3id.org/emmo#EMMO_49eb0790_50c2_5691_a8bf_dfa6f4a9f6c7", "NobeliumSymbol": "https://w3id.org/emmo#EMMO_c1bb775c_0888_5b88_9cce_c49bae1d298b", "NobleGasElementalSubstance": "https://w3id.org/emmo/domain/chemical-substance#substance_cac14194_2d5f_4fe6_b794_a9319f6d76ee", + "NominalCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100", "NominalProperty": "https://w3id.org/emmo#EMMO_909415d1_7c43_4d5e_bbeb_7e1910159f66", "NominalVoltage": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_639b844a_e801_436b_985d_28926129ead6", "NonActivePower": "https://w3id.org/emmo#EMMO_83318add_d05e_40fc_93ea_c6cd605df437", @@ -3061,6 +3064,7 @@ "NumberOfFiniteVolumeCellsInX": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_e73586eb_8475_4879_a43e_087c702ea6bf", "NumberOfFiniteVolumeCellsInY": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_c2a85d02_c6b4_42df_b5ed_a9904ec34a5c", "NumberOfFiniteVolumeCellsInZ": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a5e00e3a_736c_4200_8d04_ed222fe07037", + "NumberOfIterations": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_88dd2bce_fb17_4705_905d_892681812290", "NumberOfTurnsInAWinding": "https://w3id.org/emmo#EMMO_eefaa0ef_e7d4_4633_bf79_655bb55f4a49", "Numeral": "https://w3id.org/emmo#EMMO_74b05aed_66bf_43c8_aa2c_752a9ca8be03", "Numerical": "https://w3id.org/emmo#EMMO_4ce76d7f_03f8_45b6_9003_90052a79bfaa", @@ -3211,7 +3215,7 @@ "Permittivity": "https://w3id.org/emmo#EMMO_0ee5779e_d798_4ee5_9bfe_c392d5bea112", "PermittivityUnit": "https://w3id.org/emmo#EMMO_5f89cb0c_3171_47ee_b2ab_027a07c34c4b", "Persistence": "https://w3id.org/emmo#EMMO_e04884d9_eda6_487e_93d5_7722d7eda96b", - "Person": "http://xmlns.com/foaf/0.1/Person", + "Person": "https://schema.org/Person", "Perspective": "https://w3id.org/emmo#EMMO_49267eba_5548_4163_8f36_518d65b583f9", "Peta": "https://w3id.org/emmo#EMMO_d7c74480_a568_4470_acff_f18b499cc850", "PetaPrefixedUnit": "https://w3id.org/emmo#EMMO_43a6b269_da31_4bb6_a537_c97df4fff32a", @@ -3298,7 +3302,7 @@ "Porosity": "https://w3id.org/emmo#EMMO_3a6578ac_aee0_43b9_9bc6_1eb208c8c9a9", "PorousElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3663991d_9319_4f7a_922b_f0e428b58801", "PorousSeparator": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_58413d4e_2885_459e_ac06_8d45e661cf91", - "PositionVector": "https://w3id.org/emmo#EMMO_4312cae4_03ba_457e_b35d_0671a7db350c", + "PositionVector": "https://w3id.org/emmo#EMMO_44da6d75_54a4_4aa8_bd3a_156f6e9abb8e", "PositiveElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_aff732a9_238a_4734_977c_b2ba202af126", "PositiveTerminal": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_522f0c0b_cf33_4328_af71_12e38dae6798", "Positron": "https://w3id.org/emmo#EMMO_26a38b26_38ea_4acf_b212_db9e34c71b7a", @@ -3483,7 +3487,7 @@ "R54215": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_fc9e7ba3_5084_4c2a_b488_c6a96af99232", "R616": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_dc019f3f_e5f3_4eeb_bab9_a845a02223a0", "R621": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_15ec346a_6d3c_4161_95e1_9cf889965f85", - "R626": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_68c1c36e_1548_4247_bae2_fe7102a2c4ff", + "R626": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6b275583_433f_46f7_aafd_ebc9409257cc", "R712": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_bb2faf17_b819_4876_b17f_fa82917cf85d", "R716": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_34cb7ea7_2436_46e0_806e_a3c7835ae228", "R721": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3279f575_1c62_4bf2_a6e8_de4c7ff36f8e", @@ -3535,6 +3539,7 @@ "ReactivePower": "https://w3id.org/emmo#EMMO_d8030875_6d89_4645_9728_bbc3b8690609", "ReactorTimeConstant": "https://w3id.org/emmo#EMMO_b03dfad7_eab8_4949_9d10_dd4fd12faaef", "Real": "https://w3id.org/emmo#EMMO_18d180e4_5e3e_42f7_820c_e08951223486", + "RealElectricImpedance": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f", "ReciprocalAmountPerVolumeUnit": "https://w3id.org/emmo#EMMO_aef218f9_6ded_4db9_9263_e78eed55e5d6", "ReciprocalCentiMetre": "https://w3id.org/emmo#ReciprocalCentiMetre", "ReciprocalCubicCentiMetre": "https://w3id.org/emmo#ReciprocalCubicCentiMetre", @@ -3637,6 +3642,7 @@ "ResponseTimeAtAnISE": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_1a104474_c326_4a29_ac26_26a05ac8f72c", "RestEnergy": "https://w3id.org/emmo#EMMO_5117c5fe_f661_46f8_83c3_b48947f1532a", "RestMass": "https://w3id.org/emmo#EMMO_3c947caf_4070_4c79_a3a3_e53274ac9944", + "Resting": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b", "RestingTime": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_2678a656_4a27_4706_8dde_b0a93e9b92fa", "ReversibleHydrogenElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0d9ba00d_04bc_4bdc_85af_3380694f6f68", "RevolutionPerMinute": "https://w3id.org/emmo#RevolutionPerMinute", @@ -3790,7 +3796,7 @@ "SiemensSquareMetrePerMole": "https://w3id.org/emmo#SiemensSquareMetrePerMole", "Sievert": "https://w3id.org/emmo#Sievert", "Sign": "https://w3id.org/emmo#EMMO_b21a56ed_f969_4612_a6ec_cb7766f7f31d", - "Signal": "https://w3id.org/emmo/domain/chameo#Signal", + "Signal": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Signal", "SignalReferencePotential": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_68059d94_4c21_4065_b329_07faeebc7e87", "Silicon": "https://w3id.org/emmo/domain/chemical-substance#substance_68c0876b_cb62_41cd_846d_95cc9d9a8733", "SiliconAtom": "https://w3id.org/emmo#EMMO_798b0c96_82ca_5ce8_8d5f_f9f72668cf5d", @@ -4318,6 +4324,7 @@ "UpQuark": "https://w3id.org/emmo#EMMO_0a3f04a6_ba3a_49d9_99da_08b0e26f51f0", "UpQuarkType": "https://w3id.org/emmo#EMMO_fc47b76f_ad01_4cd0_8fc6_55532000e7c8", "UpperCriticalMagneticFluxDensity": "https://w3id.org/emmo#EMMO_6bfe6ad2_96ba_4478_81e5_d8881c550757", + "UpperCurrentLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45", "UpperFrequencyLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_666f0b69_9c74_49a3_80b3_96a188332462", "UpperVoltageLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6dcd5baf_58cd_43f5_a692_51508e036c88", "UraniumAtom": "https://w3id.org/emmo#EMMO_b233f8c0_37d8_51ae_9264_560e6649e246", diff --git a/versions/0.15.0-beta/electrochemicalquantities.ttl b/versions/0.15.0-beta/electrochemicalquantities.ttl index 882a543..96cb275 100644 --- a/versions/0.15.0-beta/electrochemicalquantities.ttl +++ b/versions/0.15.0-beta/electrochemicalquantities.ttl @@ -24,8 +24,6 @@ emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f a owl:AnnotationProperty . emmo:EMMO_5c78b424_087b_4e31_8c91_6422f1be1e86 owl:equivalentClass :electrochemistry_9c657fdc_b9d3_4964_907c_f9a6e8c5f52b . -emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 :electrochemistry_097ea615_c209_4edd_a1a1_5eea71d98fe8 "acimp/ohms"@en . - emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry_37b24a94_cae0_4d7a_9519_9f7692dec607 ; skos:altLabel "MassDiffusivity"@en ; emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q604008"@en ; @@ -101,6 +99,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "D40ParticleSize"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 40% of the sample's particles fall."@en . +:electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626 a owl:Class ; + rdfs:label "ImaginaryElectricImpedance"@en ; + rdfs:comment "the imaginary part of the complex electric impedance"@en ; + rdfs:subClassOf emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 ; + skos:prefLabel "ImaginaryElectricImpedance"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the imaginary part of the complex electric impedance"@en . + :electrochemistry_02d2d1d1_241c_429b_b4e7_31f2c3dc4835 a owl:Class ; rdfs:label "D95ParticleSize"@en ; rdfs:comment "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 95% of the sample's particles fall."@en ; @@ -381,6 +386,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "D50ParticleSize"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 50% of the sample's particles fall."@en . +:electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45 a owl:Class ; + rdfs:label "UpperCurrentLimit"@en ; + rdfs:comment "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en ; + rdfs:subClassOf :electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 ; + skos:prefLabel "UpperCurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + :electrochemistry_3e54f9e3_a31d_4821_9bfb_ef953a42c35b a owl:Class ; rdfs:label "MaximumPulseDischargingCurrent"@en ; rdfs:comment "the maximum current approved for pulse discharge of an electrochemical device"@en ; @@ -608,6 +620,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "ChargingCurrent"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electric current applied to an electrochemical device during a charging process"@en . +:electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea a owl:Class ; + rdfs:label "LowerCurrentLimit"@en ; + rdfs:comment "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en ; + rdfs:subClassOf :electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 ; + skos:prefLabel "LowerCurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + :electrochemistry_7f073272_8925_4344_995c_a5a6dd1fcde6 a owl:Class ; rdfs:label "ChargingConstantCurrentPercentage"@en ; rdfs:comment "the percentage of the total charge capacity that is obtained during a constant current charge process"@en ; @@ -705,6 +724,20 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "DischargingSpecificCapacity"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "quotient of the capacity of a cell or battery [ or electrode or active material ] obtained during a discharge process by its mass."@en . +:electrochemistry_88dd2bce_fb17_4705_905d_892681812290 a owl:Class ; + rdfs:label "NumberOfIterations"@en ; + rdfs:comment "the number of times an iterative process should occur"@en ; + rdfs:subClassOf emmo:EMMO_ba882f34_0d71_4e4f_9d92_0c076c633a2c ; + skos:prefLabel "NumberOfIterations"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the number of times an iterative process should occur"@en . + +:electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100 a owl:Class ; + rdfs:label "NominalCapacity"@en ; + rdfs:comment "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en ; + rdfs:subClassOf :electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 ; + skos:prefLabel "NominalCapacity"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en . + :electrochemistry_8e943e12_ecc0_4093_899e_7226be6be7f2 a owl:Class ; rdfs:label "D90ParticleSize"@en ; rdfs:comment "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 90% of the sample's particles fall."@en ; @@ -820,6 +853,15 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the celsius temperature of the ambient environment"@en ; :electrochemistry_1b717a20_17e3_4480_8c60_c4ae94058f05 "Environmental_Temperature (C)"@en . +:electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f a owl:Class ; + rdfs:label "RealElectricImpedance"@en ; + rdfs:comment "the imaginary part of the complex electric impedance"@en ; + rdfs:subClassOf emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 ; + skos:altLabel "ACResistance"@en ; + skos:prefLabel "RealElectricImpedance"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q1048490"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the imaginary part of the complex electric impedance"@en . + :electrochemistry_ae108db7_8765_4329_9908_059277dee586 a owl:Class ; rdfs:label "StepCapacity"@en ; rdfs:comment "the amount of charge that has passed through an electrochemical device within the time interval of a given testing step"@en ; @@ -1084,8 +1126,8 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry ; dcterms:license "https://creativecommons.org/licenses/by/4.0/legalcode" ; owl:imports ; - owl:versionIRI ; - owl:versionInfo "0.17.0-beta" . + owl:versionIRI ; + owl:versionInfo "0.18.0-beta" . a owl:NamedIndividual, foaf:Person ; @@ -1866,6 +1908,8 @@ In either case, the magnitude of the catalytic current depends on the applied po emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electric potential of an ion-selective electrode (ISE) and activity of an analyte ion at which the potential of the ISE is independent of temperature"@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1351/goldbook.I03304"@en . +emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 :electrochemistry_097ea615_c209_4edd_a1a1_5eea71d98fe8 "acimp/ohms"@en . + emmo:EMMO_e218c625_6a39_47a9_8d08_a2ef41c152a9 rdfs:subClassOf :electrochemistry_02eb0465_4f94_453c_8c1f_5ddf80134634 ; skos:altLabel "GravimetricEnergyDensity"@en ; :electrochemistry_811aafc3_0c6d_470e_b67e_ff5c82992609 "CmpEng(mWh/g)"@en . @@ -1997,14 +2041,6 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog skos:prefLabel "TemperatureLimit"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the temperature of a system"@en . -:electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 a owl:Class ; - rdfs:label "RatedCapacity"@en ; - rdfs:comment "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en ; - rdfs:subClassOf :electrochemistry_791c1915_a791_4450_acd8_7f94764743b5 ; - skos:prefLabel "RatedCapacity"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-03-15"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en . - :electrochemistry_9ed7210c_c4fa_467b_822d_ba12f885bdf4 a owl:Class ; rdfs:label "ConcentrationOverpotential"@en ; rdfs:comment "The concentration overpotential of an electrode reaction at a given electrode current density (c.d.) is basically the difference in equilibrium potentials across the diffusion layer. More precisely, it is the potential of a reference electrode (of the same electrode reaction as the working electrode ) with the interfacial concentrations which establish themselves at c.d., relative to the potential of a similar reference electrode with the concentrations of the bulk solution. From such a measured potential difference, with c.d. flowing, one needs to subtract the ohmic potential drop prevailing between the two electrodes."@en, @@ -2110,6 +2146,14 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog skos:prefLabel "NumberOfFiniteVolumeCells"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "number of discrete finite volume cells in a grid or sub-grid"@en . +:electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 a owl:Class ; + rdfs:label "RatedCapacity"@en ; + rdfs:comment "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en ; + rdfs:subClassOf :electrochemistry_791c1915_a791_4450_acd8_7f94764743b5 ; + skos:prefLabel "RatedCapacity"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-03-15"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en . + :electrochemistry_cc519a19_b8d5_4e3f_b893_3a884888ad79 a owl:Class ; rdfs:label "MaximumTemperature"@en ; rdfs:comment "the maximum allowable temperature"@en ; @@ -2186,14 +2230,6 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa :electrochemistry_a07dd85b_d0df_4d5d_8b0c_14d20ea3fe45 "current"@en ; :electrochemistry_ea9f4dba_8ca2_419e_9cdf_ce54e9ebbd46 "Current (A)"@en . -:electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 a owl:Class ; - rdfs:label "CurrentLimit"@en ; - rdfs:comment "limit on the electric current of an electrical system"@en ; - rdfs:subClassOf emmo:EMMO_c995ae70_3b84_4ebb_bcfc_69e6a281bb88, - :electrochemistry_b395a244_3a75_4737_be38_981bfa1277fe ; - skos:prefLabel "CurrentLimit"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the electric current of an electrical system"@en . - :electrochemistry_900e357f_2ee3_425a_a0b6_322661117787 a owl:Class ; rdfs:label "ElectrochemicalProperty"@en ; rdfs:subClassOf emmo:EMMO_909415d1_7c43_4d5e_bbeb_7e1910159f66 ; @@ -2292,6 +2328,14 @@ foaf:Person a owl:Class ; emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Faradaic_current"@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://goldbook.iupac.org/terms/view/F02321"@en . +:electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 a owl:Class ; + rdfs:label "CurrentLimit"@en ; + rdfs:comment "limit on the electric current of an electrical system"@en ; + rdfs:subClassOf emmo:EMMO_c995ae70_3b84_4ebb_bcfc_69e6a281bb88, + :electrochemistry_b395a244_3a75_4737_be38_981bfa1277fe ; + skos:prefLabel "CurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the electric current of an electrical system"@en . + :electrochemistry_1cd1d777_e67b_47eb_81f1_edac35d9f2c6 a owl:Class ; rdfs:label "Overpotential"@en ; rdfs:comment "difference between the electrode potential with current flow, and the electrode potential without current flow, i.e. the equilibrium potential"@en, diff --git a/versions/0.15.0-beta/electrochemistry-inferred.ttl b/versions/0.15.0-beta/electrochemistry-inferred.ttl index f4fa0f9..c704a22 100644 --- a/versions/0.15.0-beta/electrochemistry-inferred.ttl +++ b/versions/0.15.0-beta/electrochemistry-inferred.ttl @@ -7,7 +7,7 @@ @base . rdf:type owl:Ontology ; - owl:versionIRI ; + owl:versionIRI ; ""@en , "CHAMEO is a domain ontology designed to model the common aspects across the different characterisation techniques and methodologies."@en , """Defines physical quantities in the International System of Quantities (ISQ). ISQ was made an official ISO standard in 2009 and is defined in the ISO/IEC 80000 standard. @@ -146,12 +146,12 @@ The symbolic module includes symbols, symbolic constructs and formal languages." "https://w3id.org/emmo/domain/characterisation-methodology/chameo" ; "2024-04-12" , "2024-06-23"^^xsd:date , - "2024-07-03"^^xsd:date ; + "2024-07-05"^^xsd:date ; "https://creativecommons.org/licenses/by/4.0/legalcode" , "https://creativecommons.org/licenses/by/4.0/legalcode"@en ; "2024-04-12" , "2024-06-23"^^xsd:date , - "2024-07-03"^^xsd:date ; + "2024-07-05"^^xsd:date ; "EMMC ASBL" , "EMMC ASBL"@en , """EMMC ASBL @@ -241,11 +241,11 @@ We kindly acknowledge NIST for reusing their content, including the selection of "You can contact EMMO Authors via emmo@emmc.eu"@en ; owl:backwardCompatibleWith "" , " " , - "0.16.0-beta" ; - owl:priorVersion "0.16.0-beta" , + "0.17.0-beta" ; + owl:priorVersion "0.17.0-beta" , "0.5.0-beta" , "1.0.0-beta2" ; - owl:versionInfo "0.17.0-beta" , + owl:versionInfo "0.18.0-beta" , "0.6.0-beta" , "1.0.0-beta3" , "1.0.0-beta7" ; @@ -2333,7 +2333,7 @@ While the EMMO FOL introduces the quantum causality relation C(x,y) as primitive rdf:type owl:ObjectProperty ; rdfs:subPropertyOf ; rdfs:domain ; - rdfs:range ; + rdfs:range ; "hasSolvent"@en . @@ -2364,7 +2364,7 @@ While the EMMO FOL introduces the quantum causality relation C(x,y) as primitive rdf:type owl:ObjectProperty ; rdfs:subPropertyOf ; rdfs:domain ; - rdfs:range ; + rdfs:range ; "hasSolute"@en . @@ -34532,7 +34532,7 @@ Wikipedia"""@en ; , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "ZincElectrode"@en ; "an electrode in which the main active material is zinc metal"@en ; @@ -34555,7 +34555,7 @@ Wikipedia"""@en ; rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "LithiumElectrode"@en ; "an electrode in which the active material is lithium metal" . @@ -44391,164 +44391,11 @@ Wear is defined as the progressive removal of the material from a solid surface "InChI=1S/Pb" . -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0139937b_2724_4864_84fb_f14bcfb83538 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0bdf0bb9_41fc_455d_af11_a249e24acdf6 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0f2f65a7_5cc4_4c86_a4d0_676771c646f1 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_250fa43e_1f26_4ed8_b787_91a2325a8e7b - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_25f6ff4c_53ad_4837_97c4_aa6f06099bb5 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_2a540939_3908_4f85_92f9_c46da7d4e9cb - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_2a87ca10_fc6a_4d61_b48c_d9790a566ee3 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_3899a9c9_9b34_443e_8ce6_0257589bb38a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_3ac62305_acd6_4312_9e31_4f824bd2530d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_4126ee09_b9c6_4694_bf33_0d8970e05f72 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_4c62d334_a124_40b3_9fd1_fe713d01a6af - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_5088ad54_b37d_4ee1_a086_d6c17e644f9a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_5cee19d2_f916_4264_a8ed_efed13a808d2 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_68c0876b_cb62_41cd_846d_95cc9d9a8733 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_68f9b85e_340f_46ec_96da_ebb6bd62f5fd - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_73d4606c_7460_4a5c_9413_793bdf35753e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_7dc738d6_74f2_489e_ae84_a6dbdf627f2e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_848003a2_71ee_4967_8039_354c907ec7f4 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_97439fbb_155f_433d_9edd_d510cd491f24 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_9bd78e1c_a4dc_41b6_8013_adb51df1ffdc - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_9da78aea_d436_40e2_a68f_c3dee32b825e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_aa8e9cc4_5f66_4307_b1c8_26fac7653a90 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_acdb232f_8041_4e11_8a11_5db2d2baae4d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_b01771a9_218a_4b01_b20f_4021cfa0b7d5 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_b3815a7f_f64a_48f6_b0ce_d0032578c699 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c109ca45_08c7_4436_a818_a9c575785e2f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c28a0967_ed23_48cc_a14e_a651d75a19db - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c5582dae_ccff_4fbe_adaa_078091054640 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c728b6b9_449a_45ff_b5ae_6b7968708f0d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_cd17ca33_ae3d_4738_8930_547673bf6c1f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_cdd18f0c_e7b3_4d09_b3dd_c09fe4b1adba - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_d53259a7_0d9c_48b9_a6c1_4418169df303 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_d673ceb2_3045_4e2e_8cad_56f5169b542f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_db74b6b7_09fc_40db_a7d5_6eb86b69192a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_dc5fb846_1824_40f8_9834_81f118aa1c2d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_dcdbdbed_2e20_40d1_a7a5_5761de7f0618 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_e1e6ff98_0725_4d27_ab21_2ca5a95371f0 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_e8fafdc8_6cd3_4dd0_9630_10ca8e3f1827 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_f3e7979a_e3ef_450a_8762_7d8778afe478 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_f7525766_90cf_43e9_8932_7cb3b14f676f - rdf:type owl:Class . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626 + rdf:type owl:Class ; + rdfs:subClassOf ; + "ImaginaryElectricImpedance"@en ; + "the imaginary part of the complex electric impedance"@en . ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_01260656_ac32_472e_9513_a607366538ec @@ -44872,11 +44719,11 @@ Wear is defined as the progressive removal of the material from a solid surface rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCLCOElectrode"@en ; @@ -45639,7 +45486,7 @@ and t* through mathematical models, provided that the long-time potential- deter , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LFPElectrode"@en ; @@ -46241,7 +46088,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "PtElectrode"@en ; "PlatinumElectrode"@en ; @@ -46343,7 +46190,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SiliconOxideGraphiteElectrode"@en ; @@ -46477,7 +46324,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "FTOElectrode"@en ; @@ -46500,7 +46347,7 @@ Aluminum foil"""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "NiOOHElectrode"@en , "NickelOxyhydroxideElectrode"@en ; @@ -46544,6 +46391,14 @@ Aluminum foil"""@en . "a coin case with a nominal diameter of 7.9 mm and a height of 1.65 mm"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b + rdf:type owl:Class ; + rdfs:subClassOf , + ; + "Resting"@en ; + "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 rdf:type owl:Class ; rdfs:subClassOf ; @@ -46811,6 +46666,13 @@ Aluminum foil"""@en . "A material relation in electrochemistry."@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45 + rdf:type owl:Class ; + rdfs:subClassOf ; + "UpperCurrentLimit"@en ; + "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3e54f9e3_a31d_4821_9bfb_ef953a42c35b rdf:type owl:Class ; rdfs:subClassOf , @@ -46981,7 +46843,7 @@ Aluminum foil"""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNMOElectrode"@en ; @@ -47201,11 +47063,11 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCLMOElectrode"@en ; @@ -47294,7 +47156,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumNickelPhosphateElectrode"@en ; @@ -47549,7 +47411,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumIronPhosphateElectrode"@en ; @@ -47904,7 +47766,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "CarbonMonofluorideElectrode"@en ; "electrode in which the active material is carbon monofluoride"@en ; @@ -48131,7 +47993,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "HardCarbonElectrode"@en ; "electrode in which the active material is hard carbon"@en . @@ -48291,7 +48153,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "SAE"@en ; "SolidAmalgamElectrode"@en ; @@ -48426,7 +48288,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LTOElectrode"@en ; @@ -48518,20 +48380,13 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ] . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "system that consists of at least two electron conductors (electrodes) in contact with ionic conductors (electrolytes)"@en ; - "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6fec8cc1_4e6c_428e_8343_6cf3c286a185 rdf:type owl:Class ; rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "AuElectrode"@en ; "GoldElectrode"@en ; @@ -48691,7 +48546,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NiOElectrode"@en ; @@ -48721,7 +48576,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "TiO2Electrode"@en ; @@ -48915,13 +48770,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ] . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "in secondary cells, the active material is restored to its original state during charge"@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - [ rdf:type owl:Axiom ; owl:annotatedSource ; owl:annotatedProperty ; @@ -48965,6 +48813,13 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s "an electrode in which the primary active material consists of caesium or caesium compounds"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea + rdf:type owl:Class ; + rdfs:subClassOf ; + "LowerCurrentLimit"@en ; + "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7f073272_8925_4344_995c_a5a6dd1fcde6 rdf:type owl:Class ; rdfs:subClassOf ; @@ -49118,7 +48973,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "LiquidGalliumElectrode"@en ; "a liquid electrode with an active material of gallium"@en . @@ -49188,7 +49043,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "ZnOElectrode"@en ; @@ -49446,6 +49301,13 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "an electrode in which the primary active material consists of sulfur or sulfur compounds"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_88dd2bce_fb17_4705_905d_892681812290 + rdf:type owl:Class ; + rdfs:subClassOf ; + "NumberOfIterations"@en ; + "the number of times an iterative process should occur"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8968eb7a_9a65_4286_a596_c31b998df329 rdf:type owl:Class ; rdfs:subClassOf ; @@ -49504,6 +49366,13 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "substance that increases chemical reaction speed, and which is conserved after the reaction"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100 + rdf:type owl:Class ; + rdfs:subClassOf ; + "NominalCapacity"@en ; + "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8b40856f_1ca2_4137_9616_7fb624671909 rdf:type owl:Class ; rdfs:subClassOf , @@ -50109,7 +49978,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumCobaltPhosphateElectrode"@en ; @@ -50298,13 +50167,6 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; "plate in which the active material is applied as a paste to a conductive current collector"@en . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "plate in which the active material is applied as a paste to a conductive current collector"@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a24f8581_a5a4_41a4_bb45_d0fdd5c0d810 rdf:type owl:Class ; @@ -50397,7 +50259,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "SilverOxideElectrode"@en ; "an electrode in which the primary active material consists of manganese dioxide or vmanganese dioxide compounds"@en ; @@ -50427,7 +50289,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "AgElectrode"@en ; "SilverElectrode"@en ; @@ -50662,7 +50524,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "CupricOxideElectrode"@en ; "CopperOxideElectrode"@en ; @@ -50751,6 +50613,15 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "Environmental_Temperature (C)"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f + rdf:type owl:Class ; + rdfs:subClassOf ; + "ACResistance"@en ; + "RealElectricImpedance"@en ; + "https://www.wikidata.org/wiki/Q1048490"@en ; + "the imaginary part of the complex electric impedance"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abfadc99_6e43_4d37_9b04_7fc5b0f327ae rdf:type owl:Class ; rdfs:subClassOf , @@ -50782,7 +50653,8 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e rdf:type owl:Class ; rdfs:subClassOf ; - "CCCVCycling"@en ; + "CCCVCycling"@en ; + "ConstantCurrentConstantVoltageCycling"@en ; "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en . @@ -51030,7 +50902,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCElectrode"@en ; @@ -51360,11 +51232,11 @@ of other configurations are used."""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNMOLFPElectrode"@en ; @@ -51466,13 +51338,6 @@ of other configurations are used."""@en . "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; "https://en.wikipedia.org/wiki/Fuel_cell"@en . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_bea04148_10d9_4eda_9cd5_8f609d7e9ff8 rdf:type owl:Class ; @@ -51568,7 +51433,7 @@ of other configurations are used."""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LMOElectrode"@en ; @@ -51751,11 +51616,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "ITO"@en ; @@ -51809,7 +51674,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "GraphiteElectrode"@en ; "electrode in which the active material is graphite"@en . @@ -51928,7 +51793,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "MnO2Electrode"@en ; "ManganeseDioxideElectrode"@en ; @@ -51943,7 +51808,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNOElectrode"@en ; @@ -51963,7 +51828,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "IrO2Electrode"@en ; @@ -51977,7 +51842,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumManganesePhosphateElectrode"@en ; @@ -52146,7 +52011,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "IronDisulfideElectrode"@en ; "an electrode in which the primary active material consists of iron disulfide or iron disulfide compounds."@en ; @@ -52509,7 +52374,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "HgElectrode"@en ; "MercuryElectrode"@en ; @@ -52785,11 +52650,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SiliconGraphiteElectrode"@en ; @@ -52802,7 +52667,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumManganeseOxideElectrode"@en ; @@ -53004,7 +52869,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumCobaltOxideElectrode"@en ; @@ -53096,7 +52961,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NCAElectrode"@en ; @@ -53315,7 +53180,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "PbOElectrode"@en ; @@ -53401,7 +53266,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumChromiumOxideElectrode"@en ; @@ -53621,7 +53486,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LCOElectrode"@en ; @@ -53672,11 +53537,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LMOLFPElectrode"@en ; @@ -53808,10 +53673,10 @@ In either case, the magnitude of the catalytic current depends on the applied po "The universe is considered as a causally self-connected object, encompassing all other objects. For this reason is unique."@en . -[ owl:qualifiedCardinality "3"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "3"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "4"^^xsd:nonNegativeInteger @@ -53835,10 +53700,10 @@ In either case, the magnitude of the catalytic current depends on the applied po [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:minQualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:minQualifiedCardinality "2"^^xsd:nonNegativeInteger +[ owl:minQualifiedCardinality "1"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger @@ -53850,7 +53715,7 @@ In either case, the magnitude of the catalytic current depends on the applied po [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:minQualifiedCardinality "2"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger diff --git a/versions/0.15.0-beta/electrochemistry.ttl b/versions/0.15.0-beta/electrochemistry.ttl index baa1206..d442e3c 100644 --- a/versions/0.15.0-beta/electrochemistry.ttl +++ b/versions/0.15.0-beta/electrochemistry.ttl @@ -1,6 +1,6 @@ @prefix : . @prefix bibo: . -@prefix chemsub: . +@prefix chemsub: . @prefix dcterms: . @prefix emmo: . @prefix foaf: . @@ -54,9 +54,9 @@ schema:name a owl:AnnotationProperty . dcterms:created "2022-11-25"^^xsd:date ; dcterms:creator , ; - dcterms:issued "2024-07-03"^^xsd:date ; + dcterms:issued "2024-07-05"^^xsd:date ; dcterms:license "https://creativecommons.org/licenses/by/4.0/legalcode" ; - dcterms:modified "2024-07-03"^^xsd:date ; + dcterms:modified "2024-07-05"^^xsd:date ; dcterms:publisher "EMMO" ; dcterms:source , , @@ -67,13 +67,13 @@ schema:name a owl:AnnotationProperty . bibo:status "unstable" ; vann:preferredNamespacePrefix "echem" ; vann:preferredNamespaceUri "https://w3id.org/emmo/domain/electrochemistry" ; - owl:backwardCompatibleWith "0.16.0-beta" ; + owl:backwardCompatibleWith "0.17.0-beta" ; owl:imports , , - ; - owl:priorVersion "0.16.0-beta" ; - owl:versionIRI ; - owl:versionInfo "0.17.0-beta" ; + ; + owl:priorVersion "0.17.0-beta" ; + owl:versionIRI ; + owl:versionInfo "0.18.0-beta" ; foaf:logo "https://raw.githubusercontent.com/emmo-repo/domain-electrochemistry/gh-pages/assets/img/fig/png/domain-electrochemistry-logo.png" . :electrochemistry_027d437e_3bbf_4eda_940b_e509f8d2b993 a owl:Class ; @@ -535,6 +535,14 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "R716" ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a coin case with a nominal diameter of 7.9 mm and a height of 1.65 mm"@en . +:electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b a owl:Class ; + rdfs:label "Resting"@en ; + rdfs:comment "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en ; + rdfs:subClassOf , + :electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 ; + skos:prefLabel "Resting"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en . + :electrochemistry_36444184_1100_4271_869f_7f2d983aaecb a owl:Class ; rdfs:label "P45173115" ; rdfs:comment "a prismatic case with a nominal length of 45 mm, width of 173 mm, and height of 115 mm"@en ; @@ -1564,6 +1572,15 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "TinBasedElectrode"@en ; emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "an electrode in which the primary active material consists of tin or tin compounds"@en . +:electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c a owl:Class ; + rdfs:label "PastedPlate"@en ; + rdfs:comment "plate in which the active material is applied as a paste to a conductive current collector"@en ; + rdfs:subClassOf :electrochemistry_92147e31_d015_4889_a092_04fbab033f15 ; + skos:altLabel "PastedElectrode"@en ; + skos:prefLabel "PastedPlate"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "plate in which the active material is applied as a paste to a conductive current collector"@en . + :electrochemistry_a277e420_2483_44d5_a2bc_4e421dea231a a owl:Class ; rdfs:label "R926" ; rdfs:comment "a coin case with a nominal diameter of 9.5 mm and a height of 2.6 mm"@en ; @@ -1658,10 +1675,11 @@ schema:name a owl:AnnotationProperty . emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a coin case with a nominal diameter of 11.6 mm and a height of 4.2 mm"@en . :electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e a owl:Class ; - rdfs:label "CCCVCycling"@en ; + rdfs:label "ConstantCurrentConstantVoltageCycling"@en ; rdfs:comment "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en ; rdfs:subClassOf :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; - skos:prefLabel "CCCVCycling"@en ; + skos:altLabel "CCCVCycling"@en ; + skos:prefLabel "ConstantCurrentConstantVoltageCycling"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en . :electrochemistry_ad9cdad6_66e8_471e_a7c6_b79f37c20814 a owl:Class ; @@ -1783,6 +1801,17 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "P20100141" ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a prismatic case with a nominal length of 20 mm, width of 100 mm, and height of 141 mm"@en . +:electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d a owl:Class ; + rdfs:label "FuelCell"@en ; + rdfs:comment "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; + rdfs:subClassOf :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; + skos:prefLabel "FuelCell"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q180253"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-05"@en ; + emmo:EMMO_6dd685dd_1895_46e4_b227_be9f7d643c25 "https://dbpedia.org/page/Fuel_cell"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; + emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Fuel_cell"@en . + :electrochemistry_bea04148_10d9_4eda_9cd5_8f609d7e9ff8 a owl:Class ; rdfs:label "CelsiusTemperatureMeasurement"@en ; rdfs:comment "measurement of temperature"@en ; @@ -3335,15 +3364,6 @@ schema:name a owl:AnnotationProperty . "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-26"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "interface between an electrolyte and an electrode where an electrode reaction takes place."@en . -:electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c a owl:Class ; - rdfs:label "PastedPlate"@en ; - rdfs:comment "plate in which the active material is applied as a paste to a conductive current collector"@en ; - rdfs:subClassOf :electrochemistry_92147e31_d015_4889_a092_04fbab033f15 ; - skos:altLabel "PastedElectrode"@en ; - skos:prefLabel "PastedPlate"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "plate in which the active material is applied as a paste to a conductive current collector"@en . - :electrochemistry_a462859d_d8bd_48ea_8bde_1576f1248a1e a owl:Class ; rdfs:label "SilverElectrode"@en ; rdfs:comment "electrode in the form of foil, mesh, wire, rod, tube, powder, pellets, or single crystal of silver"@en ; @@ -3459,17 +3479,6 @@ of other configurations are used."""@en . emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-19"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "part which insures insulation between the plate (electrode) edges and adjacent plates (electrodes) and the container side walls"@en . -:electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d a owl:Class ; - rdfs:label "FuelCell"@en ; - rdfs:comment "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - rdfs:subClassOf :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; - skos:prefLabel "FuelCell"@en ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q180253"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-05"@en ; - emmo:EMMO_6dd685dd_1895_46e4_b227_be9f7d643c25 "https://dbpedia.org/page/Fuel_cell"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Fuel_cell"@en . - :electrochemistry_bed5b5f9_b89d_45e3_a8c2_81b70ae21847 a owl:Class ; rdfs:label "SeriesParallelConnection"@en ; rdfs:comment "arrangement of cells or batteries wherein in series connected cells or batteries are connected in parallel."@en ; @@ -4518,15 +4527,20 @@ schema:Person a owl:Class ; skos:prefLabel "BimetallicOxideElectrode"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "an electrode consisting of two metal oxide active materials"@en . -:electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 a owl:Class ; - rdfs:label "GalvanostaticProcess"@en ; - rdfs:comment "a process in which the electric current is kept constant"@en ; - rdfs:subClassOf [ a owl:Restriction ; - owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; - owl:someValuesFrom :electrochemistry_22725105_c941_4b14_a4a2_fcb627958607 ], - :electrochemistry_5548f188_df00_4c05_ae98_7846e92efe36 ; - skos:prefLabel "GalvanostaticProcess"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a process in which the electric current is kept constant"@en . +:electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 a owl:Class ; + rdfs:label "ActiveMaterial"@en ; + rdfs:comment "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; + rdfs:subClassOf :electrochemistry_b5ea31c9_bb10_4276_980e_c3eceb1efc82, + :electrochemistry_ebdb68e9_c4b5_4d57_a042_c0f51d446755 ; + skos:altLabel "ActiveElectrochemicalMaterial"@en, + "ElectrochemicallyActiveMaterial"@en ; + skos:prefLabel "ActiveMaterial"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q120907375" ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-33", + "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-14"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; + emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "material which reacts chemically to produce electric energy when the cell discharges", + "in secondary cells, the active material is restored to its original state during charge"@en . :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 a owl:Class ; rdfs:label "PotentiometricStrippingAnalysis"@en ; @@ -4601,20 +4615,15 @@ schema:Person a owl:Class ; "The electrode (or interfacial) reaction involves all the processes (chemical reaction, structural reorganization, adsorption) accompanying the charge transfer step."@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1351/goldbook.E01960"@en . -:electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 a owl:Class ; - rdfs:label "ActiveMaterial"@en ; - rdfs:comment "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; - rdfs:subClassOf :electrochemistry_b5ea31c9_bb10_4276_980e_c3eceb1efc82, - :electrochemistry_ebdb68e9_c4b5_4d57_a042_c0f51d446755 ; - skos:altLabel "ActiveElectrochemicalMaterial"@en, - "ElectrochemicallyActiveMaterial"@en ; - skos:prefLabel "ActiveMaterial"@en ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q120907375" ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-33", - "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-14"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "material which reacts chemically to produce electric energy when the cell discharges", - "in secondary cells, the active material is restored to its original state during charge"@en . +:electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 a owl:Class ; + rdfs:label "GalvanostaticProcess"@en ; + rdfs:comment "a process in which the electric current is kept constant"@en ; + rdfs:subClassOf [ a owl:Restriction ; + owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; + owl:someValuesFrom :electrochemistry_22725105_c941_4b14_a4a2_fcb627958607 ], + :electrochemistry_5548f188_df00_4c05_ae98_7846e92efe36 ; + skos:prefLabel "GalvanostaticProcess"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a process in which the electric current is kept constant"@en . :electrochemistry_8a1c9a7b_978c_4421_a9c1_d0b07b42aab9 a owl:Class ; rdfs:label "ChemicalReaction"@en ; @@ -4953,9 +4962,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "extremely resistant to many chemicals, impermeable to gases and liquids, and has good electrical conductivity, high hardness and strength, and biocompatibility"@en . + owl:annotatedTarget "electrode made of glassy carbon material with an intertwined graphitic ribbon structure, formed by pyrolysis of a resol precursor at temperatures up to 3000 °C"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -4976,28 +4985,22 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "A disc electrode that is embedded in the centre of a cylinder which rotates in solution around the longitudinal cylinder axis."@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "composite system in which the supplied electric energy mainly produces chemical reactions or, conversely, in which the energy released by chemical reactions is mainly delivered by the system as electric energy"@en . + owl:annotatedTarget "a system containing two electrodes that allow transport of electrons, separated by an electrolyte that allows movement of ions but blocks movement of electrons."@en . [] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "system that consists of at least two electron conductors (electrodes) in contact with ionic conductors (electrolytes)"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" . + owl:annotatedTarget "composite system in which the supplied electric energy mainly produces chemical reactions or, conversely, in which the energy released by chemical reactions is mainly delivered by the system as electric energy"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "glassy carbon combines glass-like mechanical characteristics with physical properties similar to graphite, owing to its “graphene ribbon” structure"@en . - -[] a owl:Axiom ; - dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "a system containing two electrodes that allow transport of electrons, separated by an electrolyte that allows movement of ions but blocks movement of electrons."@en . + owl:annotatedTarget "extremely resistant to many chemicals, impermeable to gases and liquids, and has good electrical conductivity, high hardness and strength, and biocompatibility"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5033,13 +5036,13 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "one of the most frequently used working electrodes"@en . + owl:annotatedTarget "glassy carbon combines glass-like mechanical characteristics with physical properties similar to graphite, owing to its “graphene ribbon” structure"@en . [] a owl:Axiom ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; - owl:annotatedTarget "in secondary cells, the active material is restored to its original state during charge"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedTarget "material that is oxidized or reduced at an electrode in an electrochemical cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5047,12 +5050,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; owl:annotatedTarget "material which reacts chemically to produce electric energy when the cell discharges" . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; - owl:annotatedTarget "material that is oxidized or reduced at an electrode in an electrochemical cell"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5061,9 +5058,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "electrode made of glassy carbon material with an intertwined graphitic ribbon structure, formed by pyrolysis of a resol precursor at temperatures up to 3000 °C"@en . + owl:annotatedTarget "one of the most frequently used working electrodes"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5083,18 +5080,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_83f2b1e9_cb67_4dbf_977f_ba54bbae374f ; owl:annotatedTarget "charge during which the electric current is maintained at a constant value regardless of the battery voltage or temperature"@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; - owl:annotatedTarget "Electrolyte solution in the anodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the anode is placed."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; owl:annotatedTarget "electrolyte on the anode side of an electrochemical cell that is divided into compartments"@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; + owl:annotatedTarget "Electrolyte solution in the anodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the anode is placed."@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5133,15 +5130,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_8d3bf304_78e4_4e99_abe1_6ab429e44ed1 ; - owl:annotatedTarget "a sealed cell may be equipped with a safety device to prevent a dangerously high internal pressure and is designed to operate during its life in its original sealed state"@en . + owl:annotatedTarget "cell which remains closed and does not release either gas or liquid when operated within the limits specified by the manufacturer"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_8d3bf304_78e4_4e99_abe1_6ab429e44ed1 ; - owl:annotatedTarget "cell which remains closed and does not release either gas or liquid when operated within the limits specified by the manufacturer"@en . + owl:annotatedTarget "a sealed cell may be equipped with a safety device to prevent a dangerously high internal pressure and is designed to operate during its life in its original sealed state"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5150,10 +5147,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "capacitor consisting of a metallic plate as first conductor, a very thin oxide film formed on the metal as the dielectric and an electrolyte as second conductor"@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_06d8e1ee_924a_4915_998d_33a69f41dadc ; - owl:annotatedTarget "operation during which an electrochemical cell supplies electric energy as the result of chemical changes within the cell"@en . + owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; + owl:annotatedTarget "two-step electrochemical measurement in which 1) material is accumulated at an electrode and 2) the material is removed by chemical reaction or electrochemically at constant current with measurement of electrode potential"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5161,6 +5158,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; owl:annotatedTarget "historically for the analysis of metal ions, mercury ions were added to the test solution to form a mercury amalgam when reduced. Alternatively, an HMDE or MFE was used and the oxidizing agent added after amalgam formation. However, the toxicity of mercury and its compounds have all but precluded the present-day use of mercury"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_06d8e1ee_924a_4915_998d_33a69f41dadc ; + owl:annotatedTarget "operation during which an electrochemical cell supplies electric energy as the result of chemical changes within the cell"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5179,12 +5182,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; owl:annotatedTarget "the time between changes in potential in step 2 is related to the concentration of analyte in the solution"@en . -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; - owl:annotatedTarget "two-step electrochemical measurement in which 1) material is accumulated at an electrode and 2) the material is removed by chemical reaction or electrochemically at constant current with measurement of electrode potential"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5211,15 +5208,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_9ee6e728_e8f5_4b36_a045_d63da69dfc85 ; - owl:annotatedTarget "overcharge is also the act of charging beyond a certain limit specified by the manufacturer"@en . + owl:annotatedTarget "continued charging of a fully charged secondary cell or battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_9ee6e728_e8f5_4b36_a045_d63da69dfc85 ; - owl:annotatedTarget "continued charging of a fully charged secondary cell or battery"@en . + owl:annotatedTarget "overcharge is also the act of charging beyond a certain limit specified by the manufacturer"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5227,6 +5224,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_9f466223_e20a_474d_ac4d_6d4b6131c275 ; owl:annotatedTarget "an electrode that holds its potential essentially constant by efficiently allowing electric current to pass"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_a0580fa9_5073_44af_b33e_7adbc83892d0 ; + owl:annotatedTarget "electrode reaction in which oxidation occurs at the anode"@en . + [] a owl:Axiom ; dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5242,14 +5245,14 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0580fa9_5073_44af_b33e_7adbc83892d0 ; - owl:annotatedTarget "electrode reaction in which oxidation occurs at the anode"@en . + owl:annotatedSource :electrochemistry_a0a619d7_da95_41f0_8bc3_9c19d636d543 ; + owl:annotatedTarget "electrode that serves only as a source or sink for electrons without playing a chemical role in the electrode reaction"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0a619d7_da95_41f0_8bc3_9c19d636d543 ; - owl:annotatedTarget "electrode that serves only as a source or sink for electrons without playing a chemical role in the electrode reaction"@en . + owl:annotatedSource :electrochemistry_a0fcb105_587f_45d8_a89a_46dc8f745069 ; + owl:annotatedTarget "partial or complete external covering of a cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5260,14 +5263,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0fcb105_587f_45d8_a89a_46dc8f745069 ; - owl:annotatedTarget "partial or complete external covering of a cell"@en . - -[] a owl:Axiom ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c ; - owl:annotatedTarget "plate in which the active material is applied as a paste to a conductive current collector"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedSource :electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e ; + owl:annotatedTarget "process inside an electrolytic cell used to coat a conductive object with a layer of a material"@en . [] a owl:Axiom ; dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; @@ -5278,8 +5275,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e ; - owl:annotatedTarget "process inside an electrolytic cell used to coat a conductive object with a layer of a material"@en . + owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; + owl:annotatedTarget "component of a cell which permits the flow of gas in one direction only"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5287,12 +5284,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; owl:annotatedTarget "a valve has a characteristic venting or opening and closing pressure"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; - owl:annotatedTarget "component of a cell which permits the flow of gas in one direction only"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5305,6 +5296,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a462859d_d8bd_48ea_8bde_1576f1248a1e ; owl:annotatedTarget "electrode in the form of foil, mesh, wire, rod, tube, powder, pellets, or single crystal of silver"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; + owl:annotatedTarget "a chemical reaction in an electrolyte involving a transfer of electrons between chemical components or between chemical components and an electrode"@en . + [] a owl:Axiom ; dcterms:source "Bockris, J. O'M. and Despić, . Aleksandar R. (2011, December 15). Electrochemical reaction. Encyclopedia Britannica. https://www.britannica.com/science/electrochemical-reaction" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5317,12 +5314,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; owl:annotatedTarget "the electrode reaction can also involve other chemical reactions including subreactions on a cell electrode"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; - owl:annotatedTarget "a chemical reaction in an electrolyte involving a transfer of electrons between chemical components or between chemical components and an electrode"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5355,15 +5346,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_ae56cce3_7a7c_4e53_bb58_31e0d642d47e ; - owl:annotatedTarget "this flame front may originate from a spark or an external naked flame igniting combustible electrolysis gas"@en . + owl:annotatedTarget "vent of special design which provides protection against the propagation of a flame front from or into the interior of a secondary cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_ae56cce3_7a7c_4e53_bb58_31e0d642d47e ; - owl:annotatedTarget "vent of special design which provides protection against the propagation of a flame front from or into the interior of a secondary cell"@en . + owl:annotatedTarget "this flame front may originate from a spark or an external naked flame igniting combustible electrolysis gas"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5395,6 +5386,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_b525a629_a679_464f_bc5b_b49d2fc82686 ; owl:annotatedTarget "an electrochemical cell for conductivity measurements"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; + owl:annotatedTarget "by convention, cell electrode at which an oxidation reaction occurs"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5419,12 +5416,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; owl:annotatedTarget "the concepts of “anode” and “cathode” are related only to the direction of electron flow, not to the polarity of the electrodes"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; - owl:annotatedTarget "by convention, cell electrode at which an oxidation reaction occurs"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5433,15 +5424,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_b79d4f9e_5727_4895_8d7f_5fc18d83eb90 ; - owl:annotatedTarget "in a galvanic cell, parasitic reactions may cause inefficiencies or loss of performance"@en . + owl:annotatedTarget "an unwanted side reaction"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_b79d4f9e_5727_4895_8d7f_5fc18d83eb90 ; - owl:annotatedTarget "an unwanted side reaction"@en . + owl:annotatedTarget "in a galvanic cell, parasitic reactions may cause inefficiencies or loss of performance"@en . [] a owl:Axiom ; dcterms:source "IEEE Standard Glossary of Stationary Battery Terminology (2016), https://doi.org/10.1109/IEEESTD.2016.7552407" ; @@ -5481,12 +5472,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_bbae1ef4_0a95_4e7d_9932_1bf939129eef ; owl:annotatedTarget "current-potential curve in a voltammetry experiment"@en . -[] a owl:Axiom ; - dcterms:source "https://en.wikipedia.org/wiki/Square_wave" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0e33278b_639f_412d_9abd_64c3790026ef ; - owl:annotatedTarget "Periodic potential where the amplitude alternates at a steady frequency between fixed minimum and maximum values, with the same duration at minimum and maximum."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5500,10 +5485,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "part which insures insulation between the plate (electrode) edges and adjacent plates (electrodes) and the container side walls"@en . [] a owl:Axiom ; + dcterms:source "https://en.wikipedia.org/wiki/Square_wave" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d ; - owl:annotatedTarget "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedSource :electrochemistry_0e33278b_639f_412d_9abd_64c3790026ef ; + owl:annotatedTarget "Periodic potential where the amplitude alternates at a steady frequency between fixed minimum and maximum values, with the same duration at minimum and maximum."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5535,12 +5520,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_c3f4b34a_0e2c_46f3_baab_4ebd2682d26f ; owl:annotatedTarget "An ionic liquid is an electrolyte composed of a salt that is liquid below 100 °C. Ionic liquids have found uses in electrochemical analysis, because their unconventional properties include a negligible vapor pressure, a high thermal and electrochemical stability, and exceptional dissolution properties for both organic and inorganic chemical species."@en . -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; - owl:annotatedTarget "Electron conductor in an electrochemical cell connected to the external circuit."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5553,6 +5532,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_c55ec02c_b727_4df1_97ce_91d7bb5d5e91 ; owl:annotatedTarget "unplanned escape of electrolyte, gas or other material from a cell or battery"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_c610d869_cc03_44f0_b40d_ca86e945b9c9 ; + owl:annotatedTarget "cell from which electrolyte cannot escape regardless of its orientation"@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5562,8 +5547,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_c610d869_cc03_44f0_b40d_ca86e945b9c9 ; - owl:annotatedTarget "cell from which electrolyte cannot escape regardless of its orientation"@en . + owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; + owl:annotatedTarget "electronically conductive part in electric contact with a medium of lower electronic conductivity and intended to perform one or more of the functions of emitting charge carriers to or receiving charge carriers from that medium or to establish an electric field in that medium"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5579,21 +5564,21 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; - owl:annotatedTarget "by convention, an oxidation reaction occurs during discharge"@en . + owl:annotatedTarget "for a device having two electrodes, that electrode having the lower electric potential"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; - owl:annotatedTarget "electronically conductive part in electric contact with a medium of lower electronic conductivity and intended to perform one or more of the functions of emitting charge carriers to or receiving charge carriers from that medium or to establish an electric field in that medium"@en . + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; + owl:annotatedTarget "by convention, an oxidation reaction occurs during discharge"@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; - owl:annotatedTarget "for a device having two electrodes, that electrode having the lower electric potential"@en . + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; + owl:annotatedTarget "Electron conductor in an electrochemical cell connected to the external circuit."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5604,8 +5589,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0f827b54_370d_4c63_99a6_80f13b24e55e ; - owl:annotatedTarget "evolution of gas resulting from electrolysis of the water in the electrolyte of a cell"@en . + owl:annotatedSource :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; + owl:annotatedTarget "set of operations that is carried out on a secondary cell or battery and is repeated regularly in the same sequence."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5622,14 +5607,14 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; - owl:annotatedTarget "set of operations that is carried out on a secondary cell or battery and is repeated regularly in the same sequence."@en . + owl:annotatedSource :electrochemistry_d5da9948_e95b_4f12_a2d2_10a48f390c52 ; + owl:annotatedTarget "arrangement of cells or batteries wherein parallel connected cells or batteries are connected in series."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_d5da9948_e95b_4f12_a2d2_10a48f390c52 ; - owl:annotatedTarget "arrangement of cells or batteries wherein parallel connected cells or batteries are connected in series."@en . + owl:annotatedSource :electrochemistry_0f827b54_370d_4c63_99a6_80f13b24e55e ; + owl:annotatedTarget "evolution of gas resulting from electrolysis of the water in the electrolyte of a cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5655,18 +5640,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_df78745e_f9db_4830_88f0_8ce074fcb8ff ; owl:annotatedTarget "liquid metal electrode used in polarography"@en . +[] a owl:Axiom ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; + owl:annotatedTarget "electrochemical cell in which chemical reactions occur spontaneously and chemical energy is converted into electrical energy."@en . + [] a owl:Axiom ; dcterms:references "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; owl:annotatedTarget "An electrochemical cell that spontaneously produces work."@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_113e0469_8ae0_407f_892d_4b988f8d8a08 ; - owl:annotatedTarget "electrochemical cell that has two half-cells separated by a wall permeable to ions, both containing the same electrolyte differing only in their temperatures."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5674,16 +5659,22 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "Electrochemical cell intended to produce electric energy."@en . [] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; - owl:annotatedTarget "electrochemical cell in which chemical reactions occur spontaneously and chemical energy is converted into electrical energy."@en . + owl:annotatedSource :electrochemistry_e2a1dae1_05e4_4bd1_a39d_0eb10db482bc ; + owl:annotatedTarget "method of separating and neutralizing ions by an electric current in an electrolytic cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e2a1dae1_05e4_4bd1_a39d_0eb10db482bc ; - owl:annotatedTarget "method of separating and neutralizing ions by an electric current in an electrolytic cell"@en . + owl:annotatedSource :electrochemistry_113e0469_8ae0_407f_892d_4b988f8d8a08 ; + owl:annotatedTarget "electrochemical cell that has two half-cells separated by a wall permeable to ions, both containing the same electrolyte differing only in their temperatures."@en . + +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; + owl:annotatedTarget "electrochemical cell intended to produce chemical reactions"@en . [] a owl:Axiom ; dcterms:references "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; @@ -5697,18 +5688,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; owl:annotatedTarget "Electrochemical cell in which electrical energy is converted into chemical energy."@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; - owl:annotatedTarget "electrochemical cell intended to produce chemical reactions"@en . - -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_1152ae6b_8b57_4d99_912e_40c6a29342fb ; - owl:annotatedTarget "mass m of electrochemically-transformed substance is proportional to the charge Q passed, m ∝ Q."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5721,6 +5700,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_ec1dce8b_bb46_41a9_b532_6bed381aa557 ; owl:annotatedTarget "secondary cell having a cover provided with an opening through which products of electrolysis and evaporation are allowed to escape freely from the cell to the atmosphere"@en . +[] a owl:Axiom ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_1152ae6b_8b57_4d99_912e_40c6a29342fb ; + owl:annotatedTarget "mass m of electrochemically-transformed substance is proportional to the charge Q passed, m ∝ Q."@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5739,12 +5724,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f0c24970_4c14_4207_bd78_5f2181a67085 ; owl:annotatedTarget "the process of forming a film or a bulk material using an electrochemical process where the electrons are supplied by an external power supply"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_1355816f_a2b5_4800_8001_fc888f5d6b1b ; - owl:annotatedTarget "instrument intended to measure the value of a voltage."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5757,6 +5736,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f47611a2_e081_47f0_b287_3fda5f706154 ; owl:annotatedTarget "chemical reaction which occurs in addition to the main process"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; + owl:annotatedTarget "electrode reaction in which reduction occurs at the cathode"@en . + +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_1355816f_a2b5_4800_8001_fc888f5d6b1b ; + owl:annotatedTarget "instrument intended to measure the value of a voltage."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5769,12 +5760,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; owl:annotatedTarget "electrode reaction, where the energy of electrons in the working electrode is higher than the LUMO orbital of the substrate"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; - owl:annotatedTarget "electrode reaction in which reduction occurs at the cathode"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5782,10 +5767,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "electrode that responds to one, or more than one, species in the solution being investigated, with no appreciable change of bulk solution composition during the measurement"@en . [] a owl:Axiom ; - dcterms:source "IUPAC. Compendium of Chemical Terminology, 2nd ed. (the \"Gold Book\"). Compiled by A. D. McNaught and A. Wilkinson. Blackwell Scientific Publications, Oxford (1997). Online version (2019-) created by S. J. Chalk. ISBN 0-9678550-9-8. https://doi.org/10.1351/goldbook." ; + dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_15325775_6d4c_4192_82f1_e4feca9de426 ; - owl:annotatedTarget "A membrane having ion-exchange groups:"@en . + owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; + owl:annotatedTarget "a material in which the mobile species are ions and free movement of electrons is blocked."@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5799,18 +5784,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; owl:annotatedTarget "liquid or solid substance containing mobile ions that render it conductive"@en . +[] a owl:Axiom ; + dcterms:source "IUPAC. Compendium of Chemical Terminology, 2nd ed. (the \"Gold Book\"). Compiled by A. D. McNaught and A. Wilkinson. Blackwell Scientific Publications, Oxford (1997). Online version (2019-) created by S. J. Chalk. ISBN 0-9678550-9-8. https://doi.org/10.1351/goldbook." ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_15325775_6d4c_4192_82f1_e4feca9de426 ; + owl:annotatedTarget "A membrane having ion-exchange groups:"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; owl:annotatedTarget "substance that provides ions on dissolution in a solvent or on melting"@en . -[] a owl:Axiom ; - dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; - owl:annotatedTarget "a material in which the mobile species are ions and free movement of electrons is blocked."@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5823,18 +5808,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_fb9bf7cb_dd4b_4391_99a1_628263dd6940 ; owl:annotatedTarget "measuring instrument to obtain the electrical charge passed in an experiment, or to produce a known amount of substance in a titration."@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; - owl:annotatedTarget "Electrolyte solution in the cathodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the cathode is placed."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; owl:annotatedTarget "electrolyte on the cathode side of an electrochemical cell that is divided into compartments."@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; + owl:annotatedTarget "Electrolyte solution in the cathodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the cathode is placed."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5931,18 +5916,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_2d32a81a_2148_41bd_84fb_467aa8de4a8f ; owl:annotatedTarget "foil, wire, disc, or mesh electrode made of platinum, which is the most commonly used metallic working electrode in electrochemistry"@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; - owl:annotatedTarget "An interfacial reaction that necessarily involves a charge-transfer step."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; owl:annotatedTarget "electrochemical reaction involving the transfer of electrons between electrolyte and electrode"@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; + owl:annotatedTarget "An interfacial reaction that necessarily involves a charge-transfer step."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5957,15 +5942,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_328c6e36_3706_4d92_abae_432fa3adb2a0 ; - owl:annotatedTarget "a cell baffle has a second function in protecting the plate pack from damage by objects inserted through the filling hole"@en . + owl:annotatedTarget "internal component used to reduce the amount of electrolyte loss due to electrolyte spray being carried in the gas and/or by electrolyte movement"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_328c6e36_3706_4d92_abae_432fa3adb2a0 ; - owl:annotatedTarget "internal component used to reduce the amount of electrolyte loss due to electrolyte spray being carried in the gas and/or by electrolyte movement"@en . + owl:annotatedTarget "a cell baffle has a second function in protecting the plate pack from damage by objects inserted through the filling hole"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5979,6 +5964,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_34bc54e3_de4c_41f8_8d3a_d77c951ee23a ; owl:annotatedTarget "needle-like or tree-like formation of crystalline growth formed during deposition of a material"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; + owl:annotatedTarget "by convention, cell electrode at which, a reduction reaction occurs"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5997,12 +5988,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; owl:annotatedTarget "the concepts of “anode” and “cathode” are related only to the direction of electron flow, not to the polarity of the electrodes"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; - owl:annotatedTarget "by convention, cell electrode at which, a reduction reaction occurs"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -6023,15 +6008,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_3f6c9e09_5f23_41cc_9f85_7de365cef089 ; - owl:annotatedTarget "electrolyte creep is sometimes indicated by the presence of a visible solid deposit or wet spots"@en . + owl:annotatedTarget "gradual and slow spreading of an electrolyte film on the external surface of a cell or battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_3f6c9e09_5f23_41cc_9f85_7de365cef089 ; - owl:annotatedTarget "gradual and slow spreading of an electrolyte film on the external surface of a cell or battery"@en . + owl:annotatedTarget "electrolyte creep is sometimes indicated by the presence of a visible solid deposit or wet spots"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -6041,9 +6026,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_04f28ce3_251d_429e_aa85_ab3eb45bbcd2 ; - owl:annotatedTarget "in lithium batteries thermal runaway may cause melting of lithium"@en . + owl:annotatedTarget "unstable condition arising during constant voltage charge in which the rate of heat dissipation capability, causing a continuous temperature increase with resulting further charge current increase, which can lead to the destruction of the battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -6077,9 +6062,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_04f28ce3_251d_429e_aa85_ab3eb45bbcd2 ; - owl:annotatedTarget "unstable condition arising during constant voltage charge in which the rate of heat dissipation capability, causing a continuous temperature increase with resulting further charge current increase, which can lead to the destruction of the battery"@en . + owl:annotatedTarget "in lithium batteries thermal runaway may cause melting of lithium"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; diff --git a/versions/0.15.1-beta/context/context.json b/versions/0.15.1-beta/context/context.json index ac1b0bb..2006ca7 100644 --- a/versions/0.15.1-beta/context/context.json +++ b/versions/0.15.1-beta/context/context.json @@ -1076,7 +1076,6 @@ "ButlerVolmerEquation": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d48ea516_5cac_4f86_bc88_21b6276c0938", "C": "https://w3id.org/emmo#EMMO_36a9bf69_483b_42fd_8a0c_7ac9206320bc", "CASRN": "https://w3id.org/emmo#EMMO_d2a47cd8_662f_438f_855a_b4378eb992ff", - "CCCVCycling": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e", "CPlusPlus": "https://w3id.org/emmo#EMMO_64aba1e5_24b7_4140_8eb4_676c35698e79", "CRate": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_e1fd84eb_acdb_4b2c_b90c_e899d552a3ee", "CSharp": "https://w3id.org/emmo#EMMO_268a8a97_3a6f_4022_93da_962a66827cdc", @@ -1285,7 +1284,7 @@ "CoatingThickness": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3b938708_e7e4_4ac0_a959_9c04306302e7", "Cobalt": "https://w3id.org/emmo/domain/chemical-substance#substance_8f857eb2_7cc8_4294_954d_e69f2842c084", "CobaltAtom": "https://w3id.org/emmo#EMMO_3fe9d899_f1f1_5657_b176_ac6afff2e93d", - "CobaltBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_838c115b_6bc9_4ce8_9f8d_86a6bf67742a", + "CobaltBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7b811780_7251_481b_a4d3_97d437955099", "CobaltHydroxide": "https://w3id.org/emmo/domain/chemical-substance#substance_29b1c15d_2632_40d7_88f7_43575b68b988", "CobaltIIAcetate": "https://w3id.org/emmo/domain/chemical-substance#substance_4310c690_9810_4a95_8d62_7e78e0b84437", "CobaltIIBistrifluoromethanesulfonylimide": "https://w3id.org/emmo/domain/chemical-substance#substance_f4dffee2_c642_4114_a748_5e93b3908380", @@ -1358,6 +1357,7 @@ "ConstantCurrentCharging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_83f2b1e9_cb67_4dbf_977f_ba54bbae374f", "ConstantCurrentChargingCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_37c38b7e_9ded_481a_85fd_a467f1ee2b9f", "ConstantCurrentConstantVoltageCharging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0cc8f231_0ce5_467e_9c76_29b2c80349ad", + "ConstantCurrentConstantVoltageCycling": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e", "ConstantCurrentDischarging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_53fe3f58_0802_41cf_af69_4784fc42cc30", "ConstantCurrentDischargingCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_08833ed2_6324_411a_b34b_fe64c44cd5ef", "ConstantPotentialPulses": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_84d37a37_88bd_47db_9425_31f73a81d38c", @@ -1590,7 +1590,7 @@ "DeviceTemperature": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_463950b9_fd8d_48de_a52d_b29cab026391", "DewPointTemperature": "https://w3id.org/emmo#EMMO_a383e332_a271_463f_9e44_559604547220", "Diameter": "https://w3id.org/emmo#EMMO_c1c8ac3c_8a1c_4777_8e0b_14c1f9f9b0c6", - "Dichloromethane": "https://w3id.org/emmo/domain/chemical-substance#substance_8385c3c4_5906_48f6_b6b6_4bb60dccc27a", + "Dichloromethane": "https://w3id.org/emmo/domain/chemical-substance#substance_a6feec60_5fe7_4687_b427_3bf2ed06008d", "DieCasting": "https://w3id.org/emmo#EMMO_a85d0b8a_588e_423f_b799_97b0890e9183", "DielectricAndImpedanceSpectroscopy": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#DielectricAndImpedanceSpectroscopy", "Dielectrometry": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Dielectrometry", @@ -1624,7 +1624,7 @@ "Dimethoxyethane": "https://w3id.org/emmo/domain/chemical-substance#substance_b6ecabf9_14a4_4808_a139_55329e70ad42", "Dimethoxymethane": "https://w3id.org/emmo/domain/chemical-substance#substance_21954b0b_c05c_42db_b276_3a931d8aabb1", "DimethylCarbonate": "https://w3id.org/emmo/domain/chemical-substance#substance_c4a7d7bd_497e_457e_b858_ff73254266d0", - "DimethylSulfoxide": "https://w3id.org/emmo/domain/chemical-substance#substance_b593b5dd_7957_4b85_856a_dd59775210b6", + "DimethylSulfoxide": "https://w3id.org/emmo/domain/chemical-substance#substance_ea68e1a4_6be8_4686_8701_ba88b40d00b7", "Dimethylformamide": "https://w3id.org/emmo/domain/chemical-substance#substance_769bdc09_f533_4fde_bb53_20339d5bfcb7", "Dimethylpropyleneurea": "https://w3id.org/emmo/domain/chemical-substance#substance_945c68da_3baf_4da6_b794_dca7aebc4ca7", "Dimethylsulfate": "https://w3id.org/emmo/domain/chemical-substance#substance_3c8fb431_7d9d_4a89_a494_708df34f44d3", @@ -1837,7 +1837,7 @@ "ElectronicModel": "https://w3id.org/emmo#EMMO_6eca09be_17e9_445e_abc9_000aa61b7a11", "ElectronvoltPerMetre": "https://w3id.org/emmo#ElectronvoltPerMetre", "Electroosmosis": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_5641910f_6e69_4ce4_be84_4b1bf14b8916", - "Electroplating": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e", + "Electroplating": "https://w3id.org/emmo#EMMO_30e3edb5_0977_4b9b_9aed_5a4d16c1c07c", "ElementalMaterial": "https://w3id.org/emmo#EMMO_a086af15_a7c3_404c_b4ce_c8e4466f1b4b", "ElementalSubstance": "https://w3id.org/emmo#EMMO_436b11bd_1756_4821_9f14_c9ed6b67552e", "ElementaryBoson": "https://w3id.org/emmo#EMMO_cafd0f10_ce85_48b9_9a36_2b0af141ce21", @@ -2192,11 +2192,12 @@ "ISQBaseQuantity": "https://w3id.org/emmo#EMMO_1a4c1a97_88a7_4d8e_b2f9_2ca58e92dde4", "ISQDerivedQuantity": "https://w3id.org/emmo#EMMO_2946d40b_24a1_47fa_8176_e3f79bb45064", "ISQDimensionlessQuantity": "https://w3id.org/emmo#EMMO_a66427d1_9932_4363_9ec5_7d91f2bfda1e", - "IUPACName": "https://w3id.org/emmo#EMMO_16a3bd5c_75f0_42b3_b000_cb0d018f840e", + "IUPACName": "https://w3id.org/emmo#EMMO_f652e7d2_0b33_4d10_8d0f_2f70089982ba", "IUPACNomencalture": "https://w3id.org/emmo#EMMO_91a0635a_a89a_46de_8928_04a777d145c7", "Icon": "https://w3id.org/emmo#EMMO_d7788d1a_020d_4c78_85a1_13563fcec168", "Illuminance": "https://w3id.org/emmo#EMMO_b51fbd00_a857_4132_9711_0ef70e7bdd20", "IlluminanceTimeUnit": "https://w3id.org/emmo#EMMO_e467cc3f_676c_432e_b70e_19237d1bcc78", + "ImaginaryElectricImpedance": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626", "Impedimetry": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Impedimetry", "InChI": "https://w3id.org/emmo#EMMO_d74ed682_894f_46c5_87cb_167f60926965", "IncreasingPotentialPulses": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_77be01ef_49bd_4f2e_bec8_eec0894b8562", @@ -2288,7 +2289,7 @@ "IridiumSymbol": "https://w3id.org/emmo#EMMO_b8aab013_b729_51f1_bc14_5302e7f97cbe", "Iron": "https://w3id.org/emmo/domain/chemical-substance#substance_89fd13e8_8061_41da_83f4_634144116425", "IronAtom": "https://w3id.org/emmo#EMMO_a4839f08_1080_53bf_9cb3_101e20c2656b", - "IronBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_cc4e178c_bc1f_4502_b6c2_33f304ef6bab", + "IronBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_5e1136d3_df00_40f7_a4bc_8259341053a1", "IronDisulfide": "https://w3id.org/emmo/domain/chemical-substance#substance_c728b6b9_449a_45ff_b5ae_6b7968708f0d", "IronDisulfideElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d2726dd5_69f0_4cb1_bd3c_4c48813e57e7", "IronIIIHydroxide": "https://w3id.org/emmo/domain/chemical-substance#substance_323a2e39_d7d5_4802_884a_9aa41a280986", @@ -2556,6 +2557,7 @@ "LossFactor": "https://w3id.org/emmo#EMMO_c3796906_8063_47d4_92af_890ae08f25fa", "LowPressureCasting": "https://w3id.org/emmo#EMMO_8b2fd84c_8f51_4731_9bd7_830545e78b23", "LowerCriticalMagneticFluxDensity": "https://w3id.org/emmo#EMMO_fd4a6307_f9f7_4b54_b044_caa04e620232", + "LowerCurrentLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea", "LowerFrequencyLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_b66d6553_6136_4754_902a_707e414210c2", "LowerVoltageLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_534dd59c_904c_45d9_8550_ae9d2eb6bbc9", "Lumen": "https://w3id.org/emmo#Lumen", @@ -2608,7 +2610,7 @@ "MagnesiumTriflate": "https://w3id.org/emmo/domain/chemical-substance#substance_df24fad8_7ef0_4330_a3f2_c4d65d9a3be8", "MagnesiumTrifluoromethanesulfonyloxalatoborate": "https://w3id.org/emmo/domain/chemical-substance#substance_2b7473ba_9156_489a_880f_3a2f746cd104", "MagneticDipoleMoment": "https://w3id.org/emmo#EMMO_81e767f1_59b1_4d7a_bf69_17f322241831", - "MagneticDipoleMomentUnit": "https://w3id.org/emmo#EMMO_5073dc80_aec2_4a3b_8057_fababfcbfe11", + "MagneticDipoleMomentUnit": "https://w3id.org/emmo#EMMO_1c2226a9_22f0_40c8_8928_5a01d398f96e", "MagneticFieldStrength": "https://w3id.org/emmo#EMMO_b4895f75_41c8_4fd9_b6d6_4d5f7c99c423", "MagneticFieldStrengthUnit": "https://w3id.org/emmo#EMMO_e6b83139_ba92_4fbd_a8b2_c8dde55844a1", "MagneticFlux": "https://w3id.org/emmo#EMMO_3b931698_937e_49be_ab1b_36fa52d91181", @@ -2676,7 +2678,7 @@ "MassExcess": "https://w3id.org/emmo#EMMO_7dd84949_0afa_4313_9b89_7bb0dd2e7771", "MassFlow": "https://w3id.org/emmo#EMMO_6d61ee3c_c5b6_4452_bc11_e9c33af992a7", "MassFluxUnit": "https://w3id.org/emmo#EMMO_e35d4936_b2e3_4cd6_a437_f1c864b3d450", - "MassFraction": "https://w3id.org/emmo/disciplines/units/coherentsiunits#EMMO_089f13b1_ceb3_4d2a_8795_b4a2d92916da", + "MassFraction": "https://w3id.org/emmo#EMMO_7c055d65_2929_40e1_af4f_4bf10995ad50", "MassFractionOfDryMatter": "https://w3id.org/emmo#EMMO_8f171308_f902_42c5_ac1d_d5259022e9c1", "MassFractionOfWater": "https://w3id.org/emmo#EMMO_cac16ce6_2cef_405d_ac63_0f918db4875e", "MassFractionUnit": "https://w3id.org/emmo#EMMO_18448443_dcf1_49b8_a321_cf46e2c393e1", @@ -3027,6 +3029,7 @@ "NobeliumAtom": "https://w3id.org/emmo#EMMO_49eb0790_50c2_5691_a8bf_dfa6f4a9f6c7", "NobeliumSymbol": "https://w3id.org/emmo#EMMO_c1bb775c_0888_5b88_9cce_c49bae1d298b", "NobleGasElementalSubstance": "https://w3id.org/emmo/domain/chemical-substance#substance_cac14194_2d5f_4fe6_b794_a9319f6d76ee", + "NominalCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100", "NominalProperty": "https://w3id.org/emmo#EMMO_909415d1_7c43_4d5e_bbeb_7e1910159f66", "NominalVoltage": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_639b844a_e801_436b_985d_28926129ead6", "NonActivePower": "https://w3id.org/emmo#EMMO_83318add_d05e_40fc_93ea_c6cd605df437", @@ -3061,6 +3064,7 @@ "NumberOfFiniteVolumeCellsInX": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_e73586eb_8475_4879_a43e_087c702ea6bf", "NumberOfFiniteVolumeCellsInY": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_c2a85d02_c6b4_42df_b5ed_a9904ec34a5c", "NumberOfFiniteVolumeCellsInZ": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a5e00e3a_736c_4200_8d04_ed222fe07037", + "NumberOfIterations": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_88dd2bce_fb17_4705_905d_892681812290", "NumberOfTurnsInAWinding": "https://w3id.org/emmo#EMMO_eefaa0ef_e7d4_4633_bf79_655bb55f4a49", "Numeral": "https://w3id.org/emmo#EMMO_74b05aed_66bf_43c8_aa2c_752a9ca8be03", "Numerical": "https://w3id.org/emmo#EMMO_4ce76d7f_03f8_45b6_9003_90052a79bfaa", @@ -3211,7 +3215,7 @@ "Permittivity": "https://w3id.org/emmo#EMMO_0ee5779e_d798_4ee5_9bfe_c392d5bea112", "PermittivityUnit": "https://w3id.org/emmo#EMMO_5f89cb0c_3171_47ee_b2ab_027a07c34c4b", "Persistence": "https://w3id.org/emmo#EMMO_e04884d9_eda6_487e_93d5_7722d7eda96b", - "Person": "http://xmlns.com/foaf/0.1/Person", + "Person": "https://schema.org/Person", "Perspective": "https://w3id.org/emmo#EMMO_49267eba_5548_4163_8f36_518d65b583f9", "Peta": "https://w3id.org/emmo#EMMO_d7c74480_a568_4470_acff_f18b499cc850", "PetaPrefixedUnit": "https://w3id.org/emmo#EMMO_43a6b269_da31_4bb6_a537_c97df4fff32a", @@ -3298,7 +3302,7 @@ "Porosity": "https://w3id.org/emmo#EMMO_3a6578ac_aee0_43b9_9bc6_1eb208c8c9a9", "PorousElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3663991d_9319_4f7a_922b_f0e428b58801", "PorousSeparator": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_58413d4e_2885_459e_ac06_8d45e661cf91", - "PositionVector": "https://w3id.org/emmo#EMMO_4312cae4_03ba_457e_b35d_0671a7db350c", + "PositionVector": "https://w3id.org/emmo#EMMO_44da6d75_54a4_4aa8_bd3a_156f6e9abb8e", "PositiveElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_aff732a9_238a_4734_977c_b2ba202af126", "PositiveTerminal": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_522f0c0b_cf33_4328_af71_12e38dae6798", "Positron": "https://w3id.org/emmo#EMMO_26a38b26_38ea_4acf_b212_db9e34c71b7a", @@ -3483,7 +3487,7 @@ "R54215": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_fc9e7ba3_5084_4c2a_b488_c6a96af99232", "R616": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_dc019f3f_e5f3_4eeb_bab9_a845a02223a0", "R621": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_15ec346a_6d3c_4161_95e1_9cf889965f85", - "R626": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_68c1c36e_1548_4247_bae2_fe7102a2c4ff", + "R626": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6b275583_433f_46f7_aafd_ebc9409257cc", "R712": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_bb2faf17_b819_4876_b17f_fa82917cf85d", "R716": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_34cb7ea7_2436_46e0_806e_a3c7835ae228", "R721": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3279f575_1c62_4bf2_a6e8_de4c7ff36f8e", @@ -3535,6 +3539,7 @@ "ReactivePower": "https://w3id.org/emmo#EMMO_d8030875_6d89_4645_9728_bbc3b8690609", "ReactorTimeConstant": "https://w3id.org/emmo#EMMO_b03dfad7_eab8_4949_9d10_dd4fd12faaef", "Real": "https://w3id.org/emmo#EMMO_18d180e4_5e3e_42f7_820c_e08951223486", + "RealElectricImpedance": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f", "ReciprocalAmountPerVolumeUnit": "https://w3id.org/emmo#EMMO_aef218f9_6ded_4db9_9263_e78eed55e5d6", "ReciprocalCentiMetre": "https://w3id.org/emmo#ReciprocalCentiMetre", "ReciprocalCubicCentiMetre": "https://w3id.org/emmo#ReciprocalCubicCentiMetre", @@ -3637,6 +3642,7 @@ "ResponseTimeAtAnISE": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_1a104474_c326_4a29_ac26_26a05ac8f72c", "RestEnergy": "https://w3id.org/emmo#EMMO_5117c5fe_f661_46f8_83c3_b48947f1532a", "RestMass": "https://w3id.org/emmo#EMMO_3c947caf_4070_4c79_a3a3_e53274ac9944", + "Resting": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b", "RestingTime": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_2678a656_4a27_4706_8dde_b0a93e9b92fa", "ReversibleHydrogenElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0d9ba00d_04bc_4bdc_85af_3380694f6f68", "RevolutionPerMinute": "https://w3id.org/emmo#RevolutionPerMinute", @@ -3790,7 +3796,7 @@ "SiemensSquareMetrePerMole": "https://w3id.org/emmo#SiemensSquareMetrePerMole", "Sievert": "https://w3id.org/emmo#Sievert", "Sign": "https://w3id.org/emmo#EMMO_b21a56ed_f969_4612_a6ec_cb7766f7f31d", - "Signal": "https://w3id.org/emmo/domain/chameo#Signal", + "Signal": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Signal", "SignalReferencePotential": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_68059d94_4c21_4065_b329_07faeebc7e87", "Silicon": "https://w3id.org/emmo/domain/chemical-substance#substance_68c0876b_cb62_41cd_846d_95cc9d9a8733", "SiliconAtom": "https://w3id.org/emmo#EMMO_798b0c96_82ca_5ce8_8d5f_f9f72668cf5d", @@ -4318,6 +4324,7 @@ "UpQuark": "https://w3id.org/emmo#EMMO_0a3f04a6_ba3a_49d9_99da_08b0e26f51f0", "UpQuarkType": "https://w3id.org/emmo#EMMO_fc47b76f_ad01_4cd0_8fc6_55532000e7c8", "UpperCriticalMagneticFluxDensity": "https://w3id.org/emmo#EMMO_6bfe6ad2_96ba_4478_81e5_d8881c550757", + "UpperCurrentLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45", "UpperFrequencyLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_666f0b69_9c74_49a3_80b3_96a188332462", "UpperVoltageLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6dcd5baf_58cd_43f5_a692_51508e036c88", "UraniumAtom": "https://w3id.org/emmo#EMMO_b233f8c0_37d8_51ae_9264_560e6649e246", diff --git a/versions/0.15.1-beta/electrochemicalquantities.ttl b/versions/0.15.1-beta/electrochemicalquantities.ttl index 882a543..96cb275 100644 --- a/versions/0.15.1-beta/electrochemicalquantities.ttl +++ b/versions/0.15.1-beta/electrochemicalquantities.ttl @@ -24,8 +24,6 @@ emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f a owl:AnnotationProperty . emmo:EMMO_5c78b424_087b_4e31_8c91_6422f1be1e86 owl:equivalentClass :electrochemistry_9c657fdc_b9d3_4964_907c_f9a6e8c5f52b . -emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 :electrochemistry_097ea615_c209_4edd_a1a1_5eea71d98fe8 "acimp/ohms"@en . - emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry_37b24a94_cae0_4d7a_9519_9f7692dec607 ; skos:altLabel "MassDiffusivity"@en ; emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q604008"@en ; @@ -101,6 +99,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "D40ParticleSize"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 40% of the sample's particles fall."@en . +:electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626 a owl:Class ; + rdfs:label "ImaginaryElectricImpedance"@en ; + rdfs:comment "the imaginary part of the complex electric impedance"@en ; + rdfs:subClassOf emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 ; + skos:prefLabel "ImaginaryElectricImpedance"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the imaginary part of the complex electric impedance"@en . + :electrochemistry_02d2d1d1_241c_429b_b4e7_31f2c3dc4835 a owl:Class ; rdfs:label "D95ParticleSize"@en ; rdfs:comment "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 95% of the sample's particles fall."@en ; @@ -381,6 +386,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "D50ParticleSize"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 50% of the sample's particles fall."@en . +:electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45 a owl:Class ; + rdfs:label "UpperCurrentLimit"@en ; + rdfs:comment "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en ; + rdfs:subClassOf :electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 ; + skos:prefLabel "UpperCurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + :electrochemistry_3e54f9e3_a31d_4821_9bfb_ef953a42c35b a owl:Class ; rdfs:label "MaximumPulseDischargingCurrent"@en ; rdfs:comment "the maximum current approved for pulse discharge of an electrochemical device"@en ; @@ -608,6 +620,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "ChargingCurrent"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electric current applied to an electrochemical device during a charging process"@en . +:electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea a owl:Class ; + rdfs:label "LowerCurrentLimit"@en ; + rdfs:comment "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en ; + rdfs:subClassOf :electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 ; + skos:prefLabel "LowerCurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + :electrochemistry_7f073272_8925_4344_995c_a5a6dd1fcde6 a owl:Class ; rdfs:label "ChargingConstantCurrentPercentage"@en ; rdfs:comment "the percentage of the total charge capacity that is obtained during a constant current charge process"@en ; @@ -705,6 +724,20 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "DischargingSpecificCapacity"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "quotient of the capacity of a cell or battery [ or electrode or active material ] obtained during a discharge process by its mass."@en . +:electrochemistry_88dd2bce_fb17_4705_905d_892681812290 a owl:Class ; + rdfs:label "NumberOfIterations"@en ; + rdfs:comment "the number of times an iterative process should occur"@en ; + rdfs:subClassOf emmo:EMMO_ba882f34_0d71_4e4f_9d92_0c076c633a2c ; + skos:prefLabel "NumberOfIterations"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the number of times an iterative process should occur"@en . + +:electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100 a owl:Class ; + rdfs:label "NominalCapacity"@en ; + rdfs:comment "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en ; + rdfs:subClassOf :electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 ; + skos:prefLabel "NominalCapacity"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en . + :electrochemistry_8e943e12_ecc0_4093_899e_7226be6be7f2 a owl:Class ; rdfs:label "D90ParticleSize"@en ; rdfs:comment "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 90% of the sample's particles fall."@en ; @@ -820,6 +853,15 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the celsius temperature of the ambient environment"@en ; :electrochemistry_1b717a20_17e3_4480_8c60_c4ae94058f05 "Environmental_Temperature (C)"@en . +:electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f a owl:Class ; + rdfs:label "RealElectricImpedance"@en ; + rdfs:comment "the imaginary part of the complex electric impedance"@en ; + rdfs:subClassOf emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 ; + skos:altLabel "ACResistance"@en ; + skos:prefLabel "RealElectricImpedance"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q1048490"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the imaginary part of the complex electric impedance"@en . + :electrochemistry_ae108db7_8765_4329_9908_059277dee586 a owl:Class ; rdfs:label "StepCapacity"@en ; rdfs:comment "the amount of charge that has passed through an electrochemical device within the time interval of a given testing step"@en ; @@ -1084,8 +1126,8 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry ; dcterms:license "https://creativecommons.org/licenses/by/4.0/legalcode" ; owl:imports ; - owl:versionIRI ; - owl:versionInfo "0.17.0-beta" . + owl:versionIRI ; + owl:versionInfo "0.18.0-beta" . a owl:NamedIndividual, foaf:Person ; @@ -1866,6 +1908,8 @@ In either case, the magnitude of the catalytic current depends on the applied po emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electric potential of an ion-selective electrode (ISE) and activity of an analyte ion at which the potential of the ISE is independent of temperature"@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1351/goldbook.I03304"@en . +emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 :electrochemistry_097ea615_c209_4edd_a1a1_5eea71d98fe8 "acimp/ohms"@en . + emmo:EMMO_e218c625_6a39_47a9_8d08_a2ef41c152a9 rdfs:subClassOf :electrochemistry_02eb0465_4f94_453c_8c1f_5ddf80134634 ; skos:altLabel "GravimetricEnergyDensity"@en ; :electrochemistry_811aafc3_0c6d_470e_b67e_ff5c82992609 "CmpEng(mWh/g)"@en . @@ -1997,14 +2041,6 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog skos:prefLabel "TemperatureLimit"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the temperature of a system"@en . -:electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 a owl:Class ; - rdfs:label "RatedCapacity"@en ; - rdfs:comment "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en ; - rdfs:subClassOf :electrochemistry_791c1915_a791_4450_acd8_7f94764743b5 ; - skos:prefLabel "RatedCapacity"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-03-15"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en . - :electrochemistry_9ed7210c_c4fa_467b_822d_ba12f885bdf4 a owl:Class ; rdfs:label "ConcentrationOverpotential"@en ; rdfs:comment "The concentration overpotential of an electrode reaction at a given electrode current density (c.d.) is basically the difference in equilibrium potentials across the diffusion layer. More precisely, it is the potential of a reference electrode (of the same electrode reaction as the working electrode ) with the interfacial concentrations which establish themselves at c.d., relative to the potential of a similar reference electrode with the concentrations of the bulk solution. From such a measured potential difference, with c.d. flowing, one needs to subtract the ohmic potential drop prevailing between the two electrodes."@en, @@ -2110,6 +2146,14 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog skos:prefLabel "NumberOfFiniteVolumeCells"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "number of discrete finite volume cells in a grid or sub-grid"@en . +:electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 a owl:Class ; + rdfs:label "RatedCapacity"@en ; + rdfs:comment "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en ; + rdfs:subClassOf :electrochemistry_791c1915_a791_4450_acd8_7f94764743b5 ; + skos:prefLabel "RatedCapacity"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-03-15"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en . + :electrochemistry_cc519a19_b8d5_4e3f_b893_3a884888ad79 a owl:Class ; rdfs:label "MaximumTemperature"@en ; rdfs:comment "the maximum allowable temperature"@en ; @@ -2186,14 +2230,6 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa :electrochemistry_a07dd85b_d0df_4d5d_8b0c_14d20ea3fe45 "current"@en ; :electrochemistry_ea9f4dba_8ca2_419e_9cdf_ce54e9ebbd46 "Current (A)"@en . -:electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 a owl:Class ; - rdfs:label "CurrentLimit"@en ; - rdfs:comment "limit on the electric current of an electrical system"@en ; - rdfs:subClassOf emmo:EMMO_c995ae70_3b84_4ebb_bcfc_69e6a281bb88, - :electrochemistry_b395a244_3a75_4737_be38_981bfa1277fe ; - skos:prefLabel "CurrentLimit"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the electric current of an electrical system"@en . - :electrochemistry_900e357f_2ee3_425a_a0b6_322661117787 a owl:Class ; rdfs:label "ElectrochemicalProperty"@en ; rdfs:subClassOf emmo:EMMO_909415d1_7c43_4d5e_bbeb_7e1910159f66 ; @@ -2292,6 +2328,14 @@ foaf:Person a owl:Class ; emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Faradaic_current"@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://goldbook.iupac.org/terms/view/F02321"@en . +:electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 a owl:Class ; + rdfs:label "CurrentLimit"@en ; + rdfs:comment "limit on the electric current of an electrical system"@en ; + rdfs:subClassOf emmo:EMMO_c995ae70_3b84_4ebb_bcfc_69e6a281bb88, + :electrochemistry_b395a244_3a75_4737_be38_981bfa1277fe ; + skos:prefLabel "CurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the electric current of an electrical system"@en . + :electrochemistry_1cd1d777_e67b_47eb_81f1_edac35d9f2c6 a owl:Class ; rdfs:label "Overpotential"@en ; rdfs:comment "difference between the electrode potential with current flow, and the electrode potential without current flow, i.e. the equilibrium potential"@en, diff --git a/versions/0.15.1-beta/electrochemistry-inferred.ttl b/versions/0.15.1-beta/electrochemistry-inferred.ttl index f4fa0f9..c704a22 100644 --- a/versions/0.15.1-beta/electrochemistry-inferred.ttl +++ b/versions/0.15.1-beta/electrochemistry-inferred.ttl @@ -7,7 +7,7 @@ @base . rdf:type owl:Ontology ; - owl:versionIRI ; + owl:versionIRI ; ""@en , "CHAMEO is a domain ontology designed to model the common aspects across the different characterisation techniques and methodologies."@en , """Defines physical quantities in the International System of Quantities (ISQ). ISQ was made an official ISO standard in 2009 and is defined in the ISO/IEC 80000 standard. @@ -146,12 +146,12 @@ The symbolic module includes symbols, symbolic constructs and formal languages." "https://w3id.org/emmo/domain/characterisation-methodology/chameo" ; "2024-04-12" , "2024-06-23"^^xsd:date , - "2024-07-03"^^xsd:date ; + "2024-07-05"^^xsd:date ; "https://creativecommons.org/licenses/by/4.0/legalcode" , "https://creativecommons.org/licenses/by/4.0/legalcode"@en ; "2024-04-12" , "2024-06-23"^^xsd:date , - "2024-07-03"^^xsd:date ; + "2024-07-05"^^xsd:date ; "EMMC ASBL" , "EMMC ASBL"@en , """EMMC ASBL @@ -241,11 +241,11 @@ We kindly acknowledge NIST for reusing their content, including the selection of "You can contact EMMO Authors via emmo@emmc.eu"@en ; owl:backwardCompatibleWith "" , " " , - "0.16.0-beta" ; - owl:priorVersion "0.16.0-beta" , + "0.17.0-beta" ; + owl:priorVersion "0.17.0-beta" , "0.5.0-beta" , "1.0.0-beta2" ; - owl:versionInfo "0.17.0-beta" , + owl:versionInfo "0.18.0-beta" , "0.6.0-beta" , "1.0.0-beta3" , "1.0.0-beta7" ; @@ -2333,7 +2333,7 @@ While the EMMO FOL introduces the quantum causality relation C(x,y) as primitive rdf:type owl:ObjectProperty ; rdfs:subPropertyOf ; rdfs:domain ; - rdfs:range ; + rdfs:range ; "hasSolvent"@en . @@ -2364,7 +2364,7 @@ While the EMMO FOL introduces the quantum causality relation C(x,y) as primitive rdf:type owl:ObjectProperty ; rdfs:subPropertyOf ; rdfs:domain ; - rdfs:range ; + rdfs:range ; "hasSolute"@en . @@ -34532,7 +34532,7 @@ Wikipedia"""@en ; , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "ZincElectrode"@en ; "an electrode in which the main active material is zinc metal"@en ; @@ -34555,7 +34555,7 @@ Wikipedia"""@en ; rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "LithiumElectrode"@en ; "an electrode in which the active material is lithium metal" . @@ -44391,164 +44391,11 @@ Wear is defined as the progressive removal of the material from a solid surface "InChI=1S/Pb" . -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0139937b_2724_4864_84fb_f14bcfb83538 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0bdf0bb9_41fc_455d_af11_a249e24acdf6 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0f2f65a7_5cc4_4c86_a4d0_676771c646f1 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_250fa43e_1f26_4ed8_b787_91a2325a8e7b - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_25f6ff4c_53ad_4837_97c4_aa6f06099bb5 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_2a540939_3908_4f85_92f9_c46da7d4e9cb - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_2a87ca10_fc6a_4d61_b48c_d9790a566ee3 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_3899a9c9_9b34_443e_8ce6_0257589bb38a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_3ac62305_acd6_4312_9e31_4f824bd2530d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_4126ee09_b9c6_4694_bf33_0d8970e05f72 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_4c62d334_a124_40b3_9fd1_fe713d01a6af - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_5088ad54_b37d_4ee1_a086_d6c17e644f9a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_5cee19d2_f916_4264_a8ed_efed13a808d2 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_68c0876b_cb62_41cd_846d_95cc9d9a8733 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_68f9b85e_340f_46ec_96da_ebb6bd62f5fd - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_73d4606c_7460_4a5c_9413_793bdf35753e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_7dc738d6_74f2_489e_ae84_a6dbdf627f2e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_848003a2_71ee_4967_8039_354c907ec7f4 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_97439fbb_155f_433d_9edd_d510cd491f24 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_9bd78e1c_a4dc_41b6_8013_adb51df1ffdc - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_9da78aea_d436_40e2_a68f_c3dee32b825e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_aa8e9cc4_5f66_4307_b1c8_26fac7653a90 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_acdb232f_8041_4e11_8a11_5db2d2baae4d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_b01771a9_218a_4b01_b20f_4021cfa0b7d5 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_b3815a7f_f64a_48f6_b0ce_d0032578c699 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c109ca45_08c7_4436_a818_a9c575785e2f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c28a0967_ed23_48cc_a14e_a651d75a19db - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c5582dae_ccff_4fbe_adaa_078091054640 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c728b6b9_449a_45ff_b5ae_6b7968708f0d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_cd17ca33_ae3d_4738_8930_547673bf6c1f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_cdd18f0c_e7b3_4d09_b3dd_c09fe4b1adba - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_d53259a7_0d9c_48b9_a6c1_4418169df303 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_d673ceb2_3045_4e2e_8cad_56f5169b542f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_db74b6b7_09fc_40db_a7d5_6eb86b69192a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_dc5fb846_1824_40f8_9834_81f118aa1c2d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_dcdbdbed_2e20_40d1_a7a5_5761de7f0618 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_e1e6ff98_0725_4d27_ab21_2ca5a95371f0 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_e8fafdc8_6cd3_4dd0_9630_10ca8e3f1827 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_f3e7979a_e3ef_450a_8762_7d8778afe478 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_f7525766_90cf_43e9_8932_7cb3b14f676f - rdf:type owl:Class . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626 + rdf:type owl:Class ; + rdfs:subClassOf ; + "ImaginaryElectricImpedance"@en ; + "the imaginary part of the complex electric impedance"@en . ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_01260656_ac32_472e_9513_a607366538ec @@ -44872,11 +44719,11 @@ Wear is defined as the progressive removal of the material from a solid surface rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCLCOElectrode"@en ; @@ -45639,7 +45486,7 @@ and t* through mathematical models, provided that the long-time potential- deter , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LFPElectrode"@en ; @@ -46241,7 +46088,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "PtElectrode"@en ; "PlatinumElectrode"@en ; @@ -46343,7 +46190,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SiliconOxideGraphiteElectrode"@en ; @@ -46477,7 +46324,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "FTOElectrode"@en ; @@ -46500,7 +46347,7 @@ Aluminum foil"""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "NiOOHElectrode"@en , "NickelOxyhydroxideElectrode"@en ; @@ -46544,6 +46391,14 @@ Aluminum foil"""@en . "a coin case with a nominal diameter of 7.9 mm and a height of 1.65 mm"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b + rdf:type owl:Class ; + rdfs:subClassOf , + ; + "Resting"@en ; + "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 rdf:type owl:Class ; rdfs:subClassOf ; @@ -46811,6 +46666,13 @@ Aluminum foil"""@en . "A material relation in electrochemistry."@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45 + rdf:type owl:Class ; + rdfs:subClassOf ; + "UpperCurrentLimit"@en ; + "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3e54f9e3_a31d_4821_9bfb_ef953a42c35b rdf:type owl:Class ; rdfs:subClassOf , @@ -46981,7 +46843,7 @@ Aluminum foil"""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNMOElectrode"@en ; @@ -47201,11 +47063,11 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCLMOElectrode"@en ; @@ -47294,7 +47156,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumNickelPhosphateElectrode"@en ; @@ -47549,7 +47411,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumIronPhosphateElectrode"@en ; @@ -47904,7 +47766,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "CarbonMonofluorideElectrode"@en ; "electrode in which the active material is carbon monofluoride"@en ; @@ -48131,7 +47993,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "HardCarbonElectrode"@en ; "electrode in which the active material is hard carbon"@en . @@ -48291,7 +48153,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "SAE"@en ; "SolidAmalgamElectrode"@en ; @@ -48426,7 +48288,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LTOElectrode"@en ; @@ -48518,20 +48380,13 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ] . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "system that consists of at least two electron conductors (electrodes) in contact with ionic conductors (electrolytes)"@en ; - "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6fec8cc1_4e6c_428e_8343_6cf3c286a185 rdf:type owl:Class ; rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "AuElectrode"@en ; "GoldElectrode"@en ; @@ -48691,7 +48546,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NiOElectrode"@en ; @@ -48721,7 +48576,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "TiO2Electrode"@en ; @@ -48915,13 +48770,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ] . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "in secondary cells, the active material is restored to its original state during charge"@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - [ rdf:type owl:Axiom ; owl:annotatedSource ; owl:annotatedProperty ; @@ -48965,6 +48813,13 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s "an electrode in which the primary active material consists of caesium or caesium compounds"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea + rdf:type owl:Class ; + rdfs:subClassOf ; + "LowerCurrentLimit"@en ; + "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7f073272_8925_4344_995c_a5a6dd1fcde6 rdf:type owl:Class ; rdfs:subClassOf ; @@ -49118,7 +48973,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "LiquidGalliumElectrode"@en ; "a liquid electrode with an active material of gallium"@en . @@ -49188,7 +49043,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "ZnOElectrode"@en ; @@ -49446,6 +49301,13 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "an electrode in which the primary active material consists of sulfur or sulfur compounds"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_88dd2bce_fb17_4705_905d_892681812290 + rdf:type owl:Class ; + rdfs:subClassOf ; + "NumberOfIterations"@en ; + "the number of times an iterative process should occur"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8968eb7a_9a65_4286_a596_c31b998df329 rdf:type owl:Class ; rdfs:subClassOf ; @@ -49504,6 +49366,13 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "substance that increases chemical reaction speed, and which is conserved after the reaction"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100 + rdf:type owl:Class ; + rdfs:subClassOf ; + "NominalCapacity"@en ; + "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8b40856f_1ca2_4137_9616_7fb624671909 rdf:type owl:Class ; rdfs:subClassOf , @@ -50109,7 +49978,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumCobaltPhosphateElectrode"@en ; @@ -50298,13 +50167,6 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; "plate in which the active material is applied as a paste to a conductive current collector"@en . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "plate in which the active material is applied as a paste to a conductive current collector"@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a24f8581_a5a4_41a4_bb45_d0fdd5c0d810 rdf:type owl:Class ; @@ -50397,7 +50259,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "SilverOxideElectrode"@en ; "an electrode in which the primary active material consists of manganese dioxide or vmanganese dioxide compounds"@en ; @@ -50427,7 +50289,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "AgElectrode"@en ; "SilverElectrode"@en ; @@ -50662,7 +50524,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "CupricOxideElectrode"@en ; "CopperOxideElectrode"@en ; @@ -50751,6 +50613,15 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "Environmental_Temperature (C)"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f + rdf:type owl:Class ; + rdfs:subClassOf ; + "ACResistance"@en ; + "RealElectricImpedance"@en ; + "https://www.wikidata.org/wiki/Q1048490"@en ; + "the imaginary part of the complex electric impedance"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abfadc99_6e43_4d37_9b04_7fc5b0f327ae rdf:type owl:Class ; rdfs:subClassOf , @@ -50782,7 +50653,8 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e rdf:type owl:Class ; rdfs:subClassOf ; - "CCCVCycling"@en ; + "CCCVCycling"@en ; + "ConstantCurrentConstantVoltageCycling"@en ; "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en . @@ -51030,7 +50902,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCElectrode"@en ; @@ -51360,11 +51232,11 @@ of other configurations are used."""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNMOLFPElectrode"@en ; @@ -51466,13 +51338,6 @@ of other configurations are used."""@en . "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; "https://en.wikipedia.org/wiki/Fuel_cell"@en . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_bea04148_10d9_4eda_9cd5_8f609d7e9ff8 rdf:type owl:Class ; @@ -51568,7 +51433,7 @@ of other configurations are used."""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LMOElectrode"@en ; @@ -51751,11 +51616,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "ITO"@en ; @@ -51809,7 +51674,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "GraphiteElectrode"@en ; "electrode in which the active material is graphite"@en . @@ -51928,7 +51793,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "MnO2Electrode"@en ; "ManganeseDioxideElectrode"@en ; @@ -51943,7 +51808,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNOElectrode"@en ; @@ -51963,7 +51828,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "IrO2Electrode"@en ; @@ -51977,7 +51842,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumManganesePhosphateElectrode"@en ; @@ -52146,7 +52011,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "IronDisulfideElectrode"@en ; "an electrode in which the primary active material consists of iron disulfide or iron disulfide compounds."@en ; @@ -52509,7 +52374,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "HgElectrode"@en ; "MercuryElectrode"@en ; @@ -52785,11 +52650,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SiliconGraphiteElectrode"@en ; @@ -52802,7 +52667,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumManganeseOxideElectrode"@en ; @@ -53004,7 +52869,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumCobaltOxideElectrode"@en ; @@ -53096,7 +52961,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NCAElectrode"@en ; @@ -53315,7 +53180,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "PbOElectrode"@en ; @@ -53401,7 +53266,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumChromiumOxideElectrode"@en ; @@ -53621,7 +53486,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LCOElectrode"@en ; @@ -53672,11 +53537,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LMOLFPElectrode"@en ; @@ -53808,10 +53673,10 @@ In either case, the magnitude of the catalytic current depends on the applied po "The universe is considered as a causally self-connected object, encompassing all other objects. For this reason is unique."@en . -[ owl:qualifiedCardinality "3"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "3"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "4"^^xsd:nonNegativeInteger @@ -53835,10 +53700,10 @@ In either case, the magnitude of the catalytic current depends on the applied po [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:minQualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:minQualifiedCardinality "2"^^xsd:nonNegativeInteger +[ owl:minQualifiedCardinality "1"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger @@ -53850,7 +53715,7 @@ In either case, the magnitude of the catalytic current depends on the applied po [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:minQualifiedCardinality "2"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger diff --git a/versions/0.15.1-beta/electrochemistry.ttl b/versions/0.15.1-beta/electrochemistry.ttl index baa1206..d442e3c 100644 --- a/versions/0.15.1-beta/electrochemistry.ttl +++ b/versions/0.15.1-beta/electrochemistry.ttl @@ -1,6 +1,6 @@ @prefix : . @prefix bibo: . -@prefix chemsub: . +@prefix chemsub: . @prefix dcterms: . @prefix emmo: . @prefix foaf: . @@ -54,9 +54,9 @@ schema:name a owl:AnnotationProperty . dcterms:created "2022-11-25"^^xsd:date ; dcterms:creator , ; - dcterms:issued "2024-07-03"^^xsd:date ; + dcterms:issued "2024-07-05"^^xsd:date ; dcterms:license "https://creativecommons.org/licenses/by/4.0/legalcode" ; - dcterms:modified "2024-07-03"^^xsd:date ; + dcterms:modified "2024-07-05"^^xsd:date ; dcterms:publisher "EMMO" ; dcterms:source , , @@ -67,13 +67,13 @@ schema:name a owl:AnnotationProperty . bibo:status "unstable" ; vann:preferredNamespacePrefix "echem" ; vann:preferredNamespaceUri "https://w3id.org/emmo/domain/electrochemistry" ; - owl:backwardCompatibleWith "0.16.0-beta" ; + owl:backwardCompatibleWith "0.17.0-beta" ; owl:imports , , - ; - owl:priorVersion "0.16.0-beta" ; - owl:versionIRI ; - owl:versionInfo "0.17.0-beta" ; + ; + owl:priorVersion "0.17.0-beta" ; + owl:versionIRI ; + owl:versionInfo "0.18.0-beta" ; foaf:logo "https://raw.githubusercontent.com/emmo-repo/domain-electrochemistry/gh-pages/assets/img/fig/png/domain-electrochemistry-logo.png" . :electrochemistry_027d437e_3bbf_4eda_940b_e509f8d2b993 a owl:Class ; @@ -535,6 +535,14 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "R716" ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a coin case with a nominal diameter of 7.9 mm and a height of 1.65 mm"@en . +:electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b a owl:Class ; + rdfs:label "Resting"@en ; + rdfs:comment "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en ; + rdfs:subClassOf , + :electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 ; + skos:prefLabel "Resting"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en . + :electrochemistry_36444184_1100_4271_869f_7f2d983aaecb a owl:Class ; rdfs:label "P45173115" ; rdfs:comment "a prismatic case with a nominal length of 45 mm, width of 173 mm, and height of 115 mm"@en ; @@ -1564,6 +1572,15 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "TinBasedElectrode"@en ; emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "an electrode in which the primary active material consists of tin or tin compounds"@en . +:electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c a owl:Class ; + rdfs:label "PastedPlate"@en ; + rdfs:comment "plate in which the active material is applied as a paste to a conductive current collector"@en ; + rdfs:subClassOf :electrochemistry_92147e31_d015_4889_a092_04fbab033f15 ; + skos:altLabel "PastedElectrode"@en ; + skos:prefLabel "PastedPlate"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "plate in which the active material is applied as a paste to a conductive current collector"@en . + :electrochemistry_a277e420_2483_44d5_a2bc_4e421dea231a a owl:Class ; rdfs:label "R926" ; rdfs:comment "a coin case with a nominal diameter of 9.5 mm and a height of 2.6 mm"@en ; @@ -1658,10 +1675,11 @@ schema:name a owl:AnnotationProperty . emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a coin case with a nominal diameter of 11.6 mm and a height of 4.2 mm"@en . :electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e a owl:Class ; - rdfs:label "CCCVCycling"@en ; + rdfs:label "ConstantCurrentConstantVoltageCycling"@en ; rdfs:comment "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en ; rdfs:subClassOf :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; - skos:prefLabel "CCCVCycling"@en ; + skos:altLabel "CCCVCycling"@en ; + skos:prefLabel "ConstantCurrentConstantVoltageCycling"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en . :electrochemistry_ad9cdad6_66e8_471e_a7c6_b79f37c20814 a owl:Class ; @@ -1783,6 +1801,17 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "P20100141" ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a prismatic case with a nominal length of 20 mm, width of 100 mm, and height of 141 mm"@en . +:electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d a owl:Class ; + rdfs:label "FuelCell"@en ; + rdfs:comment "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; + rdfs:subClassOf :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; + skos:prefLabel "FuelCell"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q180253"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-05"@en ; + emmo:EMMO_6dd685dd_1895_46e4_b227_be9f7d643c25 "https://dbpedia.org/page/Fuel_cell"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; + emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Fuel_cell"@en . + :electrochemistry_bea04148_10d9_4eda_9cd5_8f609d7e9ff8 a owl:Class ; rdfs:label "CelsiusTemperatureMeasurement"@en ; rdfs:comment "measurement of temperature"@en ; @@ -3335,15 +3364,6 @@ schema:name a owl:AnnotationProperty . "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-26"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "interface between an electrolyte and an electrode where an electrode reaction takes place."@en . -:electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c a owl:Class ; - rdfs:label "PastedPlate"@en ; - rdfs:comment "plate in which the active material is applied as a paste to a conductive current collector"@en ; - rdfs:subClassOf :electrochemistry_92147e31_d015_4889_a092_04fbab033f15 ; - skos:altLabel "PastedElectrode"@en ; - skos:prefLabel "PastedPlate"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "plate in which the active material is applied as a paste to a conductive current collector"@en . - :electrochemistry_a462859d_d8bd_48ea_8bde_1576f1248a1e a owl:Class ; rdfs:label "SilverElectrode"@en ; rdfs:comment "electrode in the form of foil, mesh, wire, rod, tube, powder, pellets, or single crystal of silver"@en ; @@ -3459,17 +3479,6 @@ of other configurations are used."""@en . emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-19"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "part which insures insulation between the plate (electrode) edges and adjacent plates (electrodes) and the container side walls"@en . -:electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d a owl:Class ; - rdfs:label "FuelCell"@en ; - rdfs:comment "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - rdfs:subClassOf :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; - skos:prefLabel "FuelCell"@en ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q180253"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-05"@en ; - emmo:EMMO_6dd685dd_1895_46e4_b227_be9f7d643c25 "https://dbpedia.org/page/Fuel_cell"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Fuel_cell"@en . - :electrochemistry_bed5b5f9_b89d_45e3_a8c2_81b70ae21847 a owl:Class ; rdfs:label "SeriesParallelConnection"@en ; rdfs:comment "arrangement of cells or batteries wherein in series connected cells or batteries are connected in parallel."@en ; @@ -4518,15 +4527,20 @@ schema:Person a owl:Class ; skos:prefLabel "BimetallicOxideElectrode"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "an electrode consisting of two metal oxide active materials"@en . -:electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 a owl:Class ; - rdfs:label "GalvanostaticProcess"@en ; - rdfs:comment "a process in which the electric current is kept constant"@en ; - rdfs:subClassOf [ a owl:Restriction ; - owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; - owl:someValuesFrom :electrochemistry_22725105_c941_4b14_a4a2_fcb627958607 ], - :electrochemistry_5548f188_df00_4c05_ae98_7846e92efe36 ; - skos:prefLabel "GalvanostaticProcess"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a process in which the electric current is kept constant"@en . +:electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 a owl:Class ; + rdfs:label "ActiveMaterial"@en ; + rdfs:comment "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; + rdfs:subClassOf :electrochemistry_b5ea31c9_bb10_4276_980e_c3eceb1efc82, + :electrochemistry_ebdb68e9_c4b5_4d57_a042_c0f51d446755 ; + skos:altLabel "ActiveElectrochemicalMaterial"@en, + "ElectrochemicallyActiveMaterial"@en ; + skos:prefLabel "ActiveMaterial"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q120907375" ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-33", + "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-14"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; + emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "material which reacts chemically to produce electric energy when the cell discharges", + "in secondary cells, the active material is restored to its original state during charge"@en . :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 a owl:Class ; rdfs:label "PotentiometricStrippingAnalysis"@en ; @@ -4601,20 +4615,15 @@ schema:Person a owl:Class ; "The electrode (or interfacial) reaction involves all the processes (chemical reaction, structural reorganization, adsorption) accompanying the charge transfer step."@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1351/goldbook.E01960"@en . -:electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 a owl:Class ; - rdfs:label "ActiveMaterial"@en ; - rdfs:comment "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; - rdfs:subClassOf :electrochemistry_b5ea31c9_bb10_4276_980e_c3eceb1efc82, - :electrochemistry_ebdb68e9_c4b5_4d57_a042_c0f51d446755 ; - skos:altLabel "ActiveElectrochemicalMaterial"@en, - "ElectrochemicallyActiveMaterial"@en ; - skos:prefLabel "ActiveMaterial"@en ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q120907375" ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-33", - "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-14"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "material which reacts chemically to produce electric energy when the cell discharges", - "in secondary cells, the active material is restored to its original state during charge"@en . +:electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 a owl:Class ; + rdfs:label "GalvanostaticProcess"@en ; + rdfs:comment "a process in which the electric current is kept constant"@en ; + rdfs:subClassOf [ a owl:Restriction ; + owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; + owl:someValuesFrom :electrochemistry_22725105_c941_4b14_a4a2_fcb627958607 ], + :electrochemistry_5548f188_df00_4c05_ae98_7846e92efe36 ; + skos:prefLabel "GalvanostaticProcess"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a process in which the electric current is kept constant"@en . :electrochemistry_8a1c9a7b_978c_4421_a9c1_d0b07b42aab9 a owl:Class ; rdfs:label "ChemicalReaction"@en ; @@ -4953,9 +4962,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "extremely resistant to many chemicals, impermeable to gases and liquids, and has good electrical conductivity, high hardness and strength, and biocompatibility"@en . + owl:annotatedTarget "electrode made of glassy carbon material with an intertwined graphitic ribbon structure, formed by pyrolysis of a resol precursor at temperatures up to 3000 °C"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -4976,28 +4985,22 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "A disc electrode that is embedded in the centre of a cylinder which rotates in solution around the longitudinal cylinder axis."@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "composite system in which the supplied electric energy mainly produces chemical reactions or, conversely, in which the energy released by chemical reactions is mainly delivered by the system as electric energy"@en . + owl:annotatedTarget "a system containing two electrodes that allow transport of electrons, separated by an electrolyte that allows movement of ions but blocks movement of electrons."@en . [] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "system that consists of at least two electron conductors (electrodes) in contact with ionic conductors (electrolytes)"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" . + owl:annotatedTarget "composite system in which the supplied electric energy mainly produces chemical reactions or, conversely, in which the energy released by chemical reactions is mainly delivered by the system as electric energy"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "glassy carbon combines glass-like mechanical characteristics with physical properties similar to graphite, owing to its “graphene ribbon” structure"@en . - -[] a owl:Axiom ; - dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "a system containing two electrodes that allow transport of electrons, separated by an electrolyte that allows movement of ions but blocks movement of electrons."@en . + owl:annotatedTarget "extremely resistant to many chemicals, impermeable to gases and liquids, and has good electrical conductivity, high hardness and strength, and biocompatibility"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5033,13 +5036,13 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "one of the most frequently used working electrodes"@en . + owl:annotatedTarget "glassy carbon combines glass-like mechanical characteristics with physical properties similar to graphite, owing to its “graphene ribbon” structure"@en . [] a owl:Axiom ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; - owl:annotatedTarget "in secondary cells, the active material is restored to its original state during charge"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedTarget "material that is oxidized or reduced at an electrode in an electrochemical cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5047,12 +5050,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; owl:annotatedTarget "material which reacts chemically to produce electric energy when the cell discharges" . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; - owl:annotatedTarget "material that is oxidized or reduced at an electrode in an electrochemical cell"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5061,9 +5058,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "electrode made of glassy carbon material with an intertwined graphitic ribbon structure, formed by pyrolysis of a resol precursor at temperatures up to 3000 °C"@en . + owl:annotatedTarget "one of the most frequently used working electrodes"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5083,18 +5080,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_83f2b1e9_cb67_4dbf_977f_ba54bbae374f ; owl:annotatedTarget "charge during which the electric current is maintained at a constant value regardless of the battery voltage or temperature"@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; - owl:annotatedTarget "Electrolyte solution in the anodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the anode is placed."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; owl:annotatedTarget "electrolyte on the anode side of an electrochemical cell that is divided into compartments"@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; + owl:annotatedTarget "Electrolyte solution in the anodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the anode is placed."@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5133,15 +5130,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_8d3bf304_78e4_4e99_abe1_6ab429e44ed1 ; - owl:annotatedTarget "a sealed cell may be equipped with a safety device to prevent a dangerously high internal pressure and is designed to operate during its life in its original sealed state"@en . + owl:annotatedTarget "cell which remains closed and does not release either gas or liquid when operated within the limits specified by the manufacturer"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_8d3bf304_78e4_4e99_abe1_6ab429e44ed1 ; - owl:annotatedTarget "cell which remains closed and does not release either gas or liquid when operated within the limits specified by the manufacturer"@en . + owl:annotatedTarget "a sealed cell may be equipped with a safety device to prevent a dangerously high internal pressure and is designed to operate during its life in its original sealed state"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5150,10 +5147,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "capacitor consisting of a metallic plate as first conductor, a very thin oxide film formed on the metal as the dielectric and an electrolyte as second conductor"@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_06d8e1ee_924a_4915_998d_33a69f41dadc ; - owl:annotatedTarget "operation during which an electrochemical cell supplies electric energy as the result of chemical changes within the cell"@en . + owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; + owl:annotatedTarget "two-step electrochemical measurement in which 1) material is accumulated at an electrode and 2) the material is removed by chemical reaction or electrochemically at constant current with measurement of electrode potential"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5161,6 +5158,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; owl:annotatedTarget "historically for the analysis of metal ions, mercury ions were added to the test solution to form a mercury amalgam when reduced. Alternatively, an HMDE or MFE was used and the oxidizing agent added after amalgam formation. However, the toxicity of mercury and its compounds have all but precluded the present-day use of mercury"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_06d8e1ee_924a_4915_998d_33a69f41dadc ; + owl:annotatedTarget "operation during which an electrochemical cell supplies electric energy as the result of chemical changes within the cell"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5179,12 +5182,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; owl:annotatedTarget "the time between changes in potential in step 2 is related to the concentration of analyte in the solution"@en . -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; - owl:annotatedTarget "two-step electrochemical measurement in which 1) material is accumulated at an electrode and 2) the material is removed by chemical reaction or electrochemically at constant current with measurement of electrode potential"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5211,15 +5208,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_9ee6e728_e8f5_4b36_a045_d63da69dfc85 ; - owl:annotatedTarget "overcharge is also the act of charging beyond a certain limit specified by the manufacturer"@en . + owl:annotatedTarget "continued charging of a fully charged secondary cell or battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_9ee6e728_e8f5_4b36_a045_d63da69dfc85 ; - owl:annotatedTarget "continued charging of a fully charged secondary cell or battery"@en . + owl:annotatedTarget "overcharge is also the act of charging beyond a certain limit specified by the manufacturer"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5227,6 +5224,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_9f466223_e20a_474d_ac4d_6d4b6131c275 ; owl:annotatedTarget "an electrode that holds its potential essentially constant by efficiently allowing electric current to pass"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_a0580fa9_5073_44af_b33e_7adbc83892d0 ; + owl:annotatedTarget "electrode reaction in which oxidation occurs at the anode"@en . + [] a owl:Axiom ; dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5242,14 +5245,14 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0580fa9_5073_44af_b33e_7adbc83892d0 ; - owl:annotatedTarget "electrode reaction in which oxidation occurs at the anode"@en . + owl:annotatedSource :electrochemistry_a0a619d7_da95_41f0_8bc3_9c19d636d543 ; + owl:annotatedTarget "electrode that serves only as a source or sink for electrons without playing a chemical role in the electrode reaction"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0a619d7_da95_41f0_8bc3_9c19d636d543 ; - owl:annotatedTarget "electrode that serves only as a source or sink for electrons without playing a chemical role in the electrode reaction"@en . + owl:annotatedSource :electrochemistry_a0fcb105_587f_45d8_a89a_46dc8f745069 ; + owl:annotatedTarget "partial or complete external covering of a cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5260,14 +5263,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0fcb105_587f_45d8_a89a_46dc8f745069 ; - owl:annotatedTarget "partial or complete external covering of a cell"@en . - -[] a owl:Axiom ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c ; - owl:annotatedTarget "plate in which the active material is applied as a paste to a conductive current collector"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedSource :electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e ; + owl:annotatedTarget "process inside an electrolytic cell used to coat a conductive object with a layer of a material"@en . [] a owl:Axiom ; dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; @@ -5278,8 +5275,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e ; - owl:annotatedTarget "process inside an electrolytic cell used to coat a conductive object with a layer of a material"@en . + owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; + owl:annotatedTarget "component of a cell which permits the flow of gas in one direction only"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5287,12 +5284,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; owl:annotatedTarget "a valve has a characteristic venting or opening and closing pressure"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; - owl:annotatedTarget "component of a cell which permits the flow of gas in one direction only"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5305,6 +5296,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a462859d_d8bd_48ea_8bde_1576f1248a1e ; owl:annotatedTarget "electrode in the form of foil, mesh, wire, rod, tube, powder, pellets, or single crystal of silver"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; + owl:annotatedTarget "a chemical reaction in an electrolyte involving a transfer of electrons between chemical components or between chemical components and an electrode"@en . + [] a owl:Axiom ; dcterms:source "Bockris, J. O'M. and Despić, . Aleksandar R. (2011, December 15). Electrochemical reaction. Encyclopedia Britannica. https://www.britannica.com/science/electrochemical-reaction" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5317,12 +5314,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; owl:annotatedTarget "the electrode reaction can also involve other chemical reactions including subreactions on a cell electrode"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; - owl:annotatedTarget "a chemical reaction in an electrolyte involving a transfer of electrons between chemical components or between chemical components and an electrode"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5355,15 +5346,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_ae56cce3_7a7c_4e53_bb58_31e0d642d47e ; - owl:annotatedTarget "this flame front may originate from a spark or an external naked flame igniting combustible electrolysis gas"@en . + owl:annotatedTarget "vent of special design which provides protection against the propagation of a flame front from or into the interior of a secondary cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_ae56cce3_7a7c_4e53_bb58_31e0d642d47e ; - owl:annotatedTarget "vent of special design which provides protection against the propagation of a flame front from or into the interior of a secondary cell"@en . + owl:annotatedTarget "this flame front may originate from a spark or an external naked flame igniting combustible electrolysis gas"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5395,6 +5386,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_b525a629_a679_464f_bc5b_b49d2fc82686 ; owl:annotatedTarget "an electrochemical cell for conductivity measurements"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; + owl:annotatedTarget "by convention, cell electrode at which an oxidation reaction occurs"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5419,12 +5416,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; owl:annotatedTarget "the concepts of “anode” and “cathode” are related only to the direction of electron flow, not to the polarity of the electrodes"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; - owl:annotatedTarget "by convention, cell electrode at which an oxidation reaction occurs"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5433,15 +5424,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_b79d4f9e_5727_4895_8d7f_5fc18d83eb90 ; - owl:annotatedTarget "in a galvanic cell, parasitic reactions may cause inefficiencies or loss of performance"@en . + owl:annotatedTarget "an unwanted side reaction"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_b79d4f9e_5727_4895_8d7f_5fc18d83eb90 ; - owl:annotatedTarget "an unwanted side reaction"@en . + owl:annotatedTarget "in a galvanic cell, parasitic reactions may cause inefficiencies or loss of performance"@en . [] a owl:Axiom ; dcterms:source "IEEE Standard Glossary of Stationary Battery Terminology (2016), https://doi.org/10.1109/IEEESTD.2016.7552407" ; @@ -5481,12 +5472,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_bbae1ef4_0a95_4e7d_9932_1bf939129eef ; owl:annotatedTarget "current-potential curve in a voltammetry experiment"@en . -[] a owl:Axiom ; - dcterms:source "https://en.wikipedia.org/wiki/Square_wave" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0e33278b_639f_412d_9abd_64c3790026ef ; - owl:annotatedTarget "Periodic potential where the amplitude alternates at a steady frequency between fixed minimum and maximum values, with the same duration at minimum and maximum."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5500,10 +5485,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "part which insures insulation between the plate (electrode) edges and adjacent plates (electrodes) and the container side walls"@en . [] a owl:Axiom ; + dcterms:source "https://en.wikipedia.org/wiki/Square_wave" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d ; - owl:annotatedTarget "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedSource :electrochemistry_0e33278b_639f_412d_9abd_64c3790026ef ; + owl:annotatedTarget "Periodic potential where the amplitude alternates at a steady frequency between fixed minimum and maximum values, with the same duration at minimum and maximum."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5535,12 +5520,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_c3f4b34a_0e2c_46f3_baab_4ebd2682d26f ; owl:annotatedTarget "An ionic liquid is an electrolyte composed of a salt that is liquid below 100 °C. Ionic liquids have found uses in electrochemical analysis, because their unconventional properties include a negligible vapor pressure, a high thermal and electrochemical stability, and exceptional dissolution properties for both organic and inorganic chemical species."@en . -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; - owl:annotatedTarget "Electron conductor in an electrochemical cell connected to the external circuit."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5553,6 +5532,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_c55ec02c_b727_4df1_97ce_91d7bb5d5e91 ; owl:annotatedTarget "unplanned escape of electrolyte, gas or other material from a cell or battery"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_c610d869_cc03_44f0_b40d_ca86e945b9c9 ; + owl:annotatedTarget "cell from which electrolyte cannot escape regardless of its orientation"@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5562,8 +5547,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_c610d869_cc03_44f0_b40d_ca86e945b9c9 ; - owl:annotatedTarget "cell from which electrolyte cannot escape regardless of its orientation"@en . + owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; + owl:annotatedTarget "electronically conductive part in electric contact with a medium of lower electronic conductivity and intended to perform one or more of the functions of emitting charge carriers to or receiving charge carriers from that medium or to establish an electric field in that medium"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5579,21 +5564,21 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; - owl:annotatedTarget "by convention, an oxidation reaction occurs during discharge"@en . + owl:annotatedTarget "for a device having two electrodes, that electrode having the lower electric potential"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; - owl:annotatedTarget "electronically conductive part in electric contact with a medium of lower electronic conductivity and intended to perform one or more of the functions of emitting charge carriers to or receiving charge carriers from that medium or to establish an electric field in that medium"@en . + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; + owl:annotatedTarget "by convention, an oxidation reaction occurs during discharge"@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; - owl:annotatedTarget "for a device having two electrodes, that electrode having the lower electric potential"@en . + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; + owl:annotatedTarget "Electron conductor in an electrochemical cell connected to the external circuit."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5604,8 +5589,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0f827b54_370d_4c63_99a6_80f13b24e55e ; - owl:annotatedTarget "evolution of gas resulting from electrolysis of the water in the electrolyte of a cell"@en . + owl:annotatedSource :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; + owl:annotatedTarget "set of operations that is carried out on a secondary cell or battery and is repeated regularly in the same sequence."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5622,14 +5607,14 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; - owl:annotatedTarget "set of operations that is carried out on a secondary cell or battery and is repeated regularly in the same sequence."@en . + owl:annotatedSource :electrochemistry_d5da9948_e95b_4f12_a2d2_10a48f390c52 ; + owl:annotatedTarget "arrangement of cells or batteries wherein parallel connected cells or batteries are connected in series."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_d5da9948_e95b_4f12_a2d2_10a48f390c52 ; - owl:annotatedTarget "arrangement of cells or batteries wherein parallel connected cells or batteries are connected in series."@en . + owl:annotatedSource :electrochemistry_0f827b54_370d_4c63_99a6_80f13b24e55e ; + owl:annotatedTarget "evolution of gas resulting from electrolysis of the water in the electrolyte of a cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5655,18 +5640,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_df78745e_f9db_4830_88f0_8ce074fcb8ff ; owl:annotatedTarget "liquid metal electrode used in polarography"@en . +[] a owl:Axiom ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; + owl:annotatedTarget "electrochemical cell in which chemical reactions occur spontaneously and chemical energy is converted into electrical energy."@en . + [] a owl:Axiom ; dcterms:references "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; owl:annotatedTarget "An electrochemical cell that spontaneously produces work."@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_113e0469_8ae0_407f_892d_4b988f8d8a08 ; - owl:annotatedTarget "electrochemical cell that has two half-cells separated by a wall permeable to ions, both containing the same electrolyte differing only in their temperatures."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5674,16 +5659,22 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "Electrochemical cell intended to produce electric energy."@en . [] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; - owl:annotatedTarget "electrochemical cell in which chemical reactions occur spontaneously and chemical energy is converted into electrical energy."@en . + owl:annotatedSource :electrochemistry_e2a1dae1_05e4_4bd1_a39d_0eb10db482bc ; + owl:annotatedTarget "method of separating and neutralizing ions by an electric current in an electrolytic cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e2a1dae1_05e4_4bd1_a39d_0eb10db482bc ; - owl:annotatedTarget "method of separating and neutralizing ions by an electric current in an electrolytic cell"@en . + owl:annotatedSource :electrochemistry_113e0469_8ae0_407f_892d_4b988f8d8a08 ; + owl:annotatedTarget "electrochemical cell that has two half-cells separated by a wall permeable to ions, both containing the same electrolyte differing only in their temperatures."@en . + +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; + owl:annotatedTarget "electrochemical cell intended to produce chemical reactions"@en . [] a owl:Axiom ; dcterms:references "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; @@ -5697,18 +5688,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; owl:annotatedTarget "Electrochemical cell in which electrical energy is converted into chemical energy."@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; - owl:annotatedTarget "electrochemical cell intended to produce chemical reactions"@en . - -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_1152ae6b_8b57_4d99_912e_40c6a29342fb ; - owl:annotatedTarget "mass m of electrochemically-transformed substance is proportional to the charge Q passed, m ∝ Q."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5721,6 +5700,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_ec1dce8b_bb46_41a9_b532_6bed381aa557 ; owl:annotatedTarget "secondary cell having a cover provided with an opening through which products of electrolysis and evaporation are allowed to escape freely from the cell to the atmosphere"@en . +[] a owl:Axiom ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_1152ae6b_8b57_4d99_912e_40c6a29342fb ; + owl:annotatedTarget "mass m of electrochemically-transformed substance is proportional to the charge Q passed, m ∝ Q."@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5739,12 +5724,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f0c24970_4c14_4207_bd78_5f2181a67085 ; owl:annotatedTarget "the process of forming a film or a bulk material using an electrochemical process where the electrons are supplied by an external power supply"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_1355816f_a2b5_4800_8001_fc888f5d6b1b ; - owl:annotatedTarget "instrument intended to measure the value of a voltage."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5757,6 +5736,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f47611a2_e081_47f0_b287_3fda5f706154 ; owl:annotatedTarget "chemical reaction which occurs in addition to the main process"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; + owl:annotatedTarget "electrode reaction in which reduction occurs at the cathode"@en . + +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_1355816f_a2b5_4800_8001_fc888f5d6b1b ; + owl:annotatedTarget "instrument intended to measure the value of a voltage."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5769,12 +5760,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; owl:annotatedTarget "electrode reaction, where the energy of electrons in the working electrode is higher than the LUMO orbital of the substrate"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; - owl:annotatedTarget "electrode reaction in which reduction occurs at the cathode"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5782,10 +5767,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "electrode that responds to one, or more than one, species in the solution being investigated, with no appreciable change of bulk solution composition during the measurement"@en . [] a owl:Axiom ; - dcterms:source "IUPAC. Compendium of Chemical Terminology, 2nd ed. (the \"Gold Book\"). Compiled by A. D. McNaught and A. Wilkinson. Blackwell Scientific Publications, Oxford (1997). Online version (2019-) created by S. J. Chalk. ISBN 0-9678550-9-8. https://doi.org/10.1351/goldbook." ; + dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_15325775_6d4c_4192_82f1_e4feca9de426 ; - owl:annotatedTarget "A membrane having ion-exchange groups:"@en . + owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; + owl:annotatedTarget "a material in which the mobile species are ions and free movement of electrons is blocked."@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5799,18 +5784,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; owl:annotatedTarget "liquid or solid substance containing mobile ions that render it conductive"@en . +[] a owl:Axiom ; + dcterms:source "IUPAC. Compendium of Chemical Terminology, 2nd ed. (the \"Gold Book\"). Compiled by A. D. McNaught and A. Wilkinson. Blackwell Scientific Publications, Oxford (1997). Online version (2019-) created by S. J. Chalk. ISBN 0-9678550-9-8. https://doi.org/10.1351/goldbook." ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_15325775_6d4c_4192_82f1_e4feca9de426 ; + owl:annotatedTarget "A membrane having ion-exchange groups:"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; owl:annotatedTarget "substance that provides ions on dissolution in a solvent or on melting"@en . -[] a owl:Axiom ; - dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; - owl:annotatedTarget "a material in which the mobile species are ions and free movement of electrons is blocked."@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5823,18 +5808,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_fb9bf7cb_dd4b_4391_99a1_628263dd6940 ; owl:annotatedTarget "measuring instrument to obtain the electrical charge passed in an experiment, or to produce a known amount of substance in a titration."@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; - owl:annotatedTarget "Electrolyte solution in the cathodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the cathode is placed."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; owl:annotatedTarget "electrolyte on the cathode side of an electrochemical cell that is divided into compartments."@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; + owl:annotatedTarget "Electrolyte solution in the cathodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the cathode is placed."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5931,18 +5916,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_2d32a81a_2148_41bd_84fb_467aa8de4a8f ; owl:annotatedTarget "foil, wire, disc, or mesh electrode made of platinum, which is the most commonly used metallic working electrode in electrochemistry"@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; - owl:annotatedTarget "An interfacial reaction that necessarily involves a charge-transfer step."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; owl:annotatedTarget "electrochemical reaction involving the transfer of electrons between electrolyte and electrode"@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; + owl:annotatedTarget "An interfacial reaction that necessarily involves a charge-transfer step."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5957,15 +5942,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_328c6e36_3706_4d92_abae_432fa3adb2a0 ; - owl:annotatedTarget "a cell baffle has a second function in protecting the plate pack from damage by objects inserted through the filling hole"@en . + owl:annotatedTarget "internal component used to reduce the amount of electrolyte loss due to electrolyte spray being carried in the gas and/or by electrolyte movement"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_328c6e36_3706_4d92_abae_432fa3adb2a0 ; - owl:annotatedTarget "internal component used to reduce the amount of electrolyte loss due to electrolyte spray being carried in the gas and/or by electrolyte movement"@en . + owl:annotatedTarget "a cell baffle has a second function in protecting the plate pack from damage by objects inserted through the filling hole"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5979,6 +5964,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_34bc54e3_de4c_41f8_8d3a_d77c951ee23a ; owl:annotatedTarget "needle-like or tree-like formation of crystalline growth formed during deposition of a material"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; + owl:annotatedTarget "by convention, cell electrode at which, a reduction reaction occurs"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5997,12 +5988,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; owl:annotatedTarget "the concepts of “anode” and “cathode” are related only to the direction of electron flow, not to the polarity of the electrodes"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; - owl:annotatedTarget "by convention, cell electrode at which, a reduction reaction occurs"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -6023,15 +6008,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_3f6c9e09_5f23_41cc_9f85_7de365cef089 ; - owl:annotatedTarget "electrolyte creep is sometimes indicated by the presence of a visible solid deposit or wet spots"@en . + owl:annotatedTarget "gradual and slow spreading of an electrolyte film on the external surface of a cell or battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_3f6c9e09_5f23_41cc_9f85_7de365cef089 ; - owl:annotatedTarget "gradual and slow spreading of an electrolyte film on the external surface of a cell or battery"@en . + owl:annotatedTarget "electrolyte creep is sometimes indicated by the presence of a visible solid deposit or wet spots"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -6041,9 +6026,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_04f28ce3_251d_429e_aa85_ab3eb45bbcd2 ; - owl:annotatedTarget "in lithium batteries thermal runaway may cause melting of lithium"@en . + owl:annotatedTarget "unstable condition arising during constant voltage charge in which the rate of heat dissipation capability, causing a continuous temperature increase with resulting further charge current increase, which can lead to the destruction of the battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -6077,9 +6062,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_04f28ce3_251d_429e_aa85_ab3eb45bbcd2 ; - owl:annotatedTarget "unstable condition arising during constant voltage charge in which the rate of heat dissipation capability, causing a continuous temperature increase with resulting further charge current increase, which can lead to the destruction of the battery"@en . + owl:annotatedTarget "in lithium batteries thermal runaway may cause melting of lithium"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; diff --git a/versions/0.15.2-beta/context/context.json b/versions/0.15.2-beta/context/context.json index ac1b0bb..2006ca7 100644 --- a/versions/0.15.2-beta/context/context.json +++ b/versions/0.15.2-beta/context/context.json @@ -1076,7 +1076,6 @@ "ButlerVolmerEquation": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d48ea516_5cac_4f86_bc88_21b6276c0938", "C": "https://w3id.org/emmo#EMMO_36a9bf69_483b_42fd_8a0c_7ac9206320bc", "CASRN": "https://w3id.org/emmo#EMMO_d2a47cd8_662f_438f_855a_b4378eb992ff", - "CCCVCycling": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e", "CPlusPlus": "https://w3id.org/emmo#EMMO_64aba1e5_24b7_4140_8eb4_676c35698e79", "CRate": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_e1fd84eb_acdb_4b2c_b90c_e899d552a3ee", "CSharp": "https://w3id.org/emmo#EMMO_268a8a97_3a6f_4022_93da_962a66827cdc", @@ -1285,7 +1284,7 @@ "CoatingThickness": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3b938708_e7e4_4ac0_a959_9c04306302e7", "Cobalt": "https://w3id.org/emmo/domain/chemical-substance#substance_8f857eb2_7cc8_4294_954d_e69f2842c084", "CobaltAtom": "https://w3id.org/emmo#EMMO_3fe9d899_f1f1_5657_b176_ac6afff2e93d", - "CobaltBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_838c115b_6bc9_4ce8_9f8d_86a6bf67742a", + "CobaltBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7b811780_7251_481b_a4d3_97d437955099", "CobaltHydroxide": "https://w3id.org/emmo/domain/chemical-substance#substance_29b1c15d_2632_40d7_88f7_43575b68b988", "CobaltIIAcetate": "https://w3id.org/emmo/domain/chemical-substance#substance_4310c690_9810_4a95_8d62_7e78e0b84437", "CobaltIIBistrifluoromethanesulfonylimide": "https://w3id.org/emmo/domain/chemical-substance#substance_f4dffee2_c642_4114_a748_5e93b3908380", @@ -1358,6 +1357,7 @@ "ConstantCurrentCharging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_83f2b1e9_cb67_4dbf_977f_ba54bbae374f", "ConstantCurrentChargingCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_37c38b7e_9ded_481a_85fd_a467f1ee2b9f", "ConstantCurrentConstantVoltageCharging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0cc8f231_0ce5_467e_9c76_29b2c80349ad", + "ConstantCurrentConstantVoltageCycling": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e", "ConstantCurrentDischarging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_53fe3f58_0802_41cf_af69_4784fc42cc30", "ConstantCurrentDischargingCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_08833ed2_6324_411a_b34b_fe64c44cd5ef", "ConstantPotentialPulses": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_84d37a37_88bd_47db_9425_31f73a81d38c", @@ -1590,7 +1590,7 @@ "DeviceTemperature": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_463950b9_fd8d_48de_a52d_b29cab026391", "DewPointTemperature": "https://w3id.org/emmo#EMMO_a383e332_a271_463f_9e44_559604547220", "Diameter": "https://w3id.org/emmo#EMMO_c1c8ac3c_8a1c_4777_8e0b_14c1f9f9b0c6", - "Dichloromethane": "https://w3id.org/emmo/domain/chemical-substance#substance_8385c3c4_5906_48f6_b6b6_4bb60dccc27a", + "Dichloromethane": "https://w3id.org/emmo/domain/chemical-substance#substance_a6feec60_5fe7_4687_b427_3bf2ed06008d", "DieCasting": "https://w3id.org/emmo#EMMO_a85d0b8a_588e_423f_b799_97b0890e9183", "DielectricAndImpedanceSpectroscopy": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#DielectricAndImpedanceSpectroscopy", "Dielectrometry": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Dielectrometry", @@ -1624,7 +1624,7 @@ "Dimethoxyethane": "https://w3id.org/emmo/domain/chemical-substance#substance_b6ecabf9_14a4_4808_a139_55329e70ad42", "Dimethoxymethane": "https://w3id.org/emmo/domain/chemical-substance#substance_21954b0b_c05c_42db_b276_3a931d8aabb1", "DimethylCarbonate": "https://w3id.org/emmo/domain/chemical-substance#substance_c4a7d7bd_497e_457e_b858_ff73254266d0", - "DimethylSulfoxide": "https://w3id.org/emmo/domain/chemical-substance#substance_b593b5dd_7957_4b85_856a_dd59775210b6", + "DimethylSulfoxide": "https://w3id.org/emmo/domain/chemical-substance#substance_ea68e1a4_6be8_4686_8701_ba88b40d00b7", "Dimethylformamide": "https://w3id.org/emmo/domain/chemical-substance#substance_769bdc09_f533_4fde_bb53_20339d5bfcb7", "Dimethylpropyleneurea": "https://w3id.org/emmo/domain/chemical-substance#substance_945c68da_3baf_4da6_b794_dca7aebc4ca7", "Dimethylsulfate": "https://w3id.org/emmo/domain/chemical-substance#substance_3c8fb431_7d9d_4a89_a494_708df34f44d3", @@ -1837,7 +1837,7 @@ "ElectronicModel": "https://w3id.org/emmo#EMMO_6eca09be_17e9_445e_abc9_000aa61b7a11", "ElectronvoltPerMetre": "https://w3id.org/emmo#ElectronvoltPerMetre", "Electroosmosis": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_5641910f_6e69_4ce4_be84_4b1bf14b8916", - "Electroplating": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e", + "Electroplating": "https://w3id.org/emmo#EMMO_30e3edb5_0977_4b9b_9aed_5a4d16c1c07c", "ElementalMaterial": "https://w3id.org/emmo#EMMO_a086af15_a7c3_404c_b4ce_c8e4466f1b4b", "ElementalSubstance": "https://w3id.org/emmo#EMMO_436b11bd_1756_4821_9f14_c9ed6b67552e", "ElementaryBoson": "https://w3id.org/emmo#EMMO_cafd0f10_ce85_48b9_9a36_2b0af141ce21", @@ -2192,11 +2192,12 @@ "ISQBaseQuantity": "https://w3id.org/emmo#EMMO_1a4c1a97_88a7_4d8e_b2f9_2ca58e92dde4", "ISQDerivedQuantity": "https://w3id.org/emmo#EMMO_2946d40b_24a1_47fa_8176_e3f79bb45064", "ISQDimensionlessQuantity": "https://w3id.org/emmo#EMMO_a66427d1_9932_4363_9ec5_7d91f2bfda1e", - "IUPACName": "https://w3id.org/emmo#EMMO_16a3bd5c_75f0_42b3_b000_cb0d018f840e", + "IUPACName": "https://w3id.org/emmo#EMMO_f652e7d2_0b33_4d10_8d0f_2f70089982ba", "IUPACNomencalture": "https://w3id.org/emmo#EMMO_91a0635a_a89a_46de_8928_04a777d145c7", "Icon": "https://w3id.org/emmo#EMMO_d7788d1a_020d_4c78_85a1_13563fcec168", "Illuminance": "https://w3id.org/emmo#EMMO_b51fbd00_a857_4132_9711_0ef70e7bdd20", "IlluminanceTimeUnit": "https://w3id.org/emmo#EMMO_e467cc3f_676c_432e_b70e_19237d1bcc78", + "ImaginaryElectricImpedance": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626", "Impedimetry": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Impedimetry", "InChI": "https://w3id.org/emmo#EMMO_d74ed682_894f_46c5_87cb_167f60926965", "IncreasingPotentialPulses": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_77be01ef_49bd_4f2e_bec8_eec0894b8562", @@ -2288,7 +2289,7 @@ "IridiumSymbol": "https://w3id.org/emmo#EMMO_b8aab013_b729_51f1_bc14_5302e7f97cbe", "Iron": "https://w3id.org/emmo/domain/chemical-substance#substance_89fd13e8_8061_41da_83f4_634144116425", "IronAtom": "https://w3id.org/emmo#EMMO_a4839f08_1080_53bf_9cb3_101e20c2656b", - "IronBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_cc4e178c_bc1f_4502_b6c2_33f304ef6bab", + "IronBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_5e1136d3_df00_40f7_a4bc_8259341053a1", "IronDisulfide": "https://w3id.org/emmo/domain/chemical-substance#substance_c728b6b9_449a_45ff_b5ae_6b7968708f0d", "IronDisulfideElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d2726dd5_69f0_4cb1_bd3c_4c48813e57e7", "IronIIIHydroxide": "https://w3id.org/emmo/domain/chemical-substance#substance_323a2e39_d7d5_4802_884a_9aa41a280986", @@ -2556,6 +2557,7 @@ "LossFactor": "https://w3id.org/emmo#EMMO_c3796906_8063_47d4_92af_890ae08f25fa", "LowPressureCasting": "https://w3id.org/emmo#EMMO_8b2fd84c_8f51_4731_9bd7_830545e78b23", "LowerCriticalMagneticFluxDensity": "https://w3id.org/emmo#EMMO_fd4a6307_f9f7_4b54_b044_caa04e620232", + "LowerCurrentLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea", "LowerFrequencyLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_b66d6553_6136_4754_902a_707e414210c2", "LowerVoltageLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_534dd59c_904c_45d9_8550_ae9d2eb6bbc9", "Lumen": "https://w3id.org/emmo#Lumen", @@ -2608,7 +2610,7 @@ "MagnesiumTriflate": "https://w3id.org/emmo/domain/chemical-substance#substance_df24fad8_7ef0_4330_a3f2_c4d65d9a3be8", "MagnesiumTrifluoromethanesulfonyloxalatoborate": "https://w3id.org/emmo/domain/chemical-substance#substance_2b7473ba_9156_489a_880f_3a2f746cd104", "MagneticDipoleMoment": "https://w3id.org/emmo#EMMO_81e767f1_59b1_4d7a_bf69_17f322241831", - "MagneticDipoleMomentUnit": "https://w3id.org/emmo#EMMO_5073dc80_aec2_4a3b_8057_fababfcbfe11", + "MagneticDipoleMomentUnit": "https://w3id.org/emmo#EMMO_1c2226a9_22f0_40c8_8928_5a01d398f96e", "MagneticFieldStrength": "https://w3id.org/emmo#EMMO_b4895f75_41c8_4fd9_b6d6_4d5f7c99c423", "MagneticFieldStrengthUnit": "https://w3id.org/emmo#EMMO_e6b83139_ba92_4fbd_a8b2_c8dde55844a1", "MagneticFlux": "https://w3id.org/emmo#EMMO_3b931698_937e_49be_ab1b_36fa52d91181", @@ -2676,7 +2678,7 @@ "MassExcess": "https://w3id.org/emmo#EMMO_7dd84949_0afa_4313_9b89_7bb0dd2e7771", "MassFlow": "https://w3id.org/emmo#EMMO_6d61ee3c_c5b6_4452_bc11_e9c33af992a7", "MassFluxUnit": "https://w3id.org/emmo#EMMO_e35d4936_b2e3_4cd6_a437_f1c864b3d450", - "MassFraction": "https://w3id.org/emmo/disciplines/units/coherentsiunits#EMMO_089f13b1_ceb3_4d2a_8795_b4a2d92916da", + "MassFraction": "https://w3id.org/emmo#EMMO_7c055d65_2929_40e1_af4f_4bf10995ad50", "MassFractionOfDryMatter": "https://w3id.org/emmo#EMMO_8f171308_f902_42c5_ac1d_d5259022e9c1", "MassFractionOfWater": "https://w3id.org/emmo#EMMO_cac16ce6_2cef_405d_ac63_0f918db4875e", "MassFractionUnit": "https://w3id.org/emmo#EMMO_18448443_dcf1_49b8_a321_cf46e2c393e1", @@ -3027,6 +3029,7 @@ "NobeliumAtom": "https://w3id.org/emmo#EMMO_49eb0790_50c2_5691_a8bf_dfa6f4a9f6c7", "NobeliumSymbol": "https://w3id.org/emmo#EMMO_c1bb775c_0888_5b88_9cce_c49bae1d298b", "NobleGasElementalSubstance": "https://w3id.org/emmo/domain/chemical-substance#substance_cac14194_2d5f_4fe6_b794_a9319f6d76ee", + "NominalCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100", "NominalProperty": "https://w3id.org/emmo#EMMO_909415d1_7c43_4d5e_bbeb_7e1910159f66", "NominalVoltage": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_639b844a_e801_436b_985d_28926129ead6", "NonActivePower": "https://w3id.org/emmo#EMMO_83318add_d05e_40fc_93ea_c6cd605df437", @@ -3061,6 +3064,7 @@ "NumberOfFiniteVolumeCellsInX": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_e73586eb_8475_4879_a43e_087c702ea6bf", "NumberOfFiniteVolumeCellsInY": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_c2a85d02_c6b4_42df_b5ed_a9904ec34a5c", "NumberOfFiniteVolumeCellsInZ": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a5e00e3a_736c_4200_8d04_ed222fe07037", + "NumberOfIterations": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_88dd2bce_fb17_4705_905d_892681812290", "NumberOfTurnsInAWinding": "https://w3id.org/emmo#EMMO_eefaa0ef_e7d4_4633_bf79_655bb55f4a49", "Numeral": "https://w3id.org/emmo#EMMO_74b05aed_66bf_43c8_aa2c_752a9ca8be03", "Numerical": "https://w3id.org/emmo#EMMO_4ce76d7f_03f8_45b6_9003_90052a79bfaa", @@ -3211,7 +3215,7 @@ "Permittivity": "https://w3id.org/emmo#EMMO_0ee5779e_d798_4ee5_9bfe_c392d5bea112", "PermittivityUnit": "https://w3id.org/emmo#EMMO_5f89cb0c_3171_47ee_b2ab_027a07c34c4b", "Persistence": "https://w3id.org/emmo#EMMO_e04884d9_eda6_487e_93d5_7722d7eda96b", - "Person": "http://xmlns.com/foaf/0.1/Person", + "Person": "https://schema.org/Person", "Perspective": "https://w3id.org/emmo#EMMO_49267eba_5548_4163_8f36_518d65b583f9", "Peta": "https://w3id.org/emmo#EMMO_d7c74480_a568_4470_acff_f18b499cc850", "PetaPrefixedUnit": "https://w3id.org/emmo#EMMO_43a6b269_da31_4bb6_a537_c97df4fff32a", @@ -3298,7 +3302,7 @@ "Porosity": "https://w3id.org/emmo#EMMO_3a6578ac_aee0_43b9_9bc6_1eb208c8c9a9", "PorousElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3663991d_9319_4f7a_922b_f0e428b58801", "PorousSeparator": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_58413d4e_2885_459e_ac06_8d45e661cf91", - "PositionVector": "https://w3id.org/emmo#EMMO_4312cae4_03ba_457e_b35d_0671a7db350c", + "PositionVector": "https://w3id.org/emmo#EMMO_44da6d75_54a4_4aa8_bd3a_156f6e9abb8e", "PositiveElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_aff732a9_238a_4734_977c_b2ba202af126", "PositiveTerminal": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_522f0c0b_cf33_4328_af71_12e38dae6798", "Positron": "https://w3id.org/emmo#EMMO_26a38b26_38ea_4acf_b212_db9e34c71b7a", @@ -3483,7 +3487,7 @@ "R54215": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_fc9e7ba3_5084_4c2a_b488_c6a96af99232", "R616": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_dc019f3f_e5f3_4eeb_bab9_a845a02223a0", "R621": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_15ec346a_6d3c_4161_95e1_9cf889965f85", - "R626": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_68c1c36e_1548_4247_bae2_fe7102a2c4ff", + "R626": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6b275583_433f_46f7_aafd_ebc9409257cc", "R712": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_bb2faf17_b819_4876_b17f_fa82917cf85d", "R716": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_34cb7ea7_2436_46e0_806e_a3c7835ae228", "R721": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3279f575_1c62_4bf2_a6e8_de4c7ff36f8e", @@ -3535,6 +3539,7 @@ "ReactivePower": "https://w3id.org/emmo#EMMO_d8030875_6d89_4645_9728_bbc3b8690609", "ReactorTimeConstant": "https://w3id.org/emmo#EMMO_b03dfad7_eab8_4949_9d10_dd4fd12faaef", "Real": "https://w3id.org/emmo#EMMO_18d180e4_5e3e_42f7_820c_e08951223486", + "RealElectricImpedance": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f", "ReciprocalAmountPerVolumeUnit": "https://w3id.org/emmo#EMMO_aef218f9_6ded_4db9_9263_e78eed55e5d6", "ReciprocalCentiMetre": "https://w3id.org/emmo#ReciprocalCentiMetre", "ReciprocalCubicCentiMetre": "https://w3id.org/emmo#ReciprocalCubicCentiMetre", @@ -3637,6 +3642,7 @@ "ResponseTimeAtAnISE": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_1a104474_c326_4a29_ac26_26a05ac8f72c", "RestEnergy": "https://w3id.org/emmo#EMMO_5117c5fe_f661_46f8_83c3_b48947f1532a", "RestMass": "https://w3id.org/emmo#EMMO_3c947caf_4070_4c79_a3a3_e53274ac9944", + "Resting": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b", "RestingTime": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_2678a656_4a27_4706_8dde_b0a93e9b92fa", "ReversibleHydrogenElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0d9ba00d_04bc_4bdc_85af_3380694f6f68", "RevolutionPerMinute": "https://w3id.org/emmo#RevolutionPerMinute", @@ -3790,7 +3796,7 @@ "SiemensSquareMetrePerMole": "https://w3id.org/emmo#SiemensSquareMetrePerMole", "Sievert": "https://w3id.org/emmo#Sievert", "Sign": "https://w3id.org/emmo#EMMO_b21a56ed_f969_4612_a6ec_cb7766f7f31d", - "Signal": "https://w3id.org/emmo/domain/chameo#Signal", + "Signal": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Signal", "SignalReferencePotential": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_68059d94_4c21_4065_b329_07faeebc7e87", "Silicon": "https://w3id.org/emmo/domain/chemical-substance#substance_68c0876b_cb62_41cd_846d_95cc9d9a8733", "SiliconAtom": "https://w3id.org/emmo#EMMO_798b0c96_82ca_5ce8_8d5f_f9f72668cf5d", @@ -4318,6 +4324,7 @@ "UpQuark": "https://w3id.org/emmo#EMMO_0a3f04a6_ba3a_49d9_99da_08b0e26f51f0", "UpQuarkType": "https://w3id.org/emmo#EMMO_fc47b76f_ad01_4cd0_8fc6_55532000e7c8", "UpperCriticalMagneticFluxDensity": "https://w3id.org/emmo#EMMO_6bfe6ad2_96ba_4478_81e5_d8881c550757", + "UpperCurrentLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45", "UpperFrequencyLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_666f0b69_9c74_49a3_80b3_96a188332462", "UpperVoltageLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6dcd5baf_58cd_43f5_a692_51508e036c88", "UraniumAtom": "https://w3id.org/emmo#EMMO_b233f8c0_37d8_51ae_9264_560e6649e246", diff --git a/versions/0.15.2-beta/electrochemicalquantities.ttl b/versions/0.15.2-beta/electrochemicalquantities.ttl index 882a543..96cb275 100644 --- a/versions/0.15.2-beta/electrochemicalquantities.ttl +++ b/versions/0.15.2-beta/electrochemicalquantities.ttl @@ -24,8 +24,6 @@ emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f a owl:AnnotationProperty . emmo:EMMO_5c78b424_087b_4e31_8c91_6422f1be1e86 owl:equivalentClass :electrochemistry_9c657fdc_b9d3_4964_907c_f9a6e8c5f52b . -emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 :electrochemistry_097ea615_c209_4edd_a1a1_5eea71d98fe8 "acimp/ohms"@en . - emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry_37b24a94_cae0_4d7a_9519_9f7692dec607 ; skos:altLabel "MassDiffusivity"@en ; emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q604008"@en ; @@ -101,6 +99,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "D40ParticleSize"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 40% of the sample's particles fall."@en . +:electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626 a owl:Class ; + rdfs:label "ImaginaryElectricImpedance"@en ; + rdfs:comment "the imaginary part of the complex electric impedance"@en ; + rdfs:subClassOf emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 ; + skos:prefLabel "ImaginaryElectricImpedance"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the imaginary part of the complex electric impedance"@en . + :electrochemistry_02d2d1d1_241c_429b_b4e7_31f2c3dc4835 a owl:Class ; rdfs:label "D95ParticleSize"@en ; rdfs:comment "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 95% of the sample's particles fall."@en ; @@ -381,6 +386,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "D50ParticleSize"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 50% of the sample's particles fall."@en . +:electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45 a owl:Class ; + rdfs:label "UpperCurrentLimit"@en ; + rdfs:comment "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en ; + rdfs:subClassOf :electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 ; + skos:prefLabel "UpperCurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + :electrochemistry_3e54f9e3_a31d_4821_9bfb_ef953a42c35b a owl:Class ; rdfs:label "MaximumPulseDischargingCurrent"@en ; rdfs:comment "the maximum current approved for pulse discharge of an electrochemical device"@en ; @@ -608,6 +620,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "ChargingCurrent"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electric current applied to an electrochemical device during a charging process"@en . +:electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea a owl:Class ; + rdfs:label "LowerCurrentLimit"@en ; + rdfs:comment "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en ; + rdfs:subClassOf :electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 ; + skos:prefLabel "LowerCurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + :electrochemistry_7f073272_8925_4344_995c_a5a6dd1fcde6 a owl:Class ; rdfs:label "ChargingConstantCurrentPercentage"@en ; rdfs:comment "the percentage of the total charge capacity that is obtained during a constant current charge process"@en ; @@ -705,6 +724,20 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "DischargingSpecificCapacity"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "quotient of the capacity of a cell or battery [ or electrode or active material ] obtained during a discharge process by its mass."@en . +:electrochemistry_88dd2bce_fb17_4705_905d_892681812290 a owl:Class ; + rdfs:label "NumberOfIterations"@en ; + rdfs:comment "the number of times an iterative process should occur"@en ; + rdfs:subClassOf emmo:EMMO_ba882f34_0d71_4e4f_9d92_0c076c633a2c ; + skos:prefLabel "NumberOfIterations"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the number of times an iterative process should occur"@en . + +:electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100 a owl:Class ; + rdfs:label "NominalCapacity"@en ; + rdfs:comment "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en ; + rdfs:subClassOf :electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 ; + skos:prefLabel "NominalCapacity"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en . + :electrochemistry_8e943e12_ecc0_4093_899e_7226be6be7f2 a owl:Class ; rdfs:label "D90ParticleSize"@en ; rdfs:comment "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 90% of the sample's particles fall."@en ; @@ -820,6 +853,15 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the celsius temperature of the ambient environment"@en ; :electrochemistry_1b717a20_17e3_4480_8c60_c4ae94058f05 "Environmental_Temperature (C)"@en . +:electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f a owl:Class ; + rdfs:label "RealElectricImpedance"@en ; + rdfs:comment "the imaginary part of the complex electric impedance"@en ; + rdfs:subClassOf emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 ; + skos:altLabel "ACResistance"@en ; + skos:prefLabel "RealElectricImpedance"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q1048490"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the imaginary part of the complex electric impedance"@en . + :electrochemistry_ae108db7_8765_4329_9908_059277dee586 a owl:Class ; rdfs:label "StepCapacity"@en ; rdfs:comment "the amount of charge that has passed through an electrochemical device within the time interval of a given testing step"@en ; @@ -1084,8 +1126,8 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry ; dcterms:license "https://creativecommons.org/licenses/by/4.0/legalcode" ; owl:imports ; - owl:versionIRI ; - owl:versionInfo "0.17.0-beta" . + owl:versionIRI ; + owl:versionInfo "0.18.0-beta" . a owl:NamedIndividual, foaf:Person ; @@ -1866,6 +1908,8 @@ In either case, the magnitude of the catalytic current depends on the applied po emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electric potential of an ion-selective electrode (ISE) and activity of an analyte ion at which the potential of the ISE is independent of temperature"@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1351/goldbook.I03304"@en . +emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 :electrochemistry_097ea615_c209_4edd_a1a1_5eea71d98fe8 "acimp/ohms"@en . + emmo:EMMO_e218c625_6a39_47a9_8d08_a2ef41c152a9 rdfs:subClassOf :electrochemistry_02eb0465_4f94_453c_8c1f_5ddf80134634 ; skos:altLabel "GravimetricEnergyDensity"@en ; :electrochemistry_811aafc3_0c6d_470e_b67e_ff5c82992609 "CmpEng(mWh/g)"@en . @@ -1997,14 +2041,6 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog skos:prefLabel "TemperatureLimit"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the temperature of a system"@en . -:electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 a owl:Class ; - rdfs:label "RatedCapacity"@en ; - rdfs:comment "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en ; - rdfs:subClassOf :electrochemistry_791c1915_a791_4450_acd8_7f94764743b5 ; - skos:prefLabel "RatedCapacity"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-03-15"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en . - :electrochemistry_9ed7210c_c4fa_467b_822d_ba12f885bdf4 a owl:Class ; rdfs:label "ConcentrationOverpotential"@en ; rdfs:comment "The concentration overpotential of an electrode reaction at a given electrode current density (c.d.) is basically the difference in equilibrium potentials across the diffusion layer. More precisely, it is the potential of a reference electrode (of the same electrode reaction as the working electrode ) with the interfacial concentrations which establish themselves at c.d., relative to the potential of a similar reference electrode with the concentrations of the bulk solution. From such a measured potential difference, with c.d. flowing, one needs to subtract the ohmic potential drop prevailing between the two electrodes."@en, @@ -2110,6 +2146,14 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog skos:prefLabel "NumberOfFiniteVolumeCells"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "number of discrete finite volume cells in a grid or sub-grid"@en . +:electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 a owl:Class ; + rdfs:label "RatedCapacity"@en ; + rdfs:comment "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en ; + rdfs:subClassOf :electrochemistry_791c1915_a791_4450_acd8_7f94764743b5 ; + skos:prefLabel "RatedCapacity"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-03-15"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en . + :electrochemistry_cc519a19_b8d5_4e3f_b893_3a884888ad79 a owl:Class ; rdfs:label "MaximumTemperature"@en ; rdfs:comment "the maximum allowable temperature"@en ; @@ -2186,14 +2230,6 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa :electrochemistry_a07dd85b_d0df_4d5d_8b0c_14d20ea3fe45 "current"@en ; :electrochemistry_ea9f4dba_8ca2_419e_9cdf_ce54e9ebbd46 "Current (A)"@en . -:electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 a owl:Class ; - rdfs:label "CurrentLimit"@en ; - rdfs:comment "limit on the electric current of an electrical system"@en ; - rdfs:subClassOf emmo:EMMO_c995ae70_3b84_4ebb_bcfc_69e6a281bb88, - :electrochemistry_b395a244_3a75_4737_be38_981bfa1277fe ; - skos:prefLabel "CurrentLimit"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the electric current of an electrical system"@en . - :electrochemistry_900e357f_2ee3_425a_a0b6_322661117787 a owl:Class ; rdfs:label "ElectrochemicalProperty"@en ; rdfs:subClassOf emmo:EMMO_909415d1_7c43_4d5e_bbeb_7e1910159f66 ; @@ -2292,6 +2328,14 @@ foaf:Person a owl:Class ; emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Faradaic_current"@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://goldbook.iupac.org/terms/view/F02321"@en . +:electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 a owl:Class ; + rdfs:label "CurrentLimit"@en ; + rdfs:comment "limit on the electric current of an electrical system"@en ; + rdfs:subClassOf emmo:EMMO_c995ae70_3b84_4ebb_bcfc_69e6a281bb88, + :electrochemistry_b395a244_3a75_4737_be38_981bfa1277fe ; + skos:prefLabel "CurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the electric current of an electrical system"@en . + :electrochemistry_1cd1d777_e67b_47eb_81f1_edac35d9f2c6 a owl:Class ; rdfs:label "Overpotential"@en ; rdfs:comment "difference between the electrode potential with current flow, and the electrode potential without current flow, i.e. the equilibrium potential"@en, diff --git a/versions/0.15.2-beta/electrochemistry-inferred.ttl b/versions/0.15.2-beta/electrochemistry-inferred.ttl index f4fa0f9..c704a22 100644 --- a/versions/0.15.2-beta/electrochemistry-inferred.ttl +++ b/versions/0.15.2-beta/electrochemistry-inferred.ttl @@ -7,7 +7,7 @@ @base . rdf:type owl:Ontology ; - owl:versionIRI ; + owl:versionIRI ; ""@en , "CHAMEO is a domain ontology designed to model the common aspects across the different characterisation techniques and methodologies."@en , """Defines physical quantities in the International System of Quantities (ISQ). ISQ was made an official ISO standard in 2009 and is defined in the ISO/IEC 80000 standard. @@ -146,12 +146,12 @@ The symbolic module includes symbols, symbolic constructs and formal languages." "https://w3id.org/emmo/domain/characterisation-methodology/chameo" ; "2024-04-12" , "2024-06-23"^^xsd:date , - "2024-07-03"^^xsd:date ; + "2024-07-05"^^xsd:date ; "https://creativecommons.org/licenses/by/4.0/legalcode" , "https://creativecommons.org/licenses/by/4.0/legalcode"@en ; "2024-04-12" , "2024-06-23"^^xsd:date , - "2024-07-03"^^xsd:date ; + "2024-07-05"^^xsd:date ; "EMMC ASBL" , "EMMC ASBL"@en , """EMMC ASBL @@ -241,11 +241,11 @@ We kindly acknowledge NIST for reusing their content, including the selection of "You can contact EMMO Authors via emmo@emmc.eu"@en ; owl:backwardCompatibleWith "" , " " , - "0.16.0-beta" ; - owl:priorVersion "0.16.0-beta" , + "0.17.0-beta" ; + owl:priorVersion "0.17.0-beta" , "0.5.0-beta" , "1.0.0-beta2" ; - owl:versionInfo "0.17.0-beta" , + owl:versionInfo "0.18.0-beta" , "0.6.0-beta" , "1.0.0-beta3" , "1.0.0-beta7" ; @@ -2333,7 +2333,7 @@ While the EMMO FOL introduces the quantum causality relation C(x,y) as primitive rdf:type owl:ObjectProperty ; rdfs:subPropertyOf ; rdfs:domain ; - rdfs:range ; + rdfs:range ; "hasSolvent"@en . @@ -2364,7 +2364,7 @@ While the EMMO FOL introduces the quantum causality relation C(x,y) as primitive rdf:type owl:ObjectProperty ; rdfs:subPropertyOf ; rdfs:domain ; - rdfs:range ; + rdfs:range ; "hasSolute"@en . @@ -34532,7 +34532,7 @@ Wikipedia"""@en ; , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "ZincElectrode"@en ; "an electrode in which the main active material is zinc metal"@en ; @@ -34555,7 +34555,7 @@ Wikipedia"""@en ; rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "LithiumElectrode"@en ; "an electrode in which the active material is lithium metal" . @@ -44391,164 +44391,11 @@ Wear is defined as the progressive removal of the material from a solid surface "InChI=1S/Pb" . -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0139937b_2724_4864_84fb_f14bcfb83538 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0bdf0bb9_41fc_455d_af11_a249e24acdf6 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0f2f65a7_5cc4_4c86_a4d0_676771c646f1 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_250fa43e_1f26_4ed8_b787_91a2325a8e7b - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_25f6ff4c_53ad_4837_97c4_aa6f06099bb5 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_2a540939_3908_4f85_92f9_c46da7d4e9cb - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_2a87ca10_fc6a_4d61_b48c_d9790a566ee3 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_3899a9c9_9b34_443e_8ce6_0257589bb38a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_3ac62305_acd6_4312_9e31_4f824bd2530d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_4126ee09_b9c6_4694_bf33_0d8970e05f72 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_4c62d334_a124_40b3_9fd1_fe713d01a6af - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_5088ad54_b37d_4ee1_a086_d6c17e644f9a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_5cee19d2_f916_4264_a8ed_efed13a808d2 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_68c0876b_cb62_41cd_846d_95cc9d9a8733 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_68f9b85e_340f_46ec_96da_ebb6bd62f5fd - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_73d4606c_7460_4a5c_9413_793bdf35753e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_7dc738d6_74f2_489e_ae84_a6dbdf627f2e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_848003a2_71ee_4967_8039_354c907ec7f4 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_97439fbb_155f_433d_9edd_d510cd491f24 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_9bd78e1c_a4dc_41b6_8013_adb51df1ffdc - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_9da78aea_d436_40e2_a68f_c3dee32b825e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_aa8e9cc4_5f66_4307_b1c8_26fac7653a90 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_acdb232f_8041_4e11_8a11_5db2d2baae4d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_b01771a9_218a_4b01_b20f_4021cfa0b7d5 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_b3815a7f_f64a_48f6_b0ce_d0032578c699 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c109ca45_08c7_4436_a818_a9c575785e2f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c28a0967_ed23_48cc_a14e_a651d75a19db - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c5582dae_ccff_4fbe_adaa_078091054640 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c728b6b9_449a_45ff_b5ae_6b7968708f0d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_cd17ca33_ae3d_4738_8930_547673bf6c1f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_cdd18f0c_e7b3_4d09_b3dd_c09fe4b1adba - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_d53259a7_0d9c_48b9_a6c1_4418169df303 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_d673ceb2_3045_4e2e_8cad_56f5169b542f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_db74b6b7_09fc_40db_a7d5_6eb86b69192a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_dc5fb846_1824_40f8_9834_81f118aa1c2d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_dcdbdbed_2e20_40d1_a7a5_5761de7f0618 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_e1e6ff98_0725_4d27_ab21_2ca5a95371f0 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_e8fafdc8_6cd3_4dd0_9630_10ca8e3f1827 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_f3e7979a_e3ef_450a_8762_7d8778afe478 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_f7525766_90cf_43e9_8932_7cb3b14f676f - rdf:type owl:Class . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626 + rdf:type owl:Class ; + rdfs:subClassOf ; + "ImaginaryElectricImpedance"@en ; + "the imaginary part of the complex electric impedance"@en . ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_01260656_ac32_472e_9513_a607366538ec @@ -44872,11 +44719,11 @@ Wear is defined as the progressive removal of the material from a solid surface rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCLCOElectrode"@en ; @@ -45639,7 +45486,7 @@ and t* through mathematical models, provided that the long-time potential- deter , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LFPElectrode"@en ; @@ -46241,7 +46088,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "PtElectrode"@en ; "PlatinumElectrode"@en ; @@ -46343,7 +46190,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SiliconOxideGraphiteElectrode"@en ; @@ -46477,7 +46324,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "FTOElectrode"@en ; @@ -46500,7 +46347,7 @@ Aluminum foil"""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "NiOOHElectrode"@en , "NickelOxyhydroxideElectrode"@en ; @@ -46544,6 +46391,14 @@ Aluminum foil"""@en . "a coin case with a nominal diameter of 7.9 mm and a height of 1.65 mm"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b + rdf:type owl:Class ; + rdfs:subClassOf , + ; + "Resting"@en ; + "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 rdf:type owl:Class ; rdfs:subClassOf ; @@ -46811,6 +46666,13 @@ Aluminum foil"""@en . "A material relation in electrochemistry."@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45 + rdf:type owl:Class ; + rdfs:subClassOf ; + "UpperCurrentLimit"@en ; + "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3e54f9e3_a31d_4821_9bfb_ef953a42c35b rdf:type owl:Class ; rdfs:subClassOf , @@ -46981,7 +46843,7 @@ Aluminum foil"""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNMOElectrode"@en ; @@ -47201,11 +47063,11 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCLMOElectrode"@en ; @@ -47294,7 +47156,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumNickelPhosphateElectrode"@en ; @@ -47549,7 +47411,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumIronPhosphateElectrode"@en ; @@ -47904,7 +47766,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "CarbonMonofluorideElectrode"@en ; "electrode in which the active material is carbon monofluoride"@en ; @@ -48131,7 +47993,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "HardCarbonElectrode"@en ; "electrode in which the active material is hard carbon"@en . @@ -48291,7 +48153,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "SAE"@en ; "SolidAmalgamElectrode"@en ; @@ -48426,7 +48288,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LTOElectrode"@en ; @@ -48518,20 +48380,13 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ] . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "system that consists of at least two electron conductors (electrodes) in contact with ionic conductors (electrolytes)"@en ; - "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6fec8cc1_4e6c_428e_8343_6cf3c286a185 rdf:type owl:Class ; rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "AuElectrode"@en ; "GoldElectrode"@en ; @@ -48691,7 +48546,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NiOElectrode"@en ; @@ -48721,7 +48576,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "TiO2Electrode"@en ; @@ -48915,13 +48770,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ] . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "in secondary cells, the active material is restored to its original state during charge"@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - [ rdf:type owl:Axiom ; owl:annotatedSource ; owl:annotatedProperty ; @@ -48965,6 +48813,13 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s "an electrode in which the primary active material consists of caesium or caesium compounds"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea + rdf:type owl:Class ; + rdfs:subClassOf ; + "LowerCurrentLimit"@en ; + "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7f073272_8925_4344_995c_a5a6dd1fcde6 rdf:type owl:Class ; rdfs:subClassOf ; @@ -49118,7 +48973,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "LiquidGalliumElectrode"@en ; "a liquid electrode with an active material of gallium"@en . @@ -49188,7 +49043,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "ZnOElectrode"@en ; @@ -49446,6 +49301,13 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "an electrode in which the primary active material consists of sulfur or sulfur compounds"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_88dd2bce_fb17_4705_905d_892681812290 + rdf:type owl:Class ; + rdfs:subClassOf ; + "NumberOfIterations"@en ; + "the number of times an iterative process should occur"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8968eb7a_9a65_4286_a596_c31b998df329 rdf:type owl:Class ; rdfs:subClassOf ; @@ -49504,6 +49366,13 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "substance that increases chemical reaction speed, and which is conserved after the reaction"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100 + rdf:type owl:Class ; + rdfs:subClassOf ; + "NominalCapacity"@en ; + "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8b40856f_1ca2_4137_9616_7fb624671909 rdf:type owl:Class ; rdfs:subClassOf , @@ -50109,7 +49978,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumCobaltPhosphateElectrode"@en ; @@ -50298,13 +50167,6 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; "plate in which the active material is applied as a paste to a conductive current collector"@en . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "plate in which the active material is applied as a paste to a conductive current collector"@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a24f8581_a5a4_41a4_bb45_d0fdd5c0d810 rdf:type owl:Class ; @@ -50397,7 +50259,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "SilverOxideElectrode"@en ; "an electrode in which the primary active material consists of manganese dioxide or vmanganese dioxide compounds"@en ; @@ -50427,7 +50289,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "AgElectrode"@en ; "SilverElectrode"@en ; @@ -50662,7 +50524,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "CupricOxideElectrode"@en ; "CopperOxideElectrode"@en ; @@ -50751,6 +50613,15 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "Environmental_Temperature (C)"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f + rdf:type owl:Class ; + rdfs:subClassOf ; + "ACResistance"@en ; + "RealElectricImpedance"@en ; + "https://www.wikidata.org/wiki/Q1048490"@en ; + "the imaginary part of the complex electric impedance"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abfadc99_6e43_4d37_9b04_7fc5b0f327ae rdf:type owl:Class ; rdfs:subClassOf , @@ -50782,7 +50653,8 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e rdf:type owl:Class ; rdfs:subClassOf ; - "CCCVCycling"@en ; + "CCCVCycling"@en ; + "ConstantCurrentConstantVoltageCycling"@en ; "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en . @@ -51030,7 +50902,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCElectrode"@en ; @@ -51360,11 +51232,11 @@ of other configurations are used."""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNMOLFPElectrode"@en ; @@ -51466,13 +51338,6 @@ of other configurations are used."""@en . "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; "https://en.wikipedia.org/wiki/Fuel_cell"@en . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_bea04148_10d9_4eda_9cd5_8f609d7e9ff8 rdf:type owl:Class ; @@ -51568,7 +51433,7 @@ of other configurations are used."""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LMOElectrode"@en ; @@ -51751,11 +51616,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "ITO"@en ; @@ -51809,7 +51674,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "GraphiteElectrode"@en ; "electrode in which the active material is graphite"@en . @@ -51928,7 +51793,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "MnO2Electrode"@en ; "ManganeseDioxideElectrode"@en ; @@ -51943,7 +51808,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNOElectrode"@en ; @@ -51963,7 +51828,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "IrO2Electrode"@en ; @@ -51977,7 +51842,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumManganesePhosphateElectrode"@en ; @@ -52146,7 +52011,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "IronDisulfideElectrode"@en ; "an electrode in which the primary active material consists of iron disulfide or iron disulfide compounds."@en ; @@ -52509,7 +52374,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "HgElectrode"@en ; "MercuryElectrode"@en ; @@ -52785,11 +52650,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SiliconGraphiteElectrode"@en ; @@ -52802,7 +52667,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumManganeseOxideElectrode"@en ; @@ -53004,7 +52869,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumCobaltOxideElectrode"@en ; @@ -53096,7 +52961,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NCAElectrode"@en ; @@ -53315,7 +53180,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "PbOElectrode"@en ; @@ -53401,7 +53266,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumChromiumOxideElectrode"@en ; @@ -53621,7 +53486,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LCOElectrode"@en ; @@ -53672,11 +53537,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LMOLFPElectrode"@en ; @@ -53808,10 +53673,10 @@ In either case, the magnitude of the catalytic current depends on the applied po "The universe is considered as a causally self-connected object, encompassing all other objects. For this reason is unique."@en . -[ owl:qualifiedCardinality "3"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "3"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "4"^^xsd:nonNegativeInteger @@ -53835,10 +53700,10 @@ In either case, the magnitude of the catalytic current depends on the applied po [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:minQualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:minQualifiedCardinality "2"^^xsd:nonNegativeInteger +[ owl:minQualifiedCardinality "1"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger @@ -53850,7 +53715,7 @@ In either case, the magnitude of the catalytic current depends on the applied po [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:minQualifiedCardinality "2"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger diff --git a/versions/0.15.2-beta/electrochemistry.ttl b/versions/0.15.2-beta/electrochemistry.ttl index baa1206..d442e3c 100644 --- a/versions/0.15.2-beta/electrochemistry.ttl +++ b/versions/0.15.2-beta/electrochemistry.ttl @@ -1,6 +1,6 @@ @prefix : . @prefix bibo: . -@prefix chemsub: . +@prefix chemsub: . @prefix dcterms: . @prefix emmo: . @prefix foaf: . @@ -54,9 +54,9 @@ schema:name a owl:AnnotationProperty . dcterms:created "2022-11-25"^^xsd:date ; dcterms:creator , ; - dcterms:issued "2024-07-03"^^xsd:date ; + dcterms:issued "2024-07-05"^^xsd:date ; dcterms:license "https://creativecommons.org/licenses/by/4.0/legalcode" ; - dcterms:modified "2024-07-03"^^xsd:date ; + dcterms:modified "2024-07-05"^^xsd:date ; dcterms:publisher "EMMO" ; dcterms:source , , @@ -67,13 +67,13 @@ schema:name a owl:AnnotationProperty . bibo:status "unstable" ; vann:preferredNamespacePrefix "echem" ; vann:preferredNamespaceUri "https://w3id.org/emmo/domain/electrochemistry" ; - owl:backwardCompatibleWith "0.16.0-beta" ; + owl:backwardCompatibleWith "0.17.0-beta" ; owl:imports , , - ; - owl:priorVersion "0.16.0-beta" ; - owl:versionIRI ; - owl:versionInfo "0.17.0-beta" ; + ; + owl:priorVersion "0.17.0-beta" ; + owl:versionIRI ; + owl:versionInfo "0.18.0-beta" ; foaf:logo "https://raw.githubusercontent.com/emmo-repo/domain-electrochemistry/gh-pages/assets/img/fig/png/domain-electrochemistry-logo.png" . :electrochemistry_027d437e_3bbf_4eda_940b_e509f8d2b993 a owl:Class ; @@ -535,6 +535,14 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "R716" ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a coin case with a nominal diameter of 7.9 mm and a height of 1.65 mm"@en . +:electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b a owl:Class ; + rdfs:label "Resting"@en ; + rdfs:comment "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en ; + rdfs:subClassOf , + :electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 ; + skos:prefLabel "Resting"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en . + :electrochemistry_36444184_1100_4271_869f_7f2d983aaecb a owl:Class ; rdfs:label "P45173115" ; rdfs:comment "a prismatic case with a nominal length of 45 mm, width of 173 mm, and height of 115 mm"@en ; @@ -1564,6 +1572,15 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "TinBasedElectrode"@en ; emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "an electrode in which the primary active material consists of tin or tin compounds"@en . +:electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c a owl:Class ; + rdfs:label "PastedPlate"@en ; + rdfs:comment "plate in which the active material is applied as a paste to a conductive current collector"@en ; + rdfs:subClassOf :electrochemistry_92147e31_d015_4889_a092_04fbab033f15 ; + skos:altLabel "PastedElectrode"@en ; + skos:prefLabel "PastedPlate"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "plate in which the active material is applied as a paste to a conductive current collector"@en . + :electrochemistry_a277e420_2483_44d5_a2bc_4e421dea231a a owl:Class ; rdfs:label "R926" ; rdfs:comment "a coin case with a nominal diameter of 9.5 mm and a height of 2.6 mm"@en ; @@ -1658,10 +1675,11 @@ schema:name a owl:AnnotationProperty . emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a coin case with a nominal diameter of 11.6 mm and a height of 4.2 mm"@en . :electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e a owl:Class ; - rdfs:label "CCCVCycling"@en ; + rdfs:label "ConstantCurrentConstantVoltageCycling"@en ; rdfs:comment "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en ; rdfs:subClassOf :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; - skos:prefLabel "CCCVCycling"@en ; + skos:altLabel "CCCVCycling"@en ; + skos:prefLabel "ConstantCurrentConstantVoltageCycling"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en . :electrochemistry_ad9cdad6_66e8_471e_a7c6_b79f37c20814 a owl:Class ; @@ -1783,6 +1801,17 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "P20100141" ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a prismatic case with a nominal length of 20 mm, width of 100 mm, and height of 141 mm"@en . +:electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d a owl:Class ; + rdfs:label "FuelCell"@en ; + rdfs:comment "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; + rdfs:subClassOf :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; + skos:prefLabel "FuelCell"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q180253"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-05"@en ; + emmo:EMMO_6dd685dd_1895_46e4_b227_be9f7d643c25 "https://dbpedia.org/page/Fuel_cell"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; + emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Fuel_cell"@en . + :electrochemistry_bea04148_10d9_4eda_9cd5_8f609d7e9ff8 a owl:Class ; rdfs:label "CelsiusTemperatureMeasurement"@en ; rdfs:comment "measurement of temperature"@en ; @@ -3335,15 +3364,6 @@ schema:name a owl:AnnotationProperty . "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-26"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "interface between an electrolyte and an electrode where an electrode reaction takes place."@en . -:electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c a owl:Class ; - rdfs:label "PastedPlate"@en ; - rdfs:comment "plate in which the active material is applied as a paste to a conductive current collector"@en ; - rdfs:subClassOf :electrochemistry_92147e31_d015_4889_a092_04fbab033f15 ; - skos:altLabel "PastedElectrode"@en ; - skos:prefLabel "PastedPlate"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "plate in which the active material is applied as a paste to a conductive current collector"@en . - :electrochemistry_a462859d_d8bd_48ea_8bde_1576f1248a1e a owl:Class ; rdfs:label "SilverElectrode"@en ; rdfs:comment "electrode in the form of foil, mesh, wire, rod, tube, powder, pellets, or single crystal of silver"@en ; @@ -3459,17 +3479,6 @@ of other configurations are used."""@en . emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-19"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "part which insures insulation between the plate (electrode) edges and adjacent plates (electrodes) and the container side walls"@en . -:electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d a owl:Class ; - rdfs:label "FuelCell"@en ; - rdfs:comment "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - rdfs:subClassOf :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; - skos:prefLabel "FuelCell"@en ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q180253"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-05"@en ; - emmo:EMMO_6dd685dd_1895_46e4_b227_be9f7d643c25 "https://dbpedia.org/page/Fuel_cell"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Fuel_cell"@en . - :electrochemistry_bed5b5f9_b89d_45e3_a8c2_81b70ae21847 a owl:Class ; rdfs:label "SeriesParallelConnection"@en ; rdfs:comment "arrangement of cells or batteries wherein in series connected cells or batteries are connected in parallel."@en ; @@ -4518,15 +4527,20 @@ schema:Person a owl:Class ; skos:prefLabel "BimetallicOxideElectrode"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "an electrode consisting of two metal oxide active materials"@en . -:electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 a owl:Class ; - rdfs:label "GalvanostaticProcess"@en ; - rdfs:comment "a process in which the electric current is kept constant"@en ; - rdfs:subClassOf [ a owl:Restriction ; - owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; 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+ emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; + emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "material which reacts chemically to produce electric energy when the cell discharges", + "in secondary cells, the active material is restored to its original state during charge"@en . :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 a owl:Class ; rdfs:label "PotentiometricStrippingAnalysis"@en ; @@ -4601,20 +4615,15 @@ schema:Person a owl:Class ; "The electrode (or interfacial) reaction involves all the processes (chemical reaction, structural reorganization, adsorption) accompanying the charge transfer step."@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1351/goldbook.E01960"@en . -:electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 a owl:Class ; - rdfs:label "ActiveMaterial"@en ; - rdfs:comment "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; - rdfs:subClassOf :electrochemistry_b5ea31c9_bb10_4276_980e_c3eceb1efc82, - :electrochemistry_ebdb68e9_c4b5_4d57_a042_c0f51d446755 ; - skos:altLabel "ActiveElectrochemicalMaterial"@en, - "ElectrochemicallyActiveMaterial"@en ; - skos:prefLabel "ActiveMaterial"@en ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q120907375" ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-33", - "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-14"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "material which reacts chemically to produce electric energy when the cell discharges", - "in secondary cells, the active material is restored to its original state during charge"@en . +:electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 a owl:Class ; + rdfs:label "GalvanostaticProcess"@en ; + rdfs:comment "a process in which the electric current is kept constant"@en ; + rdfs:subClassOf [ a owl:Restriction ; + owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; + owl:someValuesFrom :electrochemistry_22725105_c941_4b14_a4a2_fcb627958607 ], + :electrochemistry_5548f188_df00_4c05_ae98_7846e92efe36 ; + skos:prefLabel "GalvanostaticProcess"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a process in which the electric current is kept constant"@en . :electrochemistry_8a1c9a7b_978c_4421_a9c1_d0b07b42aab9 a owl:Class ; rdfs:label "ChemicalReaction"@en ; @@ -4953,9 +4962,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "extremely resistant to many chemicals, impermeable to gases and liquids, and has good electrical conductivity, high hardness and strength, and biocompatibility"@en . + owl:annotatedTarget "electrode made of glassy carbon material with an intertwined graphitic ribbon structure, formed by pyrolysis of a resol precursor at temperatures up to 3000 °C"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -4976,28 +4985,22 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "A disc electrode that is embedded in the centre of a cylinder which rotates in solution around the longitudinal cylinder axis."@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "composite system in which the supplied electric energy mainly produces chemical reactions or, conversely, in which the energy released by chemical reactions is mainly delivered by the system as electric energy"@en . + owl:annotatedTarget "a system containing two electrodes that allow transport of electrons, separated by an electrolyte that allows movement of ions but blocks movement of electrons."@en . [] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "system that consists of at least two electron conductors (electrodes) in contact with ionic conductors (electrolytes)"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" . + owl:annotatedTarget "composite system in which the supplied electric energy mainly produces chemical reactions or, conversely, in which the energy released by chemical reactions is mainly delivered by the system as electric energy"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "glassy carbon combines glass-like mechanical characteristics with physical properties similar to graphite, owing to its “graphene ribbon” structure"@en . - -[] a owl:Axiom ; - dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "a system containing two electrodes that allow transport of electrons, separated by an electrolyte that allows movement of ions but blocks movement of electrons."@en . + owl:annotatedTarget "extremely resistant to many chemicals, impermeable to gases and liquids, and has good electrical conductivity, high hardness and strength, and biocompatibility"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5033,13 +5036,13 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "one of the most frequently used working electrodes"@en . + owl:annotatedTarget "glassy carbon combines glass-like mechanical characteristics with physical properties similar to graphite, owing to its “graphene ribbon” structure"@en . [] a owl:Axiom ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; - owl:annotatedTarget "in secondary cells, the active material is restored to its original state during charge"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedTarget "material that is oxidized or reduced at an electrode in an electrochemical cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5047,12 +5050,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; owl:annotatedTarget "material which reacts chemically to produce electric energy when the cell discharges" . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; - owl:annotatedTarget "material that is oxidized or reduced at an electrode in an electrochemical cell"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5061,9 +5058,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "electrode made of glassy carbon material with an intertwined graphitic ribbon structure, formed by pyrolysis of a resol precursor at temperatures up to 3000 °C"@en . + owl:annotatedTarget "one of the most frequently used working electrodes"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5083,18 +5080,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_83f2b1e9_cb67_4dbf_977f_ba54bbae374f ; owl:annotatedTarget "charge during which the electric current is maintained at a constant value regardless of the battery voltage or temperature"@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; - owl:annotatedTarget "Electrolyte solution in the anodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the anode is placed."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; owl:annotatedTarget "electrolyte on the anode side of an electrochemical cell that is divided into compartments"@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; + owl:annotatedTarget "Electrolyte solution in the anodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the anode is placed."@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5133,15 +5130,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_8d3bf304_78e4_4e99_abe1_6ab429e44ed1 ; - owl:annotatedTarget "a sealed cell may be equipped with a safety device to prevent a dangerously high internal pressure and is designed to operate during its life in its original sealed state"@en . + owl:annotatedTarget "cell which remains closed and does not release either gas or liquid when operated within the limits specified by the manufacturer"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_8d3bf304_78e4_4e99_abe1_6ab429e44ed1 ; - owl:annotatedTarget "cell which remains closed and does not release either gas or liquid when operated within the limits specified by the manufacturer"@en . + owl:annotatedTarget "a sealed cell may be equipped with a safety device to prevent a dangerously high internal pressure and is designed to operate during its life in its original sealed state"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5150,10 +5147,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "capacitor consisting of a metallic plate as first conductor, a very thin oxide film formed on the metal as the dielectric and an electrolyte as second conductor"@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_06d8e1ee_924a_4915_998d_33a69f41dadc ; - owl:annotatedTarget "operation during which an electrochemical cell supplies electric energy as the result of chemical changes within the cell"@en . + owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; + owl:annotatedTarget "two-step electrochemical measurement in which 1) material is accumulated at an electrode and 2) the material is removed by chemical reaction or electrochemically at constant current with measurement of electrode potential"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5161,6 +5158,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; owl:annotatedTarget "historically for the analysis of metal ions, mercury ions were added to the test solution to form a mercury amalgam when reduced. Alternatively, an HMDE or MFE was used and the oxidizing agent added after amalgam formation. However, the toxicity of mercury and its compounds have all but precluded the present-day use of mercury"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_06d8e1ee_924a_4915_998d_33a69f41dadc ; + owl:annotatedTarget "operation during which an electrochemical cell supplies electric energy as the result of chemical changes within the cell"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5179,12 +5182,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; owl:annotatedTarget "the time between changes in potential in step 2 is related to the concentration of analyte in the solution"@en . -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; - owl:annotatedTarget "two-step electrochemical measurement in which 1) material is accumulated at an electrode and 2) the material is removed by chemical reaction or electrochemically at constant current with measurement of electrode potential"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5211,15 +5208,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_9ee6e728_e8f5_4b36_a045_d63da69dfc85 ; - owl:annotatedTarget "overcharge is also the act of charging beyond a certain limit specified by the manufacturer"@en . + owl:annotatedTarget "continued charging of a fully charged secondary cell or battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_9ee6e728_e8f5_4b36_a045_d63da69dfc85 ; - owl:annotatedTarget "continued charging of a fully charged secondary cell or battery"@en . + owl:annotatedTarget "overcharge is also the act of charging beyond a certain limit specified by the manufacturer"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5227,6 +5224,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_9f466223_e20a_474d_ac4d_6d4b6131c275 ; owl:annotatedTarget "an electrode that holds its potential essentially constant by efficiently allowing electric current to pass"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_a0580fa9_5073_44af_b33e_7adbc83892d0 ; + owl:annotatedTarget "electrode reaction in which oxidation occurs at the anode"@en . + [] a owl:Axiom ; dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5242,14 +5245,14 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0580fa9_5073_44af_b33e_7adbc83892d0 ; - owl:annotatedTarget "electrode reaction in which oxidation occurs at the anode"@en . + owl:annotatedSource :electrochemistry_a0a619d7_da95_41f0_8bc3_9c19d636d543 ; + owl:annotatedTarget "electrode that serves only as a source or sink for electrons without playing a chemical role in the electrode reaction"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0a619d7_da95_41f0_8bc3_9c19d636d543 ; - owl:annotatedTarget "electrode that serves only as a source or sink for electrons without playing a chemical role in the electrode reaction"@en . + owl:annotatedSource :electrochemistry_a0fcb105_587f_45d8_a89a_46dc8f745069 ; + owl:annotatedTarget "partial or complete external covering of a cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5260,14 +5263,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0fcb105_587f_45d8_a89a_46dc8f745069 ; - owl:annotatedTarget "partial or complete external covering of a cell"@en . - -[] a owl:Axiom ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c ; - owl:annotatedTarget "plate in which the active material is applied as a paste to a conductive current collector"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedSource :electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e ; + owl:annotatedTarget "process inside an electrolytic cell used to coat a conductive object with a layer of a material"@en . [] a owl:Axiom ; dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; @@ -5278,8 +5275,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e ; - owl:annotatedTarget "process inside an electrolytic cell used to coat a conductive object with a layer of a material"@en . + owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; + owl:annotatedTarget "component of a cell which permits the flow of gas in one direction only"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5287,12 +5284,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; owl:annotatedTarget "a valve has a characteristic venting or opening and closing pressure"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; - owl:annotatedTarget "component of a cell which permits the flow of gas in one direction only"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5305,6 +5296,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a462859d_d8bd_48ea_8bde_1576f1248a1e ; owl:annotatedTarget "electrode in the form of foil, mesh, wire, rod, tube, powder, pellets, or single crystal of silver"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; + owl:annotatedTarget "a chemical reaction in an electrolyte involving a transfer of electrons between chemical components or between chemical components and an electrode"@en . + [] a owl:Axiom ; dcterms:source "Bockris, J. O'M. and Despić, . Aleksandar R. (2011, December 15). Electrochemical reaction. Encyclopedia Britannica. https://www.britannica.com/science/electrochemical-reaction" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5317,12 +5314,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; owl:annotatedTarget "the electrode reaction can also involve other chemical reactions including subreactions on a cell electrode"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; - owl:annotatedTarget "a chemical reaction in an electrolyte involving a transfer of electrons between chemical components or between chemical components and an electrode"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5355,15 +5346,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_ae56cce3_7a7c_4e53_bb58_31e0d642d47e ; - owl:annotatedTarget "this flame front may originate from a spark or an external naked flame igniting combustible electrolysis gas"@en . + owl:annotatedTarget "vent of special design which provides protection against the propagation of a flame front from or into the interior of a secondary cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_ae56cce3_7a7c_4e53_bb58_31e0d642d47e ; - owl:annotatedTarget "vent of special design which provides protection against the propagation of a flame front from or into the interior of a secondary cell"@en . + owl:annotatedTarget "this flame front may originate from a spark or an external naked flame igniting combustible electrolysis gas"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5395,6 +5386,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_b525a629_a679_464f_bc5b_b49d2fc82686 ; owl:annotatedTarget "an electrochemical cell for conductivity measurements"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; + owl:annotatedTarget "by convention, cell electrode at which an oxidation reaction occurs"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5419,12 +5416,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; owl:annotatedTarget "the concepts of “anode” and “cathode” are related only to the direction of electron flow, not to the polarity of the electrodes"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; - owl:annotatedTarget "by convention, cell electrode at which an oxidation reaction occurs"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5433,15 +5424,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_b79d4f9e_5727_4895_8d7f_5fc18d83eb90 ; - owl:annotatedTarget "in a galvanic cell, parasitic reactions may cause inefficiencies or loss of performance"@en . + owl:annotatedTarget "an unwanted side reaction"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_b79d4f9e_5727_4895_8d7f_5fc18d83eb90 ; - owl:annotatedTarget "an unwanted side reaction"@en . + owl:annotatedTarget "in a galvanic cell, parasitic reactions may cause inefficiencies or loss of performance"@en . [] a owl:Axiom ; dcterms:source "IEEE Standard Glossary of Stationary Battery Terminology (2016), https://doi.org/10.1109/IEEESTD.2016.7552407" ; @@ -5481,12 +5472,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_bbae1ef4_0a95_4e7d_9932_1bf939129eef ; owl:annotatedTarget "current-potential curve in a voltammetry experiment"@en . -[] a owl:Axiom ; - dcterms:source "https://en.wikipedia.org/wiki/Square_wave" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0e33278b_639f_412d_9abd_64c3790026ef ; - owl:annotatedTarget "Periodic potential where the amplitude alternates at a steady frequency between fixed minimum and maximum values, with the same duration at minimum and maximum."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5500,10 +5485,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "part which insures insulation between the plate (electrode) edges and adjacent plates (electrodes) and the container side walls"@en . [] a owl:Axiom ; + dcterms:source "https://en.wikipedia.org/wiki/Square_wave" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d ; - owl:annotatedTarget "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedSource :electrochemistry_0e33278b_639f_412d_9abd_64c3790026ef ; + owl:annotatedTarget "Periodic potential where the amplitude alternates at a steady frequency between fixed minimum and maximum values, with the same duration at minimum and maximum."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5535,12 +5520,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_c3f4b34a_0e2c_46f3_baab_4ebd2682d26f ; owl:annotatedTarget "An ionic liquid is an electrolyte composed of a salt that is liquid below 100 °C. Ionic liquids have found uses in electrochemical analysis, because their unconventional properties include a negligible vapor pressure, a high thermal and electrochemical stability, and exceptional dissolution properties for both organic and inorganic chemical species."@en . -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; - owl:annotatedTarget "Electron conductor in an electrochemical cell connected to the external circuit."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5553,6 +5532,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_c55ec02c_b727_4df1_97ce_91d7bb5d5e91 ; owl:annotatedTarget "unplanned escape of electrolyte, gas or other material from a cell or battery"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_c610d869_cc03_44f0_b40d_ca86e945b9c9 ; + owl:annotatedTarget "cell from which electrolyte cannot escape regardless of its orientation"@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5562,8 +5547,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_c610d869_cc03_44f0_b40d_ca86e945b9c9 ; - owl:annotatedTarget "cell from which electrolyte cannot escape regardless of its orientation"@en . + owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; + owl:annotatedTarget "electronically conductive part in electric contact with a medium of lower electronic conductivity and intended to perform one or more of the functions of emitting charge carriers to or receiving charge carriers from that medium or to establish an electric field in that medium"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5579,21 +5564,21 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; - owl:annotatedTarget "by convention, an oxidation reaction occurs during discharge"@en . + owl:annotatedTarget "for a device having two electrodes, that electrode having the lower electric potential"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; - owl:annotatedTarget "electronically conductive part in electric contact with a medium of lower electronic conductivity and intended to perform one or more of the functions of emitting charge carriers to or receiving charge carriers from that medium or to establish an electric field in that medium"@en . + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; + owl:annotatedTarget "by convention, an oxidation reaction occurs during discharge"@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; - owl:annotatedTarget "for a device having two electrodes, that electrode having the lower electric potential"@en . + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; + owl:annotatedTarget "Electron conductor in an electrochemical cell connected to the external circuit."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5604,8 +5589,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0f827b54_370d_4c63_99a6_80f13b24e55e ; - owl:annotatedTarget "evolution of gas resulting from electrolysis of the water in the electrolyte of a cell"@en . + owl:annotatedSource :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; + owl:annotatedTarget "set of operations that is carried out on a secondary cell or battery and is repeated regularly in the same sequence."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5622,14 +5607,14 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; - owl:annotatedTarget "set of operations that is carried out on a secondary cell or battery and is repeated regularly in the same sequence."@en . + owl:annotatedSource :electrochemistry_d5da9948_e95b_4f12_a2d2_10a48f390c52 ; + owl:annotatedTarget "arrangement of cells or batteries wherein parallel connected cells or batteries are connected in series."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_d5da9948_e95b_4f12_a2d2_10a48f390c52 ; - owl:annotatedTarget "arrangement of cells or batteries wherein parallel connected cells or batteries are connected in series."@en . + owl:annotatedSource :electrochemistry_0f827b54_370d_4c63_99a6_80f13b24e55e ; + owl:annotatedTarget "evolution of gas resulting from electrolysis of the water in the electrolyte of a cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5655,18 +5640,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_df78745e_f9db_4830_88f0_8ce074fcb8ff ; owl:annotatedTarget "liquid metal electrode used in polarography"@en . +[] a owl:Axiom ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; + owl:annotatedTarget "electrochemical cell in which chemical reactions occur spontaneously and chemical energy is converted into electrical energy."@en . + [] a owl:Axiom ; dcterms:references "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; owl:annotatedTarget "An electrochemical cell that spontaneously produces work."@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_113e0469_8ae0_407f_892d_4b988f8d8a08 ; - owl:annotatedTarget "electrochemical cell that has two half-cells separated by a wall permeable to ions, both containing the same electrolyte differing only in their temperatures."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5674,16 +5659,22 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "Electrochemical cell intended to produce electric energy."@en . [] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; - owl:annotatedTarget "electrochemical cell in which chemical reactions occur spontaneously and chemical energy is converted into electrical energy."@en . + owl:annotatedSource :electrochemistry_e2a1dae1_05e4_4bd1_a39d_0eb10db482bc ; + owl:annotatedTarget "method of separating and neutralizing ions by an electric current in an electrolytic cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e2a1dae1_05e4_4bd1_a39d_0eb10db482bc ; - owl:annotatedTarget "method of separating and neutralizing ions by an electric current in an electrolytic cell"@en . + owl:annotatedSource :electrochemistry_113e0469_8ae0_407f_892d_4b988f8d8a08 ; + owl:annotatedTarget "electrochemical cell that has two half-cells separated by a wall permeable to ions, both containing the same electrolyte differing only in their temperatures."@en . + +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; + owl:annotatedTarget "electrochemical cell intended to produce chemical reactions"@en . [] a owl:Axiom ; dcterms:references "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; @@ -5697,18 +5688,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; owl:annotatedTarget "Electrochemical cell in which electrical energy is converted into chemical energy."@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; - owl:annotatedTarget "electrochemical cell intended to produce chemical reactions"@en . - -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_1152ae6b_8b57_4d99_912e_40c6a29342fb ; - owl:annotatedTarget "mass m of electrochemically-transformed substance is proportional to the charge Q passed, m ∝ Q."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5721,6 +5700,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_ec1dce8b_bb46_41a9_b532_6bed381aa557 ; owl:annotatedTarget "secondary cell having a cover provided with an opening through which products of electrolysis and evaporation are allowed to escape freely from the cell to the atmosphere"@en . +[] a owl:Axiom ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_1152ae6b_8b57_4d99_912e_40c6a29342fb ; + owl:annotatedTarget "mass m of electrochemically-transformed substance is proportional to the charge Q passed, m ∝ Q."@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5739,12 +5724,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f0c24970_4c14_4207_bd78_5f2181a67085 ; owl:annotatedTarget "the process of forming a film or a bulk material using an electrochemical process where the electrons are supplied by an external power supply"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_1355816f_a2b5_4800_8001_fc888f5d6b1b ; - owl:annotatedTarget "instrument intended to measure the value of a voltage."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5757,6 +5736,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f47611a2_e081_47f0_b287_3fda5f706154 ; owl:annotatedTarget "chemical reaction which occurs in addition to the main process"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; + owl:annotatedTarget "electrode reaction in which reduction occurs at the cathode"@en . + +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_1355816f_a2b5_4800_8001_fc888f5d6b1b ; + owl:annotatedTarget "instrument intended to measure the value of a voltage."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5769,12 +5760,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; owl:annotatedTarget "electrode reaction, where the energy of electrons in the working electrode is higher than the LUMO orbital of the substrate"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; - owl:annotatedTarget "electrode reaction in which reduction occurs at the cathode"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5782,10 +5767,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "electrode that responds to one, or more than one, species in the solution being investigated, with no appreciable change of bulk solution composition during the measurement"@en . [] a owl:Axiom ; - dcterms:source "IUPAC. Compendium of Chemical Terminology, 2nd ed. (the \"Gold Book\"). Compiled by A. D. McNaught and A. Wilkinson. Blackwell Scientific Publications, Oxford (1997). Online version (2019-) created by S. J. Chalk. ISBN 0-9678550-9-8. https://doi.org/10.1351/goldbook." ; + dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_15325775_6d4c_4192_82f1_e4feca9de426 ; - owl:annotatedTarget "A membrane having ion-exchange groups:"@en . + owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; + owl:annotatedTarget "a material in which the mobile species are ions and free movement of electrons is blocked."@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5799,18 +5784,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; owl:annotatedTarget "liquid or solid substance containing mobile ions that render it conductive"@en . +[] a owl:Axiom ; + dcterms:source "IUPAC. Compendium of Chemical Terminology, 2nd ed. (the \"Gold Book\"). Compiled by A. D. McNaught and A. Wilkinson. Blackwell Scientific Publications, Oxford (1997). Online version (2019-) created by S. J. Chalk. ISBN 0-9678550-9-8. https://doi.org/10.1351/goldbook." ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_15325775_6d4c_4192_82f1_e4feca9de426 ; + owl:annotatedTarget "A membrane having ion-exchange groups:"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; owl:annotatedTarget "substance that provides ions on dissolution in a solvent or on melting"@en . -[] a owl:Axiom ; - dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; - owl:annotatedTarget "a material in which the mobile species are ions and free movement of electrons is blocked."@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5823,18 +5808,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_fb9bf7cb_dd4b_4391_99a1_628263dd6940 ; owl:annotatedTarget "measuring instrument to obtain the electrical charge passed in an experiment, or to produce a known amount of substance in a titration."@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; - owl:annotatedTarget "Electrolyte solution in the cathodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the cathode is placed."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; owl:annotatedTarget "electrolyte on the cathode side of an electrochemical cell that is divided into compartments."@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; + owl:annotatedTarget "Electrolyte solution in the cathodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the cathode is placed."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5931,18 +5916,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_2d32a81a_2148_41bd_84fb_467aa8de4a8f ; owl:annotatedTarget "foil, wire, disc, or mesh electrode made of platinum, which is the most commonly used metallic working electrode in electrochemistry"@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; - owl:annotatedTarget "An interfacial reaction that necessarily involves a charge-transfer step."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; owl:annotatedTarget "electrochemical reaction involving the transfer of electrons between electrolyte and electrode"@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; + owl:annotatedTarget "An interfacial reaction that necessarily involves a charge-transfer step."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5957,15 +5942,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_328c6e36_3706_4d92_abae_432fa3adb2a0 ; - owl:annotatedTarget "a cell baffle has a second function in protecting the plate pack from damage by objects inserted through the filling hole"@en . + owl:annotatedTarget "internal component used to reduce the amount of electrolyte loss due to electrolyte spray being carried in the gas and/or by electrolyte movement"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_328c6e36_3706_4d92_abae_432fa3adb2a0 ; - owl:annotatedTarget "internal component used to reduce the amount of electrolyte loss due to electrolyte spray being carried in the gas and/or by electrolyte movement"@en . + owl:annotatedTarget "a cell baffle has a second function in protecting the plate pack from damage by objects inserted through the filling hole"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5979,6 +5964,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_34bc54e3_de4c_41f8_8d3a_d77c951ee23a ; owl:annotatedTarget "needle-like or tree-like formation of crystalline growth formed during deposition of a material"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; + owl:annotatedTarget "by convention, cell electrode at which, a reduction reaction occurs"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5997,12 +5988,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; owl:annotatedTarget "the concepts of “anode” and “cathode” are related only to the direction of electron flow, not to the polarity of the electrodes"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; - owl:annotatedTarget "by convention, cell electrode at which, a reduction reaction occurs"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -6023,15 +6008,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_3f6c9e09_5f23_41cc_9f85_7de365cef089 ; - owl:annotatedTarget "electrolyte creep is sometimes indicated by the presence of a visible solid deposit or wet spots"@en . + owl:annotatedTarget "gradual and slow spreading of an electrolyte film on the external surface of a cell or battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_3f6c9e09_5f23_41cc_9f85_7de365cef089 ; - owl:annotatedTarget "gradual and slow spreading of an electrolyte film on the external surface of a cell or battery"@en . + owl:annotatedTarget "electrolyte creep is sometimes indicated by the presence of a visible solid deposit or wet spots"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -6041,9 +6026,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_04f28ce3_251d_429e_aa85_ab3eb45bbcd2 ; - owl:annotatedTarget "in lithium batteries thermal runaway may cause melting of lithium"@en . + owl:annotatedTarget "unstable condition arising during constant voltage charge in which the rate of heat dissipation capability, causing a continuous temperature increase with resulting further charge current increase, which can lead to the destruction of the battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -6077,9 +6062,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_04f28ce3_251d_429e_aa85_ab3eb45bbcd2 ; - owl:annotatedTarget "unstable condition arising during constant voltage charge in which the rate of heat dissipation capability, causing a continuous temperature increase with resulting further charge current increase, which can lead to the destruction of the battery"@en . + owl:annotatedTarget "in lithium batteries thermal runaway may cause melting of lithium"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; diff --git a/versions/0.16.0-beta/context/context.json b/versions/0.16.0-beta/context/context.json index ac1b0bb..2006ca7 100644 --- a/versions/0.16.0-beta/context/context.json +++ b/versions/0.16.0-beta/context/context.json @@ -1076,7 +1076,6 @@ "ButlerVolmerEquation": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d48ea516_5cac_4f86_bc88_21b6276c0938", "C": "https://w3id.org/emmo#EMMO_36a9bf69_483b_42fd_8a0c_7ac9206320bc", "CASRN": "https://w3id.org/emmo#EMMO_d2a47cd8_662f_438f_855a_b4378eb992ff", - "CCCVCycling": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e", "CPlusPlus": "https://w3id.org/emmo#EMMO_64aba1e5_24b7_4140_8eb4_676c35698e79", "CRate": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_e1fd84eb_acdb_4b2c_b90c_e899d552a3ee", "CSharp": "https://w3id.org/emmo#EMMO_268a8a97_3a6f_4022_93da_962a66827cdc", @@ -1285,7 +1284,7 @@ "CoatingThickness": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3b938708_e7e4_4ac0_a959_9c04306302e7", "Cobalt": "https://w3id.org/emmo/domain/chemical-substance#substance_8f857eb2_7cc8_4294_954d_e69f2842c084", "CobaltAtom": "https://w3id.org/emmo#EMMO_3fe9d899_f1f1_5657_b176_ac6afff2e93d", - "CobaltBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_838c115b_6bc9_4ce8_9f8d_86a6bf67742a", + "CobaltBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7b811780_7251_481b_a4d3_97d437955099", "CobaltHydroxide": "https://w3id.org/emmo/domain/chemical-substance#substance_29b1c15d_2632_40d7_88f7_43575b68b988", "CobaltIIAcetate": "https://w3id.org/emmo/domain/chemical-substance#substance_4310c690_9810_4a95_8d62_7e78e0b84437", "CobaltIIBistrifluoromethanesulfonylimide": "https://w3id.org/emmo/domain/chemical-substance#substance_f4dffee2_c642_4114_a748_5e93b3908380", @@ -1358,6 +1357,7 @@ "ConstantCurrentCharging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_83f2b1e9_cb67_4dbf_977f_ba54bbae374f", "ConstantCurrentChargingCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_37c38b7e_9ded_481a_85fd_a467f1ee2b9f", "ConstantCurrentConstantVoltageCharging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0cc8f231_0ce5_467e_9c76_29b2c80349ad", + "ConstantCurrentConstantVoltageCycling": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e", "ConstantCurrentDischarging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_53fe3f58_0802_41cf_af69_4784fc42cc30", "ConstantCurrentDischargingCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_08833ed2_6324_411a_b34b_fe64c44cd5ef", "ConstantPotentialPulses": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_84d37a37_88bd_47db_9425_31f73a81d38c", @@ -1590,7 +1590,7 @@ "DeviceTemperature": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_463950b9_fd8d_48de_a52d_b29cab026391", "DewPointTemperature": "https://w3id.org/emmo#EMMO_a383e332_a271_463f_9e44_559604547220", "Diameter": "https://w3id.org/emmo#EMMO_c1c8ac3c_8a1c_4777_8e0b_14c1f9f9b0c6", - "Dichloromethane": "https://w3id.org/emmo/domain/chemical-substance#substance_8385c3c4_5906_48f6_b6b6_4bb60dccc27a", + "Dichloromethane": "https://w3id.org/emmo/domain/chemical-substance#substance_a6feec60_5fe7_4687_b427_3bf2ed06008d", "DieCasting": "https://w3id.org/emmo#EMMO_a85d0b8a_588e_423f_b799_97b0890e9183", "DielectricAndImpedanceSpectroscopy": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#DielectricAndImpedanceSpectroscopy", "Dielectrometry": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Dielectrometry", @@ -1624,7 +1624,7 @@ "Dimethoxyethane": "https://w3id.org/emmo/domain/chemical-substance#substance_b6ecabf9_14a4_4808_a139_55329e70ad42", "Dimethoxymethane": "https://w3id.org/emmo/domain/chemical-substance#substance_21954b0b_c05c_42db_b276_3a931d8aabb1", "DimethylCarbonate": "https://w3id.org/emmo/domain/chemical-substance#substance_c4a7d7bd_497e_457e_b858_ff73254266d0", - "DimethylSulfoxide": "https://w3id.org/emmo/domain/chemical-substance#substance_b593b5dd_7957_4b85_856a_dd59775210b6", + "DimethylSulfoxide": "https://w3id.org/emmo/domain/chemical-substance#substance_ea68e1a4_6be8_4686_8701_ba88b40d00b7", "Dimethylformamide": "https://w3id.org/emmo/domain/chemical-substance#substance_769bdc09_f533_4fde_bb53_20339d5bfcb7", "Dimethylpropyleneurea": "https://w3id.org/emmo/domain/chemical-substance#substance_945c68da_3baf_4da6_b794_dca7aebc4ca7", "Dimethylsulfate": "https://w3id.org/emmo/domain/chemical-substance#substance_3c8fb431_7d9d_4a89_a494_708df34f44d3", @@ -1837,7 +1837,7 @@ "ElectronicModel": "https://w3id.org/emmo#EMMO_6eca09be_17e9_445e_abc9_000aa61b7a11", "ElectronvoltPerMetre": "https://w3id.org/emmo#ElectronvoltPerMetre", "Electroosmosis": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_5641910f_6e69_4ce4_be84_4b1bf14b8916", - "Electroplating": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e", + "Electroplating": "https://w3id.org/emmo#EMMO_30e3edb5_0977_4b9b_9aed_5a4d16c1c07c", "ElementalMaterial": "https://w3id.org/emmo#EMMO_a086af15_a7c3_404c_b4ce_c8e4466f1b4b", "ElementalSubstance": "https://w3id.org/emmo#EMMO_436b11bd_1756_4821_9f14_c9ed6b67552e", "ElementaryBoson": "https://w3id.org/emmo#EMMO_cafd0f10_ce85_48b9_9a36_2b0af141ce21", @@ -2192,11 +2192,12 @@ "ISQBaseQuantity": "https://w3id.org/emmo#EMMO_1a4c1a97_88a7_4d8e_b2f9_2ca58e92dde4", "ISQDerivedQuantity": "https://w3id.org/emmo#EMMO_2946d40b_24a1_47fa_8176_e3f79bb45064", "ISQDimensionlessQuantity": "https://w3id.org/emmo#EMMO_a66427d1_9932_4363_9ec5_7d91f2bfda1e", - "IUPACName": "https://w3id.org/emmo#EMMO_16a3bd5c_75f0_42b3_b000_cb0d018f840e", + "IUPACName": "https://w3id.org/emmo#EMMO_f652e7d2_0b33_4d10_8d0f_2f70089982ba", "IUPACNomencalture": "https://w3id.org/emmo#EMMO_91a0635a_a89a_46de_8928_04a777d145c7", "Icon": "https://w3id.org/emmo#EMMO_d7788d1a_020d_4c78_85a1_13563fcec168", "Illuminance": "https://w3id.org/emmo#EMMO_b51fbd00_a857_4132_9711_0ef70e7bdd20", "IlluminanceTimeUnit": "https://w3id.org/emmo#EMMO_e467cc3f_676c_432e_b70e_19237d1bcc78", + "ImaginaryElectricImpedance": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626", "Impedimetry": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Impedimetry", "InChI": "https://w3id.org/emmo#EMMO_d74ed682_894f_46c5_87cb_167f60926965", "IncreasingPotentialPulses": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_77be01ef_49bd_4f2e_bec8_eec0894b8562", @@ -2288,7 +2289,7 @@ "IridiumSymbol": "https://w3id.org/emmo#EMMO_b8aab013_b729_51f1_bc14_5302e7f97cbe", "Iron": "https://w3id.org/emmo/domain/chemical-substance#substance_89fd13e8_8061_41da_83f4_634144116425", "IronAtom": "https://w3id.org/emmo#EMMO_a4839f08_1080_53bf_9cb3_101e20c2656b", - "IronBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_cc4e178c_bc1f_4502_b6c2_33f304ef6bab", + "IronBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_5e1136d3_df00_40f7_a4bc_8259341053a1", "IronDisulfide": "https://w3id.org/emmo/domain/chemical-substance#substance_c728b6b9_449a_45ff_b5ae_6b7968708f0d", "IronDisulfideElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d2726dd5_69f0_4cb1_bd3c_4c48813e57e7", "IronIIIHydroxide": "https://w3id.org/emmo/domain/chemical-substance#substance_323a2e39_d7d5_4802_884a_9aa41a280986", @@ -2556,6 +2557,7 @@ "LossFactor": "https://w3id.org/emmo#EMMO_c3796906_8063_47d4_92af_890ae08f25fa", "LowPressureCasting": "https://w3id.org/emmo#EMMO_8b2fd84c_8f51_4731_9bd7_830545e78b23", "LowerCriticalMagneticFluxDensity": "https://w3id.org/emmo#EMMO_fd4a6307_f9f7_4b54_b044_caa04e620232", + "LowerCurrentLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea", "LowerFrequencyLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_b66d6553_6136_4754_902a_707e414210c2", "LowerVoltageLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_534dd59c_904c_45d9_8550_ae9d2eb6bbc9", "Lumen": "https://w3id.org/emmo#Lumen", @@ -2608,7 +2610,7 @@ "MagnesiumTriflate": "https://w3id.org/emmo/domain/chemical-substance#substance_df24fad8_7ef0_4330_a3f2_c4d65d9a3be8", "MagnesiumTrifluoromethanesulfonyloxalatoborate": "https://w3id.org/emmo/domain/chemical-substance#substance_2b7473ba_9156_489a_880f_3a2f746cd104", "MagneticDipoleMoment": "https://w3id.org/emmo#EMMO_81e767f1_59b1_4d7a_bf69_17f322241831", - "MagneticDipoleMomentUnit": "https://w3id.org/emmo#EMMO_5073dc80_aec2_4a3b_8057_fababfcbfe11", + "MagneticDipoleMomentUnit": "https://w3id.org/emmo#EMMO_1c2226a9_22f0_40c8_8928_5a01d398f96e", "MagneticFieldStrength": "https://w3id.org/emmo#EMMO_b4895f75_41c8_4fd9_b6d6_4d5f7c99c423", "MagneticFieldStrengthUnit": "https://w3id.org/emmo#EMMO_e6b83139_ba92_4fbd_a8b2_c8dde55844a1", "MagneticFlux": "https://w3id.org/emmo#EMMO_3b931698_937e_49be_ab1b_36fa52d91181", @@ -2676,7 +2678,7 @@ "MassExcess": "https://w3id.org/emmo#EMMO_7dd84949_0afa_4313_9b89_7bb0dd2e7771", "MassFlow": "https://w3id.org/emmo#EMMO_6d61ee3c_c5b6_4452_bc11_e9c33af992a7", "MassFluxUnit": "https://w3id.org/emmo#EMMO_e35d4936_b2e3_4cd6_a437_f1c864b3d450", - "MassFraction": "https://w3id.org/emmo/disciplines/units/coherentsiunits#EMMO_089f13b1_ceb3_4d2a_8795_b4a2d92916da", + "MassFraction": "https://w3id.org/emmo#EMMO_7c055d65_2929_40e1_af4f_4bf10995ad50", "MassFractionOfDryMatter": "https://w3id.org/emmo#EMMO_8f171308_f902_42c5_ac1d_d5259022e9c1", "MassFractionOfWater": "https://w3id.org/emmo#EMMO_cac16ce6_2cef_405d_ac63_0f918db4875e", "MassFractionUnit": "https://w3id.org/emmo#EMMO_18448443_dcf1_49b8_a321_cf46e2c393e1", @@ -3027,6 +3029,7 @@ "NobeliumAtom": "https://w3id.org/emmo#EMMO_49eb0790_50c2_5691_a8bf_dfa6f4a9f6c7", "NobeliumSymbol": "https://w3id.org/emmo#EMMO_c1bb775c_0888_5b88_9cce_c49bae1d298b", "NobleGasElementalSubstance": "https://w3id.org/emmo/domain/chemical-substance#substance_cac14194_2d5f_4fe6_b794_a9319f6d76ee", + "NominalCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100", "NominalProperty": "https://w3id.org/emmo#EMMO_909415d1_7c43_4d5e_bbeb_7e1910159f66", "NominalVoltage": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_639b844a_e801_436b_985d_28926129ead6", "NonActivePower": "https://w3id.org/emmo#EMMO_83318add_d05e_40fc_93ea_c6cd605df437", @@ -3061,6 +3064,7 @@ "NumberOfFiniteVolumeCellsInX": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_e73586eb_8475_4879_a43e_087c702ea6bf", "NumberOfFiniteVolumeCellsInY": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_c2a85d02_c6b4_42df_b5ed_a9904ec34a5c", "NumberOfFiniteVolumeCellsInZ": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a5e00e3a_736c_4200_8d04_ed222fe07037", + "NumberOfIterations": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_88dd2bce_fb17_4705_905d_892681812290", "NumberOfTurnsInAWinding": "https://w3id.org/emmo#EMMO_eefaa0ef_e7d4_4633_bf79_655bb55f4a49", "Numeral": "https://w3id.org/emmo#EMMO_74b05aed_66bf_43c8_aa2c_752a9ca8be03", "Numerical": "https://w3id.org/emmo#EMMO_4ce76d7f_03f8_45b6_9003_90052a79bfaa", @@ -3211,7 +3215,7 @@ "Permittivity": "https://w3id.org/emmo#EMMO_0ee5779e_d798_4ee5_9bfe_c392d5bea112", "PermittivityUnit": "https://w3id.org/emmo#EMMO_5f89cb0c_3171_47ee_b2ab_027a07c34c4b", "Persistence": "https://w3id.org/emmo#EMMO_e04884d9_eda6_487e_93d5_7722d7eda96b", - "Person": "http://xmlns.com/foaf/0.1/Person", + "Person": "https://schema.org/Person", "Perspective": "https://w3id.org/emmo#EMMO_49267eba_5548_4163_8f36_518d65b583f9", "Peta": "https://w3id.org/emmo#EMMO_d7c74480_a568_4470_acff_f18b499cc850", "PetaPrefixedUnit": "https://w3id.org/emmo#EMMO_43a6b269_da31_4bb6_a537_c97df4fff32a", @@ -3298,7 +3302,7 @@ "Porosity": "https://w3id.org/emmo#EMMO_3a6578ac_aee0_43b9_9bc6_1eb208c8c9a9", "PorousElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3663991d_9319_4f7a_922b_f0e428b58801", "PorousSeparator": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_58413d4e_2885_459e_ac06_8d45e661cf91", - "PositionVector": "https://w3id.org/emmo#EMMO_4312cae4_03ba_457e_b35d_0671a7db350c", + "PositionVector": "https://w3id.org/emmo#EMMO_44da6d75_54a4_4aa8_bd3a_156f6e9abb8e", "PositiveElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_aff732a9_238a_4734_977c_b2ba202af126", "PositiveTerminal": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_522f0c0b_cf33_4328_af71_12e38dae6798", "Positron": "https://w3id.org/emmo#EMMO_26a38b26_38ea_4acf_b212_db9e34c71b7a", @@ -3483,7 +3487,7 @@ "R54215": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_fc9e7ba3_5084_4c2a_b488_c6a96af99232", "R616": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_dc019f3f_e5f3_4eeb_bab9_a845a02223a0", "R621": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_15ec346a_6d3c_4161_95e1_9cf889965f85", - "R626": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_68c1c36e_1548_4247_bae2_fe7102a2c4ff", + "R626": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6b275583_433f_46f7_aafd_ebc9409257cc", "R712": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_bb2faf17_b819_4876_b17f_fa82917cf85d", "R716": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_34cb7ea7_2436_46e0_806e_a3c7835ae228", "R721": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3279f575_1c62_4bf2_a6e8_de4c7ff36f8e", @@ -3535,6 +3539,7 @@ "ReactivePower": "https://w3id.org/emmo#EMMO_d8030875_6d89_4645_9728_bbc3b8690609", "ReactorTimeConstant": "https://w3id.org/emmo#EMMO_b03dfad7_eab8_4949_9d10_dd4fd12faaef", "Real": "https://w3id.org/emmo#EMMO_18d180e4_5e3e_42f7_820c_e08951223486", + "RealElectricImpedance": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f", "ReciprocalAmountPerVolumeUnit": "https://w3id.org/emmo#EMMO_aef218f9_6ded_4db9_9263_e78eed55e5d6", "ReciprocalCentiMetre": "https://w3id.org/emmo#ReciprocalCentiMetre", "ReciprocalCubicCentiMetre": "https://w3id.org/emmo#ReciprocalCubicCentiMetre", @@ -3637,6 +3642,7 @@ "ResponseTimeAtAnISE": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_1a104474_c326_4a29_ac26_26a05ac8f72c", "RestEnergy": "https://w3id.org/emmo#EMMO_5117c5fe_f661_46f8_83c3_b48947f1532a", "RestMass": "https://w3id.org/emmo#EMMO_3c947caf_4070_4c79_a3a3_e53274ac9944", + "Resting": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b", "RestingTime": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_2678a656_4a27_4706_8dde_b0a93e9b92fa", "ReversibleHydrogenElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0d9ba00d_04bc_4bdc_85af_3380694f6f68", "RevolutionPerMinute": "https://w3id.org/emmo#RevolutionPerMinute", @@ -3790,7 +3796,7 @@ "SiemensSquareMetrePerMole": "https://w3id.org/emmo#SiemensSquareMetrePerMole", "Sievert": "https://w3id.org/emmo#Sievert", "Sign": "https://w3id.org/emmo#EMMO_b21a56ed_f969_4612_a6ec_cb7766f7f31d", - "Signal": "https://w3id.org/emmo/domain/chameo#Signal", + "Signal": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Signal", "SignalReferencePotential": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_68059d94_4c21_4065_b329_07faeebc7e87", "Silicon": "https://w3id.org/emmo/domain/chemical-substance#substance_68c0876b_cb62_41cd_846d_95cc9d9a8733", "SiliconAtom": "https://w3id.org/emmo#EMMO_798b0c96_82ca_5ce8_8d5f_f9f72668cf5d", @@ -4318,6 +4324,7 @@ "UpQuark": "https://w3id.org/emmo#EMMO_0a3f04a6_ba3a_49d9_99da_08b0e26f51f0", "UpQuarkType": "https://w3id.org/emmo#EMMO_fc47b76f_ad01_4cd0_8fc6_55532000e7c8", "UpperCriticalMagneticFluxDensity": "https://w3id.org/emmo#EMMO_6bfe6ad2_96ba_4478_81e5_d8881c550757", + "UpperCurrentLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45", "UpperFrequencyLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_666f0b69_9c74_49a3_80b3_96a188332462", "UpperVoltageLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6dcd5baf_58cd_43f5_a692_51508e036c88", "UraniumAtom": "https://w3id.org/emmo#EMMO_b233f8c0_37d8_51ae_9264_560e6649e246", diff --git a/versions/0.16.0-beta/electrochemicalquantities.ttl b/versions/0.16.0-beta/electrochemicalquantities.ttl index 882a543..96cb275 100644 --- a/versions/0.16.0-beta/electrochemicalquantities.ttl +++ b/versions/0.16.0-beta/electrochemicalquantities.ttl @@ -24,8 +24,6 @@ emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f a owl:AnnotationProperty . emmo:EMMO_5c78b424_087b_4e31_8c91_6422f1be1e86 owl:equivalentClass :electrochemistry_9c657fdc_b9d3_4964_907c_f9a6e8c5f52b . -emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 :electrochemistry_097ea615_c209_4edd_a1a1_5eea71d98fe8 "acimp/ohms"@en . - emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry_37b24a94_cae0_4d7a_9519_9f7692dec607 ; skos:altLabel "MassDiffusivity"@en ; emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q604008"@en ; @@ -101,6 +99,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "D40ParticleSize"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 40% of the sample's particles fall."@en . +:electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626 a owl:Class ; + rdfs:label "ImaginaryElectricImpedance"@en ; + rdfs:comment "the imaginary part of the complex electric impedance"@en ; + rdfs:subClassOf emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 ; + skos:prefLabel "ImaginaryElectricImpedance"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the imaginary part of the complex electric impedance"@en . + :electrochemistry_02d2d1d1_241c_429b_b4e7_31f2c3dc4835 a owl:Class ; rdfs:label "D95ParticleSize"@en ; rdfs:comment "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 95% of the sample's particles fall."@en ; @@ -381,6 +386,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "D50ParticleSize"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 50% of the sample's particles fall."@en . +:electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45 a owl:Class ; + rdfs:label "UpperCurrentLimit"@en ; + rdfs:comment "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en ; + rdfs:subClassOf :electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 ; + skos:prefLabel "UpperCurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + :electrochemistry_3e54f9e3_a31d_4821_9bfb_ef953a42c35b a owl:Class ; rdfs:label "MaximumPulseDischargingCurrent"@en ; rdfs:comment "the maximum current approved for pulse discharge of an electrochemical device"@en ; @@ -608,6 +620,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "ChargingCurrent"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electric current applied to an electrochemical device during a charging process"@en . +:electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea a owl:Class ; + rdfs:label "LowerCurrentLimit"@en ; + rdfs:comment "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en ; + rdfs:subClassOf :electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 ; + skos:prefLabel "LowerCurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + :electrochemistry_7f073272_8925_4344_995c_a5a6dd1fcde6 a owl:Class ; rdfs:label "ChargingConstantCurrentPercentage"@en ; rdfs:comment "the percentage of the total charge capacity that is obtained during a constant current charge process"@en ; @@ -705,6 +724,20 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "DischargingSpecificCapacity"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "quotient of the capacity of a cell or battery [ or electrode or active material ] obtained during a discharge process by its mass."@en . +:electrochemistry_88dd2bce_fb17_4705_905d_892681812290 a owl:Class ; + rdfs:label "NumberOfIterations"@en ; + rdfs:comment "the number of times an iterative process should occur"@en ; + rdfs:subClassOf emmo:EMMO_ba882f34_0d71_4e4f_9d92_0c076c633a2c ; + skos:prefLabel "NumberOfIterations"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the number of times an iterative process should occur"@en . + +:electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100 a owl:Class ; + rdfs:label "NominalCapacity"@en ; + rdfs:comment "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en ; + rdfs:subClassOf :electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 ; + skos:prefLabel "NominalCapacity"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en . + :electrochemistry_8e943e12_ecc0_4093_899e_7226be6be7f2 a owl:Class ; rdfs:label "D90ParticleSize"@en ; rdfs:comment "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 90% of the sample's particles fall."@en ; @@ -820,6 +853,15 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the celsius temperature of the ambient environment"@en ; :electrochemistry_1b717a20_17e3_4480_8c60_c4ae94058f05 "Environmental_Temperature (C)"@en . +:electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f a owl:Class ; + rdfs:label "RealElectricImpedance"@en ; + rdfs:comment "the imaginary part of the complex electric impedance"@en ; + rdfs:subClassOf emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 ; + skos:altLabel "ACResistance"@en ; + skos:prefLabel "RealElectricImpedance"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q1048490"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the imaginary part of the complex electric impedance"@en . + :electrochemistry_ae108db7_8765_4329_9908_059277dee586 a owl:Class ; rdfs:label "StepCapacity"@en ; rdfs:comment "the amount of charge that has passed through an electrochemical device within the time interval of a given testing step"@en ; @@ -1084,8 +1126,8 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry ; dcterms:license "https://creativecommons.org/licenses/by/4.0/legalcode" ; owl:imports ; - owl:versionIRI ; - owl:versionInfo "0.17.0-beta" . + owl:versionIRI ; + owl:versionInfo "0.18.0-beta" . a owl:NamedIndividual, foaf:Person ; @@ -1866,6 +1908,8 @@ In either case, the magnitude of the catalytic current depends on the applied po emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electric potential of an ion-selective electrode (ISE) and activity of an analyte ion at which the potential of the ISE is independent of temperature"@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1351/goldbook.I03304"@en . +emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 :electrochemistry_097ea615_c209_4edd_a1a1_5eea71d98fe8 "acimp/ohms"@en . + emmo:EMMO_e218c625_6a39_47a9_8d08_a2ef41c152a9 rdfs:subClassOf :electrochemistry_02eb0465_4f94_453c_8c1f_5ddf80134634 ; skos:altLabel "GravimetricEnergyDensity"@en ; :electrochemistry_811aafc3_0c6d_470e_b67e_ff5c82992609 "CmpEng(mWh/g)"@en . @@ -1997,14 +2041,6 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog skos:prefLabel "TemperatureLimit"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the temperature of a system"@en . -:electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 a owl:Class ; - rdfs:label "RatedCapacity"@en ; - rdfs:comment "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en ; - rdfs:subClassOf :electrochemistry_791c1915_a791_4450_acd8_7f94764743b5 ; - skos:prefLabel "RatedCapacity"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-03-15"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en . - :electrochemistry_9ed7210c_c4fa_467b_822d_ba12f885bdf4 a owl:Class ; rdfs:label "ConcentrationOverpotential"@en ; rdfs:comment "The concentration overpotential of an electrode reaction at a given electrode current density (c.d.) is basically the difference in equilibrium potentials across the diffusion layer. More precisely, it is the potential of a reference electrode (of the same electrode reaction as the working electrode ) with the interfacial concentrations which establish themselves at c.d., relative to the potential of a similar reference electrode with the concentrations of the bulk solution. From such a measured potential difference, with c.d. flowing, one needs to subtract the ohmic potential drop prevailing between the two electrodes."@en, @@ -2110,6 +2146,14 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog skos:prefLabel "NumberOfFiniteVolumeCells"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "number of discrete finite volume cells in a grid or sub-grid"@en . +:electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 a owl:Class ; + rdfs:label "RatedCapacity"@en ; + rdfs:comment "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en ; + rdfs:subClassOf :electrochemistry_791c1915_a791_4450_acd8_7f94764743b5 ; + skos:prefLabel "RatedCapacity"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-03-15"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en . + :electrochemistry_cc519a19_b8d5_4e3f_b893_3a884888ad79 a owl:Class ; rdfs:label "MaximumTemperature"@en ; rdfs:comment "the maximum allowable temperature"@en ; @@ -2186,14 +2230,6 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa :electrochemistry_a07dd85b_d0df_4d5d_8b0c_14d20ea3fe45 "current"@en ; :electrochemistry_ea9f4dba_8ca2_419e_9cdf_ce54e9ebbd46 "Current (A)"@en . -:electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 a owl:Class ; - rdfs:label "CurrentLimit"@en ; - rdfs:comment "limit on the electric current of an electrical system"@en ; - rdfs:subClassOf emmo:EMMO_c995ae70_3b84_4ebb_bcfc_69e6a281bb88, - :electrochemistry_b395a244_3a75_4737_be38_981bfa1277fe ; - skos:prefLabel "CurrentLimit"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the electric current of an electrical system"@en . - :electrochemistry_900e357f_2ee3_425a_a0b6_322661117787 a owl:Class ; rdfs:label "ElectrochemicalProperty"@en ; rdfs:subClassOf emmo:EMMO_909415d1_7c43_4d5e_bbeb_7e1910159f66 ; @@ -2292,6 +2328,14 @@ foaf:Person a owl:Class ; emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Faradaic_current"@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://goldbook.iupac.org/terms/view/F02321"@en . +:electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 a owl:Class ; + rdfs:label "CurrentLimit"@en ; + rdfs:comment "limit on the electric current of an electrical system"@en ; + rdfs:subClassOf emmo:EMMO_c995ae70_3b84_4ebb_bcfc_69e6a281bb88, + :electrochemistry_b395a244_3a75_4737_be38_981bfa1277fe ; + skos:prefLabel "CurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the electric current of an electrical system"@en . + :electrochemistry_1cd1d777_e67b_47eb_81f1_edac35d9f2c6 a owl:Class ; rdfs:label "Overpotential"@en ; rdfs:comment "difference between the electrode potential with current flow, and the electrode potential without current flow, i.e. the equilibrium potential"@en, diff --git a/versions/0.16.0-beta/electrochemistry-inferred.ttl b/versions/0.16.0-beta/electrochemistry-inferred.ttl index f4fa0f9..c704a22 100644 --- a/versions/0.16.0-beta/electrochemistry-inferred.ttl +++ b/versions/0.16.0-beta/electrochemistry-inferred.ttl @@ -7,7 +7,7 @@ @base . rdf:type owl:Ontology ; - owl:versionIRI ; + owl:versionIRI ; ""@en , "CHAMEO is a domain ontology designed to model the common aspects across the different characterisation techniques and methodologies."@en , """Defines physical quantities in the International System of Quantities (ISQ). ISQ was made an official ISO standard in 2009 and is defined in the ISO/IEC 80000 standard. @@ -146,12 +146,12 @@ The symbolic module includes symbols, symbolic constructs and formal languages." "https://w3id.org/emmo/domain/characterisation-methodology/chameo" ; "2024-04-12" , "2024-06-23"^^xsd:date , - "2024-07-03"^^xsd:date ; + "2024-07-05"^^xsd:date ; "https://creativecommons.org/licenses/by/4.0/legalcode" , "https://creativecommons.org/licenses/by/4.0/legalcode"@en ; "2024-04-12" , "2024-06-23"^^xsd:date , - "2024-07-03"^^xsd:date ; + "2024-07-05"^^xsd:date ; "EMMC ASBL" , "EMMC ASBL"@en , """EMMC ASBL @@ -241,11 +241,11 @@ We kindly acknowledge NIST for reusing their content, including the selection of "You can contact EMMO Authors via emmo@emmc.eu"@en ; owl:backwardCompatibleWith "" , " " , - "0.16.0-beta" ; - owl:priorVersion "0.16.0-beta" , + "0.17.0-beta" ; + owl:priorVersion "0.17.0-beta" , "0.5.0-beta" , "1.0.0-beta2" ; - owl:versionInfo "0.17.0-beta" , + owl:versionInfo "0.18.0-beta" , "0.6.0-beta" , "1.0.0-beta3" , "1.0.0-beta7" ; @@ -2333,7 +2333,7 @@ While the EMMO FOL introduces the quantum causality relation C(x,y) as primitive rdf:type owl:ObjectProperty ; rdfs:subPropertyOf ; rdfs:domain ; - rdfs:range ; + rdfs:range ; "hasSolvent"@en . @@ -2364,7 +2364,7 @@ While the EMMO FOL introduces the quantum causality relation C(x,y) as primitive rdf:type owl:ObjectProperty ; rdfs:subPropertyOf ; rdfs:domain ; - rdfs:range ; + rdfs:range ; "hasSolute"@en . @@ -34532,7 +34532,7 @@ Wikipedia"""@en ; , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "ZincElectrode"@en ; "an electrode in which the main active material is zinc metal"@en ; @@ -34555,7 +34555,7 @@ Wikipedia"""@en ; rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "LithiumElectrode"@en ; "an electrode in which the active material is lithium metal" . @@ -44391,164 +44391,11 @@ Wear is defined as the progressive removal of the material from a solid surface "InChI=1S/Pb" . -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0139937b_2724_4864_84fb_f14bcfb83538 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0bdf0bb9_41fc_455d_af11_a249e24acdf6 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0f2f65a7_5cc4_4c86_a4d0_676771c646f1 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_250fa43e_1f26_4ed8_b787_91a2325a8e7b - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_25f6ff4c_53ad_4837_97c4_aa6f06099bb5 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_2a540939_3908_4f85_92f9_c46da7d4e9cb - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_2a87ca10_fc6a_4d61_b48c_d9790a566ee3 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_3899a9c9_9b34_443e_8ce6_0257589bb38a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_3ac62305_acd6_4312_9e31_4f824bd2530d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_4126ee09_b9c6_4694_bf33_0d8970e05f72 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_4c62d334_a124_40b3_9fd1_fe713d01a6af - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_5088ad54_b37d_4ee1_a086_d6c17e644f9a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_5cee19d2_f916_4264_a8ed_efed13a808d2 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_68c0876b_cb62_41cd_846d_95cc9d9a8733 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_68f9b85e_340f_46ec_96da_ebb6bd62f5fd - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_73d4606c_7460_4a5c_9413_793bdf35753e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_7dc738d6_74f2_489e_ae84_a6dbdf627f2e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_848003a2_71ee_4967_8039_354c907ec7f4 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_97439fbb_155f_433d_9edd_d510cd491f24 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_9bd78e1c_a4dc_41b6_8013_adb51df1ffdc - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_9da78aea_d436_40e2_a68f_c3dee32b825e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_aa8e9cc4_5f66_4307_b1c8_26fac7653a90 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_acdb232f_8041_4e11_8a11_5db2d2baae4d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_b01771a9_218a_4b01_b20f_4021cfa0b7d5 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_b3815a7f_f64a_48f6_b0ce_d0032578c699 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c109ca45_08c7_4436_a818_a9c575785e2f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c28a0967_ed23_48cc_a14e_a651d75a19db - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c5582dae_ccff_4fbe_adaa_078091054640 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c728b6b9_449a_45ff_b5ae_6b7968708f0d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_cd17ca33_ae3d_4738_8930_547673bf6c1f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_cdd18f0c_e7b3_4d09_b3dd_c09fe4b1adba - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_d53259a7_0d9c_48b9_a6c1_4418169df303 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_d673ceb2_3045_4e2e_8cad_56f5169b542f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_db74b6b7_09fc_40db_a7d5_6eb86b69192a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_dc5fb846_1824_40f8_9834_81f118aa1c2d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_dcdbdbed_2e20_40d1_a7a5_5761de7f0618 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_e1e6ff98_0725_4d27_ab21_2ca5a95371f0 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_e8fafdc8_6cd3_4dd0_9630_10ca8e3f1827 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_f3e7979a_e3ef_450a_8762_7d8778afe478 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_f7525766_90cf_43e9_8932_7cb3b14f676f - rdf:type owl:Class . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626 + rdf:type owl:Class ; + rdfs:subClassOf ; + "ImaginaryElectricImpedance"@en ; + "the imaginary part of the complex electric impedance"@en . ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_01260656_ac32_472e_9513_a607366538ec @@ -44872,11 +44719,11 @@ Wear is defined as the progressive removal of the material from a solid surface rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCLCOElectrode"@en ; @@ -45639,7 +45486,7 @@ and t* through mathematical models, provided that the long-time potential- deter , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LFPElectrode"@en ; @@ -46241,7 +46088,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "PtElectrode"@en ; "PlatinumElectrode"@en ; @@ -46343,7 +46190,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SiliconOxideGraphiteElectrode"@en ; @@ -46477,7 +46324,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "FTOElectrode"@en ; @@ -46500,7 +46347,7 @@ Aluminum foil"""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "NiOOHElectrode"@en , "NickelOxyhydroxideElectrode"@en ; @@ -46544,6 +46391,14 @@ Aluminum foil"""@en . "a coin case with a nominal diameter of 7.9 mm and a height of 1.65 mm"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b + rdf:type owl:Class ; + rdfs:subClassOf , + ; + "Resting"@en ; + "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 rdf:type owl:Class ; rdfs:subClassOf ; @@ -46811,6 +46666,13 @@ Aluminum foil"""@en . "A material relation in electrochemistry."@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45 + rdf:type owl:Class ; + rdfs:subClassOf ; + "UpperCurrentLimit"@en ; + "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3e54f9e3_a31d_4821_9bfb_ef953a42c35b rdf:type owl:Class ; rdfs:subClassOf , @@ -46981,7 +46843,7 @@ Aluminum foil"""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNMOElectrode"@en ; @@ -47201,11 +47063,11 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCLMOElectrode"@en ; @@ -47294,7 +47156,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumNickelPhosphateElectrode"@en ; @@ -47549,7 +47411,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumIronPhosphateElectrode"@en ; @@ -47904,7 +47766,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "CarbonMonofluorideElectrode"@en ; "electrode in which the active material is carbon monofluoride"@en ; @@ -48131,7 +47993,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "HardCarbonElectrode"@en ; "electrode in which the active material is hard carbon"@en . @@ -48291,7 +48153,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "SAE"@en ; "SolidAmalgamElectrode"@en ; @@ -48426,7 +48288,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LTOElectrode"@en ; @@ -48518,20 +48380,13 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ] . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "system that consists of at least two electron conductors (electrodes) in contact with ionic conductors (electrolytes)"@en ; - "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6fec8cc1_4e6c_428e_8343_6cf3c286a185 rdf:type owl:Class ; rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "AuElectrode"@en ; "GoldElectrode"@en ; @@ -48691,7 +48546,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NiOElectrode"@en ; @@ -48721,7 +48576,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "TiO2Electrode"@en ; @@ -48915,13 +48770,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ] . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "in secondary cells, the active material is restored to its original state during charge"@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - [ rdf:type owl:Axiom ; owl:annotatedSource ; owl:annotatedProperty ; @@ -48965,6 +48813,13 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s "an electrode in which the primary active material consists of caesium or caesium compounds"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea + rdf:type owl:Class ; + rdfs:subClassOf ; + "LowerCurrentLimit"@en ; + "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7f073272_8925_4344_995c_a5a6dd1fcde6 rdf:type owl:Class ; rdfs:subClassOf ; @@ -49118,7 +48973,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "LiquidGalliumElectrode"@en ; "a liquid electrode with an active material of gallium"@en . @@ -49188,7 +49043,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "ZnOElectrode"@en ; @@ -49446,6 +49301,13 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "an electrode in which the primary active material consists of sulfur or sulfur compounds"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_88dd2bce_fb17_4705_905d_892681812290 + rdf:type owl:Class ; + rdfs:subClassOf ; + "NumberOfIterations"@en ; + "the number of times an iterative process should occur"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8968eb7a_9a65_4286_a596_c31b998df329 rdf:type owl:Class ; rdfs:subClassOf ; @@ -49504,6 +49366,13 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "substance that increases chemical reaction speed, and which is conserved after the reaction"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100 + rdf:type owl:Class ; + rdfs:subClassOf ; + "NominalCapacity"@en ; + "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8b40856f_1ca2_4137_9616_7fb624671909 rdf:type owl:Class ; rdfs:subClassOf , @@ -50109,7 +49978,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumCobaltPhosphateElectrode"@en ; @@ -50298,13 +50167,6 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; "plate in which the active material is applied as a paste to a conductive current collector"@en . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "plate in which the active material is applied as a paste to a conductive current collector"@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a24f8581_a5a4_41a4_bb45_d0fdd5c0d810 rdf:type owl:Class ; @@ -50397,7 +50259,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "SilverOxideElectrode"@en ; "an electrode in which the primary active material consists of manganese dioxide or vmanganese dioxide compounds"@en ; @@ -50427,7 +50289,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "AgElectrode"@en ; "SilverElectrode"@en ; @@ -50662,7 +50524,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "CupricOxideElectrode"@en ; "CopperOxideElectrode"@en ; @@ -50751,6 +50613,15 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "Environmental_Temperature (C)"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f + rdf:type owl:Class ; + rdfs:subClassOf ; + "ACResistance"@en ; + "RealElectricImpedance"@en ; + "https://www.wikidata.org/wiki/Q1048490"@en ; + "the imaginary part of the complex electric impedance"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abfadc99_6e43_4d37_9b04_7fc5b0f327ae rdf:type owl:Class ; rdfs:subClassOf , @@ -50782,7 +50653,8 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e rdf:type owl:Class ; rdfs:subClassOf ; - "CCCVCycling"@en ; + "CCCVCycling"@en ; + "ConstantCurrentConstantVoltageCycling"@en ; "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en . @@ -51030,7 +50902,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCElectrode"@en ; @@ -51360,11 +51232,11 @@ of other configurations are used."""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNMOLFPElectrode"@en ; @@ -51466,13 +51338,6 @@ of other configurations are used."""@en . "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; "https://en.wikipedia.org/wiki/Fuel_cell"@en . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_bea04148_10d9_4eda_9cd5_8f609d7e9ff8 rdf:type owl:Class ; @@ -51568,7 +51433,7 @@ of other configurations are used."""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LMOElectrode"@en ; @@ -51751,11 +51616,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "ITO"@en ; @@ -51809,7 +51674,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "GraphiteElectrode"@en ; "electrode in which the active material is graphite"@en . @@ -51928,7 +51793,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "MnO2Electrode"@en ; "ManganeseDioxideElectrode"@en ; @@ -51943,7 +51808,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNOElectrode"@en ; @@ -51963,7 +51828,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "IrO2Electrode"@en ; @@ -51977,7 +51842,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumManganesePhosphateElectrode"@en ; @@ -52146,7 +52011,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "IronDisulfideElectrode"@en ; "an electrode in which the primary active material consists of iron disulfide or iron disulfide compounds."@en ; @@ -52509,7 +52374,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "HgElectrode"@en ; "MercuryElectrode"@en ; @@ -52785,11 +52650,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SiliconGraphiteElectrode"@en ; @@ -52802,7 +52667,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumManganeseOxideElectrode"@en ; @@ -53004,7 +52869,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumCobaltOxideElectrode"@en ; @@ -53096,7 +52961,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NCAElectrode"@en ; @@ -53315,7 +53180,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "PbOElectrode"@en ; @@ -53401,7 +53266,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumChromiumOxideElectrode"@en ; @@ -53621,7 +53486,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LCOElectrode"@en ; @@ -53672,11 +53537,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LMOLFPElectrode"@en ; @@ -53808,10 +53673,10 @@ In either case, the magnitude of the catalytic current depends on the applied po "The universe is considered as a causally self-connected object, encompassing all other objects. For this reason is unique."@en . -[ owl:qualifiedCardinality "3"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "3"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "4"^^xsd:nonNegativeInteger @@ -53835,10 +53700,10 @@ In either case, the magnitude of the catalytic current depends on the applied po [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:minQualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:minQualifiedCardinality "2"^^xsd:nonNegativeInteger +[ owl:minQualifiedCardinality "1"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger @@ -53850,7 +53715,7 @@ In either case, the magnitude of the catalytic current depends on the applied po [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:minQualifiedCardinality "2"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger diff --git a/versions/0.16.0-beta/electrochemistry.ttl b/versions/0.16.0-beta/electrochemistry.ttl index baa1206..d442e3c 100644 --- a/versions/0.16.0-beta/electrochemistry.ttl +++ b/versions/0.16.0-beta/electrochemistry.ttl @@ -1,6 +1,6 @@ @prefix : . @prefix bibo: . -@prefix chemsub: . +@prefix chemsub: . @prefix dcterms: . @prefix emmo: . @prefix foaf: . @@ -54,9 +54,9 @@ schema:name a owl:AnnotationProperty . dcterms:created "2022-11-25"^^xsd:date ; dcterms:creator , ; - dcterms:issued "2024-07-03"^^xsd:date ; + dcterms:issued "2024-07-05"^^xsd:date ; dcterms:license "https://creativecommons.org/licenses/by/4.0/legalcode" ; - dcterms:modified "2024-07-03"^^xsd:date ; + dcterms:modified "2024-07-05"^^xsd:date ; dcterms:publisher "EMMO" ; dcterms:source , , @@ -67,13 +67,13 @@ schema:name a owl:AnnotationProperty . bibo:status "unstable" ; vann:preferredNamespacePrefix "echem" ; vann:preferredNamespaceUri "https://w3id.org/emmo/domain/electrochemistry" ; - owl:backwardCompatibleWith "0.16.0-beta" ; + owl:backwardCompatibleWith "0.17.0-beta" ; owl:imports , , - ; - owl:priorVersion "0.16.0-beta" ; - owl:versionIRI ; - owl:versionInfo "0.17.0-beta" ; + ; + owl:priorVersion "0.17.0-beta" ; + owl:versionIRI ; + owl:versionInfo "0.18.0-beta" ; foaf:logo "https://raw.githubusercontent.com/emmo-repo/domain-electrochemistry/gh-pages/assets/img/fig/png/domain-electrochemistry-logo.png" . :electrochemistry_027d437e_3bbf_4eda_940b_e509f8d2b993 a owl:Class ; @@ -535,6 +535,14 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "R716" ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a coin case with a nominal diameter of 7.9 mm and a height of 1.65 mm"@en . +:electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b a owl:Class ; + rdfs:label "Resting"@en ; + rdfs:comment "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en ; + rdfs:subClassOf , + :electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 ; + skos:prefLabel "Resting"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en . + :electrochemistry_36444184_1100_4271_869f_7f2d983aaecb a owl:Class ; rdfs:label "P45173115" ; rdfs:comment "a prismatic case with a nominal length of 45 mm, width of 173 mm, and height of 115 mm"@en ; @@ -1564,6 +1572,15 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "TinBasedElectrode"@en ; emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "an electrode in which the primary active material consists of tin or tin compounds"@en . +:electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c a owl:Class ; + rdfs:label "PastedPlate"@en ; + rdfs:comment "plate in which the active material is applied as a paste to a conductive current collector"@en ; + rdfs:subClassOf :electrochemistry_92147e31_d015_4889_a092_04fbab033f15 ; + skos:altLabel "PastedElectrode"@en ; + skos:prefLabel "PastedPlate"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "plate in which the active material is applied as a paste to a conductive current collector"@en . + :electrochemistry_a277e420_2483_44d5_a2bc_4e421dea231a a owl:Class ; rdfs:label "R926" ; rdfs:comment "a coin case with a nominal diameter of 9.5 mm and a height of 2.6 mm"@en ; @@ -1658,10 +1675,11 @@ schema:name a owl:AnnotationProperty . emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a coin case with a nominal diameter of 11.6 mm and a height of 4.2 mm"@en . :electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e a owl:Class ; - rdfs:label "CCCVCycling"@en ; + rdfs:label "ConstantCurrentConstantVoltageCycling"@en ; rdfs:comment "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en ; rdfs:subClassOf :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; - skos:prefLabel "CCCVCycling"@en ; + skos:altLabel "CCCVCycling"@en ; + skos:prefLabel "ConstantCurrentConstantVoltageCycling"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en . :electrochemistry_ad9cdad6_66e8_471e_a7c6_b79f37c20814 a owl:Class ; @@ -1783,6 +1801,17 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "P20100141" ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a prismatic case with a nominal length of 20 mm, width of 100 mm, and height of 141 mm"@en . +:electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d a owl:Class ; + rdfs:label "FuelCell"@en ; + rdfs:comment "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; + rdfs:subClassOf :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; + skos:prefLabel "FuelCell"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q180253"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-05"@en ; + emmo:EMMO_6dd685dd_1895_46e4_b227_be9f7d643c25 "https://dbpedia.org/page/Fuel_cell"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; + emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Fuel_cell"@en . + :electrochemistry_bea04148_10d9_4eda_9cd5_8f609d7e9ff8 a owl:Class ; rdfs:label "CelsiusTemperatureMeasurement"@en ; rdfs:comment "measurement of temperature"@en ; @@ -3335,15 +3364,6 @@ schema:name a owl:AnnotationProperty . "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-26"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "interface between an electrolyte and an electrode where an electrode reaction takes place."@en . -:electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c a owl:Class ; - rdfs:label "PastedPlate"@en ; - rdfs:comment "plate in which the active material is applied as a paste to a conductive current collector"@en ; - rdfs:subClassOf :electrochemistry_92147e31_d015_4889_a092_04fbab033f15 ; - skos:altLabel "PastedElectrode"@en ; - skos:prefLabel "PastedPlate"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "plate in which the active material is applied as a paste to a conductive current collector"@en . - :electrochemistry_a462859d_d8bd_48ea_8bde_1576f1248a1e a owl:Class ; rdfs:label "SilverElectrode"@en ; rdfs:comment "electrode in the form of foil, mesh, wire, rod, tube, powder, pellets, or single crystal of silver"@en ; @@ -3459,17 +3479,6 @@ of other configurations are used."""@en . emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-19"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "part which insures insulation between the plate (electrode) edges and adjacent plates (electrodes) and the container side walls"@en . -:electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d a owl:Class ; - rdfs:label "FuelCell"@en ; - rdfs:comment "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - rdfs:subClassOf :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; - skos:prefLabel "FuelCell"@en ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q180253"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-05"@en ; - emmo:EMMO_6dd685dd_1895_46e4_b227_be9f7d643c25 "https://dbpedia.org/page/Fuel_cell"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Fuel_cell"@en . - :electrochemistry_bed5b5f9_b89d_45e3_a8c2_81b70ae21847 a owl:Class ; rdfs:label "SeriesParallelConnection"@en ; rdfs:comment "arrangement of cells or batteries wherein in series connected cells or batteries are connected in parallel."@en ; @@ -4518,15 +4527,20 @@ schema:Person a owl:Class ; skos:prefLabel "BimetallicOxideElectrode"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "an electrode consisting of two metal oxide active materials"@en . -:electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 a owl:Class ; - rdfs:label "GalvanostaticProcess"@en ; - rdfs:comment "a process in which the electric current is kept constant"@en ; - rdfs:subClassOf [ a owl:Restriction ; - owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; - owl:someValuesFrom :electrochemistry_22725105_c941_4b14_a4a2_fcb627958607 ], - :electrochemistry_5548f188_df00_4c05_ae98_7846e92efe36 ; - skos:prefLabel "GalvanostaticProcess"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a process in which the electric current is kept constant"@en . +:electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 a owl:Class ; + rdfs:label "ActiveMaterial"@en ; + rdfs:comment "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; + rdfs:subClassOf :electrochemistry_b5ea31c9_bb10_4276_980e_c3eceb1efc82, + :electrochemistry_ebdb68e9_c4b5_4d57_a042_c0f51d446755 ; + skos:altLabel "ActiveElectrochemicalMaterial"@en, + "ElectrochemicallyActiveMaterial"@en ; + skos:prefLabel "ActiveMaterial"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q120907375" ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-33", + "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-14"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; + emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "material which reacts chemically to produce electric energy when the cell discharges", + "in secondary cells, the active material is restored to its original state during charge"@en . :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 a owl:Class ; rdfs:label "PotentiometricStrippingAnalysis"@en ; @@ -4601,20 +4615,15 @@ schema:Person a owl:Class ; "The electrode (or interfacial) reaction involves all the processes (chemical reaction, structural reorganization, adsorption) accompanying the charge transfer step."@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1351/goldbook.E01960"@en . -:electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 a owl:Class ; - rdfs:label "ActiveMaterial"@en ; - rdfs:comment "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; - rdfs:subClassOf :electrochemistry_b5ea31c9_bb10_4276_980e_c3eceb1efc82, - :electrochemistry_ebdb68e9_c4b5_4d57_a042_c0f51d446755 ; - skos:altLabel "ActiveElectrochemicalMaterial"@en, - "ElectrochemicallyActiveMaterial"@en ; - skos:prefLabel "ActiveMaterial"@en ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q120907375" ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-33", - "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-14"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "material which reacts chemically to produce electric energy when the cell discharges", - "in secondary cells, the active material is restored to its original state during charge"@en . +:electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 a owl:Class ; + rdfs:label "GalvanostaticProcess"@en ; + rdfs:comment "a process in which the electric current is kept constant"@en ; + rdfs:subClassOf [ a owl:Restriction ; + owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; + owl:someValuesFrom :electrochemistry_22725105_c941_4b14_a4a2_fcb627958607 ], + :electrochemistry_5548f188_df00_4c05_ae98_7846e92efe36 ; + skos:prefLabel "GalvanostaticProcess"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a process in which the electric current is kept constant"@en . :electrochemistry_8a1c9a7b_978c_4421_a9c1_d0b07b42aab9 a owl:Class ; rdfs:label "ChemicalReaction"@en ; @@ -4953,9 +4962,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "extremely resistant to many chemicals, impermeable to gases and liquids, and has good electrical conductivity, high hardness and strength, and biocompatibility"@en . + owl:annotatedTarget "electrode made of glassy carbon material with an intertwined graphitic ribbon structure, formed by pyrolysis of a resol precursor at temperatures up to 3000 °C"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -4976,28 +4985,22 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "A disc electrode that is embedded in the centre of a cylinder which rotates in solution around the longitudinal cylinder axis."@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "composite system in which the supplied electric energy mainly produces chemical reactions or, conversely, in which the energy released by chemical reactions is mainly delivered by the system as electric energy"@en . + owl:annotatedTarget "a system containing two electrodes that allow transport of electrons, separated by an electrolyte that allows movement of ions but blocks movement of electrons."@en . [] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "system that consists of at least two electron conductors (electrodes) in contact with ionic conductors (electrolytes)"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" . + owl:annotatedTarget "composite system in which the supplied electric energy mainly produces chemical reactions or, conversely, in which the energy released by chemical reactions is mainly delivered by the system as electric energy"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "glassy carbon combines glass-like mechanical characteristics with physical properties similar to graphite, owing to its “graphene ribbon” structure"@en . - -[] a owl:Axiom ; - dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "a system containing two electrodes that allow transport of electrons, separated by an electrolyte that allows movement of ions but blocks movement of electrons."@en . + owl:annotatedTarget "extremely resistant to many chemicals, impermeable to gases and liquids, and has good electrical conductivity, high hardness and strength, and biocompatibility"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5033,13 +5036,13 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "one of the most frequently used working electrodes"@en . + owl:annotatedTarget "glassy carbon combines glass-like mechanical characteristics with physical properties similar to graphite, owing to its “graphene ribbon” structure"@en . [] a owl:Axiom ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; - owl:annotatedTarget "in secondary cells, the active material is restored to its original state during charge"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedTarget "material that is oxidized or reduced at an electrode in an electrochemical cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5047,12 +5050,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; owl:annotatedTarget "material which reacts chemically to produce electric energy when the cell discharges" . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; - owl:annotatedTarget "material that is oxidized or reduced at an electrode in an electrochemical cell"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5061,9 +5058,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "electrode made of glassy carbon material with an intertwined graphitic ribbon structure, formed by pyrolysis of a resol precursor at temperatures up to 3000 °C"@en . + owl:annotatedTarget "one of the most frequently used working electrodes"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5083,18 +5080,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_83f2b1e9_cb67_4dbf_977f_ba54bbae374f ; owl:annotatedTarget "charge during which the electric current is maintained at a constant value regardless of the battery voltage or temperature"@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; - owl:annotatedTarget "Electrolyte solution in the anodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the anode is placed."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; owl:annotatedTarget "electrolyte on the anode side of an electrochemical cell that is divided into compartments"@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; + owl:annotatedTarget "Electrolyte solution in the anodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the anode is placed."@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5133,15 +5130,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_8d3bf304_78e4_4e99_abe1_6ab429e44ed1 ; - owl:annotatedTarget "a sealed cell may be equipped with a safety device to prevent a dangerously high internal pressure and is designed to operate during its life in its original sealed state"@en . + owl:annotatedTarget "cell which remains closed and does not release either gas or liquid when operated within the limits specified by the manufacturer"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_8d3bf304_78e4_4e99_abe1_6ab429e44ed1 ; - owl:annotatedTarget "cell which remains closed and does not release either gas or liquid when operated within the limits specified by the manufacturer"@en . + owl:annotatedTarget "a sealed cell may be equipped with a safety device to prevent a dangerously high internal pressure and is designed to operate during its life in its original sealed state"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5150,10 +5147,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "capacitor consisting of a metallic plate as first conductor, a very thin oxide film formed on the metal as the dielectric and an electrolyte as second conductor"@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_06d8e1ee_924a_4915_998d_33a69f41dadc ; - owl:annotatedTarget "operation during which an electrochemical cell supplies electric energy as the result of chemical changes within the cell"@en . + owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; + owl:annotatedTarget "two-step electrochemical measurement in which 1) material is accumulated at an electrode and 2) the material is removed by chemical reaction or electrochemically at constant current with measurement of electrode potential"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5161,6 +5158,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; owl:annotatedTarget "historically for the analysis of metal ions, mercury ions were added to the test solution to form a mercury amalgam when reduced. Alternatively, an HMDE or MFE was used and the oxidizing agent added after amalgam formation. However, the toxicity of mercury and its compounds have all but precluded the present-day use of mercury"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_06d8e1ee_924a_4915_998d_33a69f41dadc ; + owl:annotatedTarget "operation during which an electrochemical cell supplies electric energy as the result of chemical changes within the cell"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5179,12 +5182,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; owl:annotatedTarget "the time between changes in potential in step 2 is related to the concentration of analyte in the solution"@en . -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; - owl:annotatedTarget "two-step electrochemical measurement in which 1) material is accumulated at an electrode and 2) the material is removed by chemical reaction or electrochemically at constant current with measurement of electrode potential"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5211,15 +5208,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_9ee6e728_e8f5_4b36_a045_d63da69dfc85 ; - owl:annotatedTarget "overcharge is also the act of charging beyond a certain limit specified by the manufacturer"@en . + owl:annotatedTarget "continued charging of a fully charged secondary cell or battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_9ee6e728_e8f5_4b36_a045_d63da69dfc85 ; - owl:annotatedTarget "continued charging of a fully charged secondary cell or battery"@en . + owl:annotatedTarget "overcharge is also the act of charging beyond a certain limit specified by the manufacturer"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5227,6 +5224,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_9f466223_e20a_474d_ac4d_6d4b6131c275 ; owl:annotatedTarget "an electrode that holds its potential essentially constant by efficiently allowing electric current to pass"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_a0580fa9_5073_44af_b33e_7adbc83892d0 ; + owl:annotatedTarget "electrode reaction in which oxidation occurs at the anode"@en . + [] a owl:Axiom ; dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5242,14 +5245,14 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0580fa9_5073_44af_b33e_7adbc83892d0 ; - owl:annotatedTarget "electrode reaction in which oxidation occurs at the anode"@en . + owl:annotatedSource :electrochemistry_a0a619d7_da95_41f0_8bc3_9c19d636d543 ; + owl:annotatedTarget "electrode that serves only as a source or sink for electrons without playing a chemical role in the electrode reaction"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0a619d7_da95_41f0_8bc3_9c19d636d543 ; - owl:annotatedTarget "electrode that serves only as a source or sink for electrons without playing a chemical role in the electrode reaction"@en . + owl:annotatedSource :electrochemistry_a0fcb105_587f_45d8_a89a_46dc8f745069 ; + owl:annotatedTarget "partial or complete external covering of a cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5260,14 +5263,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0fcb105_587f_45d8_a89a_46dc8f745069 ; - owl:annotatedTarget "partial or complete external covering of a cell"@en . - -[] a owl:Axiom ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c ; - owl:annotatedTarget "plate in which the active material is applied as a paste to a conductive current collector"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedSource :electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e ; + owl:annotatedTarget "process inside an electrolytic cell used to coat a conductive object with a layer of a material"@en . [] a owl:Axiom ; dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; @@ -5278,8 +5275,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e ; - owl:annotatedTarget "process inside an electrolytic cell used to coat a conductive object with a layer of a material"@en . + owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; + owl:annotatedTarget "component of a cell which permits the flow of gas in one direction only"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5287,12 +5284,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; owl:annotatedTarget "a valve has a characteristic venting or opening and closing pressure"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; - owl:annotatedTarget "component of a cell which permits the flow of gas in one direction only"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5305,6 +5296,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a462859d_d8bd_48ea_8bde_1576f1248a1e ; owl:annotatedTarget "electrode in the form of foil, mesh, wire, rod, tube, powder, pellets, or single crystal of silver"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; + owl:annotatedTarget "a chemical reaction in an electrolyte involving a transfer of electrons between chemical components or between chemical components and an electrode"@en . + [] a owl:Axiom ; dcterms:source "Bockris, J. O'M. and Despić, . Aleksandar R. (2011, December 15). Electrochemical reaction. Encyclopedia Britannica. https://www.britannica.com/science/electrochemical-reaction" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5317,12 +5314,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; owl:annotatedTarget "the electrode reaction can also involve other chemical reactions including subreactions on a cell electrode"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; - owl:annotatedTarget "a chemical reaction in an electrolyte involving a transfer of electrons between chemical components or between chemical components and an electrode"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5355,15 +5346,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_ae56cce3_7a7c_4e53_bb58_31e0d642d47e ; - owl:annotatedTarget "this flame front may originate from a spark or an external naked flame igniting combustible electrolysis gas"@en . + owl:annotatedTarget "vent of special design which provides protection against the propagation of a flame front from or into the interior of a secondary cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_ae56cce3_7a7c_4e53_bb58_31e0d642d47e ; - owl:annotatedTarget "vent of special design which provides protection against the propagation of a flame front from or into the interior of a secondary cell"@en . + owl:annotatedTarget "this flame front may originate from a spark or an external naked flame igniting combustible electrolysis gas"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5395,6 +5386,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_b525a629_a679_464f_bc5b_b49d2fc82686 ; owl:annotatedTarget "an electrochemical cell for conductivity measurements"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; + owl:annotatedTarget "by convention, cell electrode at which an oxidation reaction occurs"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5419,12 +5416,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; owl:annotatedTarget "the concepts of “anode” and “cathode” are related only to the direction of electron flow, not to the polarity of the electrodes"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; - owl:annotatedTarget "by convention, cell electrode at which an oxidation reaction occurs"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5433,15 +5424,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_b79d4f9e_5727_4895_8d7f_5fc18d83eb90 ; - owl:annotatedTarget "in a galvanic cell, parasitic reactions may cause inefficiencies or loss of performance"@en . + owl:annotatedTarget "an unwanted side reaction"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_b79d4f9e_5727_4895_8d7f_5fc18d83eb90 ; - owl:annotatedTarget "an unwanted side reaction"@en . + owl:annotatedTarget "in a galvanic cell, parasitic reactions may cause inefficiencies or loss of performance"@en . [] a owl:Axiom ; dcterms:source "IEEE Standard Glossary of Stationary Battery Terminology (2016), https://doi.org/10.1109/IEEESTD.2016.7552407" ; @@ -5481,12 +5472,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_bbae1ef4_0a95_4e7d_9932_1bf939129eef ; owl:annotatedTarget "current-potential curve in a voltammetry experiment"@en . -[] a owl:Axiom ; - dcterms:source "https://en.wikipedia.org/wiki/Square_wave" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0e33278b_639f_412d_9abd_64c3790026ef ; - owl:annotatedTarget "Periodic potential where the amplitude alternates at a steady frequency between fixed minimum and maximum values, with the same duration at minimum and maximum."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5500,10 +5485,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "part which insures insulation between the plate (electrode) edges and adjacent plates (electrodes) and the container side walls"@en . [] a owl:Axiom ; + dcterms:source "https://en.wikipedia.org/wiki/Square_wave" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d ; - owl:annotatedTarget "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedSource :electrochemistry_0e33278b_639f_412d_9abd_64c3790026ef ; + owl:annotatedTarget "Periodic potential where the amplitude alternates at a steady frequency between fixed minimum and maximum values, with the same duration at minimum and maximum."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5535,12 +5520,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_c3f4b34a_0e2c_46f3_baab_4ebd2682d26f ; owl:annotatedTarget "An ionic liquid is an electrolyte composed of a salt that is liquid below 100 °C. Ionic liquids have found uses in electrochemical analysis, because their unconventional properties include a negligible vapor pressure, a high thermal and electrochemical stability, and exceptional dissolution properties for both organic and inorganic chemical species."@en . -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; - owl:annotatedTarget "Electron conductor in an electrochemical cell connected to the external circuit."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5553,6 +5532,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_c55ec02c_b727_4df1_97ce_91d7bb5d5e91 ; owl:annotatedTarget "unplanned escape of electrolyte, gas or other material from a cell or battery"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_c610d869_cc03_44f0_b40d_ca86e945b9c9 ; + owl:annotatedTarget "cell from which electrolyte cannot escape regardless of its orientation"@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5562,8 +5547,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_c610d869_cc03_44f0_b40d_ca86e945b9c9 ; - owl:annotatedTarget "cell from which electrolyte cannot escape regardless of its orientation"@en . + owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; + owl:annotatedTarget "electronically conductive part in electric contact with a medium of lower electronic conductivity and intended to perform one or more of the functions of emitting charge carriers to or receiving charge carriers from that medium or to establish an electric field in that medium"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5579,21 +5564,21 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; - owl:annotatedTarget "by convention, an oxidation reaction occurs during discharge"@en . + owl:annotatedTarget "for a device having two electrodes, that electrode having the lower electric potential"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; - owl:annotatedTarget "electronically conductive part in electric contact with a medium of lower electronic conductivity and intended to perform one or more of the functions of emitting charge carriers to or receiving charge carriers from that medium or to establish an electric field in that medium"@en . + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; + owl:annotatedTarget "by convention, an oxidation reaction occurs during discharge"@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; - owl:annotatedTarget "for a device having two electrodes, that electrode having the lower electric potential"@en . + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; + owl:annotatedTarget "Electron conductor in an electrochemical cell connected to the external circuit."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5604,8 +5589,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0f827b54_370d_4c63_99a6_80f13b24e55e ; - owl:annotatedTarget "evolution of gas resulting from electrolysis of the water in the electrolyte of a cell"@en . + owl:annotatedSource :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; + owl:annotatedTarget "set of operations that is carried out on a secondary cell or battery and is repeated regularly in the same sequence."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5622,14 +5607,14 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; - owl:annotatedTarget "set of operations that is carried out on a secondary cell or battery and is repeated regularly in the same sequence."@en . + owl:annotatedSource :electrochemistry_d5da9948_e95b_4f12_a2d2_10a48f390c52 ; + owl:annotatedTarget "arrangement of cells or batteries wherein parallel connected cells or batteries are connected in series."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_d5da9948_e95b_4f12_a2d2_10a48f390c52 ; - owl:annotatedTarget "arrangement of cells or batteries wherein parallel connected cells or batteries are connected in series."@en . + owl:annotatedSource :electrochemistry_0f827b54_370d_4c63_99a6_80f13b24e55e ; + owl:annotatedTarget "evolution of gas resulting from electrolysis of the water in the electrolyte of a cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5655,18 +5640,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_df78745e_f9db_4830_88f0_8ce074fcb8ff ; owl:annotatedTarget "liquid metal electrode used in polarography"@en . +[] a owl:Axiom ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; + owl:annotatedTarget "electrochemical cell in which chemical reactions occur spontaneously and chemical energy is converted into electrical energy."@en . + [] a owl:Axiom ; dcterms:references "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; owl:annotatedTarget "An electrochemical cell that spontaneously produces work."@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_113e0469_8ae0_407f_892d_4b988f8d8a08 ; - owl:annotatedTarget "electrochemical cell that has two half-cells separated by a wall permeable to ions, both containing the same electrolyte differing only in their temperatures."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5674,16 +5659,22 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "Electrochemical cell intended to produce electric energy."@en . [] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; - owl:annotatedTarget "electrochemical cell in which chemical reactions occur spontaneously and chemical energy is converted into electrical energy."@en . + owl:annotatedSource :electrochemistry_e2a1dae1_05e4_4bd1_a39d_0eb10db482bc ; + owl:annotatedTarget "method of separating and neutralizing ions by an electric current in an electrolytic cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e2a1dae1_05e4_4bd1_a39d_0eb10db482bc ; - owl:annotatedTarget "method of separating and neutralizing ions by an electric current in an electrolytic cell"@en . + owl:annotatedSource :electrochemistry_113e0469_8ae0_407f_892d_4b988f8d8a08 ; + owl:annotatedTarget "electrochemical cell that has two half-cells separated by a wall permeable to ions, both containing the same electrolyte differing only in their temperatures."@en . + +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; + owl:annotatedTarget "electrochemical cell intended to produce chemical reactions"@en . [] a owl:Axiom ; dcterms:references "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; @@ -5697,18 +5688,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; owl:annotatedTarget "Electrochemical cell in which electrical energy is converted into chemical energy."@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; - owl:annotatedTarget "electrochemical cell intended to produce chemical reactions"@en . - -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_1152ae6b_8b57_4d99_912e_40c6a29342fb ; - owl:annotatedTarget "mass m of electrochemically-transformed substance is proportional to the charge Q passed, m ∝ Q."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5721,6 +5700,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_ec1dce8b_bb46_41a9_b532_6bed381aa557 ; owl:annotatedTarget "secondary cell having a cover provided with an opening through which products of electrolysis and evaporation are allowed to escape freely from the cell to the atmosphere"@en . +[] a owl:Axiom ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_1152ae6b_8b57_4d99_912e_40c6a29342fb ; + owl:annotatedTarget "mass m of electrochemically-transformed substance is proportional to the charge Q passed, m ∝ Q."@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5739,12 +5724,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f0c24970_4c14_4207_bd78_5f2181a67085 ; owl:annotatedTarget "the process of forming a film or a bulk material using an electrochemical process where the electrons are supplied by an external power supply"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_1355816f_a2b5_4800_8001_fc888f5d6b1b ; - owl:annotatedTarget "instrument intended to measure the value of a voltage."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5757,6 +5736,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f47611a2_e081_47f0_b287_3fda5f706154 ; owl:annotatedTarget "chemical reaction which occurs in addition to the main process"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; + owl:annotatedTarget "electrode reaction in which reduction occurs at the cathode"@en . + +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_1355816f_a2b5_4800_8001_fc888f5d6b1b ; + owl:annotatedTarget "instrument intended to measure the value of a voltage."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5769,12 +5760,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; owl:annotatedTarget "electrode reaction, where the energy of electrons in the working electrode is higher than the LUMO orbital of the substrate"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; - owl:annotatedTarget "electrode reaction in which reduction occurs at the cathode"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5782,10 +5767,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "electrode that responds to one, or more than one, species in the solution being investigated, with no appreciable change of bulk solution composition during the measurement"@en . [] a owl:Axiom ; - dcterms:source "IUPAC. Compendium of Chemical Terminology, 2nd ed. (the \"Gold Book\"). Compiled by A. D. McNaught and A. Wilkinson. Blackwell Scientific Publications, Oxford (1997). Online version (2019-) created by S. J. Chalk. ISBN 0-9678550-9-8. https://doi.org/10.1351/goldbook." ; + dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_15325775_6d4c_4192_82f1_e4feca9de426 ; - owl:annotatedTarget "A membrane having ion-exchange groups:"@en . + owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; + owl:annotatedTarget "a material in which the mobile species are ions and free movement of electrons is blocked."@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5799,18 +5784,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; owl:annotatedTarget "liquid or solid substance containing mobile ions that render it conductive"@en . +[] a owl:Axiom ; + dcterms:source "IUPAC. Compendium of Chemical Terminology, 2nd ed. (the \"Gold Book\"). Compiled by A. D. McNaught and A. Wilkinson. Blackwell Scientific Publications, Oxford (1997). Online version (2019-) created by S. J. Chalk. ISBN 0-9678550-9-8. https://doi.org/10.1351/goldbook." ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_15325775_6d4c_4192_82f1_e4feca9de426 ; + owl:annotatedTarget "A membrane having ion-exchange groups:"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; owl:annotatedTarget "substance that provides ions on dissolution in a solvent or on melting"@en . -[] a owl:Axiom ; - dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; - owl:annotatedTarget "a material in which the mobile species are ions and free movement of electrons is blocked."@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5823,18 +5808,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_fb9bf7cb_dd4b_4391_99a1_628263dd6940 ; owl:annotatedTarget "measuring instrument to obtain the electrical charge passed in an experiment, or to produce a known amount of substance in a titration."@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; - owl:annotatedTarget "Electrolyte solution in the cathodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the cathode is placed."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; owl:annotatedTarget "electrolyte on the cathode side of an electrochemical cell that is divided into compartments."@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; + owl:annotatedTarget "Electrolyte solution in the cathodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the cathode is placed."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5931,18 +5916,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_2d32a81a_2148_41bd_84fb_467aa8de4a8f ; owl:annotatedTarget "foil, wire, disc, or mesh electrode made of platinum, which is the most commonly used metallic working electrode in electrochemistry"@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; - owl:annotatedTarget "An interfacial reaction that necessarily involves a charge-transfer step."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; owl:annotatedTarget "electrochemical reaction involving the transfer of electrons between electrolyte and electrode"@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; + owl:annotatedTarget "An interfacial reaction that necessarily involves a charge-transfer step."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5957,15 +5942,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_328c6e36_3706_4d92_abae_432fa3adb2a0 ; - owl:annotatedTarget "a cell baffle has a second function in protecting the plate pack from damage by objects inserted through the filling hole"@en . + owl:annotatedTarget "internal component used to reduce the amount of electrolyte loss due to electrolyte spray being carried in the gas and/or by electrolyte movement"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_328c6e36_3706_4d92_abae_432fa3adb2a0 ; - owl:annotatedTarget "internal component used to reduce the amount of electrolyte loss due to electrolyte spray being carried in the gas and/or by electrolyte movement"@en . + owl:annotatedTarget "a cell baffle has a second function in protecting the plate pack from damage by objects inserted through the filling hole"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5979,6 +5964,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_34bc54e3_de4c_41f8_8d3a_d77c951ee23a ; owl:annotatedTarget "needle-like or tree-like formation of crystalline growth formed during deposition of a material"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; + owl:annotatedTarget "by convention, cell electrode at which, a reduction reaction occurs"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5997,12 +5988,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; owl:annotatedTarget "the concepts of “anode” and “cathode” are related only to the direction of electron flow, not to the polarity of the electrodes"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; - owl:annotatedTarget "by convention, cell electrode at which, a reduction reaction occurs"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -6023,15 +6008,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_3f6c9e09_5f23_41cc_9f85_7de365cef089 ; - owl:annotatedTarget "electrolyte creep is sometimes indicated by the presence of a visible solid deposit or wet spots"@en . + owl:annotatedTarget "gradual and slow spreading of an electrolyte film on the external surface of a cell or battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_3f6c9e09_5f23_41cc_9f85_7de365cef089 ; - owl:annotatedTarget "gradual and slow spreading of an electrolyte film on the external surface of a cell or battery"@en . + owl:annotatedTarget "electrolyte creep is sometimes indicated by the presence of a visible solid deposit or wet spots"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -6041,9 +6026,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_04f28ce3_251d_429e_aa85_ab3eb45bbcd2 ; - owl:annotatedTarget "in lithium batteries thermal runaway may cause melting of lithium"@en . + owl:annotatedTarget "unstable condition arising during constant voltage charge in which the rate of heat dissipation capability, causing a continuous temperature increase with resulting further charge current increase, which can lead to the destruction of the battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -6077,9 +6062,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_04f28ce3_251d_429e_aa85_ab3eb45bbcd2 ; - owl:annotatedTarget "unstable condition arising during constant voltage charge in which the rate of heat dissipation capability, causing a continuous temperature increase with resulting further charge current increase, which can lead to the destruction of the battery"@en . + owl:annotatedTarget "in lithium batteries thermal runaway may cause melting of lithium"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; diff --git a/versions/0.17.0-beta/context/context.json b/versions/0.17.0-beta/context/context.json index ac1b0bb..2006ca7 100644 --- a/versions/0.17.0-beta/context/context.json +++ b/versions/0.17.0-beta/context/context.json @@ -1076,7 +1076,6 @@ "ButlerVolmerEquation": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d48ea516_5cac_4f86_bc88_21b6276c0938", "C": "https://w3id.org/emmo#EMMO_36a9bf69_483b_42fd_8a0c_7ac9206320bc", "CASRN": "https://w3id.org/emmo#EMMO_d2a47cd8_662f_438f_855a_b4378eb992ff", - "CCCVCycling": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e", "CPlusPlus": "https://w3id.org/emmo#EMMO_64aba1e5_24b7_4140_8eb4_676c35698e79", "CRate": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_e1fd84eb_acdb_4b2c_b90c_e899d552a3ee", "CSharp": "https://w3id.org/emmo#EMMO_268a8a97_3a6f_4022_93da_962a66827cdc", @@ -1285,7 +1284,7 @@ "CoatingThickness": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3b938708_e7e4_4ac0_a959_9c04306302e7", "Cobalt": "https://w3id.org/emmo/domain/chemical-substance#substance_8f857eb2_7cc8_4294_954d_e69f2842c084", "CobaltAtom": "https://w3id.org/emmo#EMMO_3fe9d899_f1f1_5657_b176_ac6afff2e93d", - "CobaltBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_838c115b_6bc9_4ce8_9f8d_86a6bf67742a", + "CobaltBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7b811780_7251_481b_a4d3_97d437955099", "CobaltHydroxide": "https://w3id.org/emmo/domain/chemical-substance#substance_29b1c15d_2632_40d7_88f7_43575b68b988", "CobaltIIAcetate": "https://w3id.org/emmo/domain/chemical-substance#substance_4310c690_9810_4a95_8d62_7e78e0b84437", "CobaltIIBistrifluoromethanesulfonylimide": "https://w3id.org/emmo/domain/chemical-substance#substance_f4dffee2_c642_4114_a748_5e93b3908380", @@ -1358,6 +1357,7 @@ "ConstantCurrentCharging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_83f2b1e9_cb67_4dbf_977f_ba54bbae374f", "ConstantCurrentChargingCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_37c38b7e_9ded_481a_85fd_a467f1ee2b9f", "ConstantCurrentConstantVoltageCharging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0cc8f231_0ce5_467e_9c76_29b2c80349ad", + "ConstantCurrentConstantVoltageCycling": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e", "ConstantCurrentDischarging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_53fe3f58_0802_41cf_af69_4784fc42cc30", "ConstantCurrentDischargingCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_08833ed2_6324_411a_b34b_fe64c44cd5ef", "ConstantPotentialPulses": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_84d37a37_88bd_47db_9425_31f73a81d38c", @@ -1590,7 +1590,7 @@ "DeviceTemperature": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_463950b9_fd8d_48de_a52d_b29cab026391", "DewPointTemperature": "https://w3id.org/emmo#EMMO_a383e332_a271_463f_9e44_559604547220", "Diameter": "https://w3id.org/emmo#EMMO_c1c8ac3c_8a1c_4777_8e0b_14c1f9f9b0c6", - "Dichloromethane": "https://w3id.org/emmo/domain/chemical-substance#substance_8385c3c4_5906_48f6_b6b6_4bb60dccc27a", + "Dichloromethane": "https://w3id.org/emmo/domain/chemical-substance#substance_a6feec60_5fe7_4687_b427_3bf2ed06008d", "DieCasting": "https://w3id.org/emmo#EMMO_a85d0b8a_588e_423f_b799_97b0890e9183", "DielectricAndImpedanceSpectroscopy": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#DielectricAndImpedanceSpectroscopy", "Dielectrometry": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Dielectrometry", @@ -1624,7 +1624,7 @@ "Dimethoxyethane": "https://w3id.org/emmo/domain/chemical-substance#substance_b6ecabf9_14a4_4808_a139_55329e70ad42", "Dimethoxymethane": "https://w3id.org/emmo/domain/chemical-substance#substance_21954b0b_c05c_42db_b276_3a931d8aabb1", "DimethylCarbonate": "https://w3id.org/emmo/domain/chemical-substance#substance_c4a7d7bd_497e_457e_b858_ff73254266d0", - "DimethylSulfoxide": "https://w3id.org/emmo/domain/chemical-substance#substance_b593b5dd_7957_4b85_856a_dd59775210b6", + "DimethylSulfoxide": "https://w3id.org/emmo/domain/chemical-substance#substance_ea68e1a4_6be8_4686_8701_ba88b40d00b7", "Dimethylformamide": "https://w3id.org/emmo/domain/chemical-substance#substance_769bdc09_f533_4fde_bb53_20339d5bfcb7", "Dimethylpropyleneurea": "https://w3id.org/emmo/domain/chemical-substance#substance_945c68da_3baf_4da6_b794_dca7aebc4ca7", "Dimethylsulfate": "https://w3id.org/emmo/domain/chemical-substance#substance_3c8fb431_7d9d_4a89_a494_708df34f44d3", @@ -1837,7 +1837,7 @@ "ElectronicModel": "https://w3id.org/emmo#EMMO_6eca09be_17e9_445e_abc9_000aa61b7a11", "ElectronvoltPerMetre": "https://w3id.org/emmo#ElectronvoltPerMetre", "Electroosmosis": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_5641910f_6e69_4ce4_be84_4b1bf14b8916", - "Electroplating": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e", + "Electroplating": "https://w3id.org/emmo#EMMO_30e3edb5_0977_4b9b_9aed_5a4d16c1c07c", "ElementalMaterial": "https://w3id.org/emmo#EMMO_a086af15_a7c3_404c_b4ce_c8e4466f1b4b", "ElementalSubstance": "https://w3id.org/emmo#EMMO_436b11bd_1756_4821_9f14_c9ed6b67552e", "ElementaryBoson": "https://w3id.org/emmo#EMMO_cafd0f10_ce85_48b9_9a36_2b0af141ce21", @@ -2192,11 +2192,12 @@ "ISQBaseQuantity": "https://w3id.org/emmo#EMMO_1a4c1a97_88a7_4d8e_b2f9_2ca58e92dde4", "ISQDerivedQuantity": "https://w3id.org/emmo#EMMO_2946d40b_24a1_47fa_8176_e3f79bb45064", "ISQDimensionlessQuantity": "https://w3id.org/emmo#EMMO_a66427d1_9932_4363_9ec5_7d91f2bfda1e", - "IUPACName": "https://w3id.org/emmo#EMMO_16a3bd5c_75f0_42b3_b000_cb0d018f840e", + "IUPACName": "https://w3id.org/emmo#EMMO_f652e7d2_0b33_4d10_8d0f_2f70089982ba", "IUPACNomencalture": "https://w3id.org/emmo#EMMO_91a0635a_a89a_46de_8928_04a777d145c7", "Icon": "https://w3id.org/emmo#EMMO_d7788d1a_020d_4c78_85a1_13563fcec168", "Illuminance": "https://w3id.org/emmo#EMMO_b51fbd00_a857_4132_9711_0ef70e7bdd20", "IlluminanceTimeUnit": "https://w3id.org/emmo#EMMO_e467cc3f_676c_432e_b70e_19237d1bcc78", + "ImaginaryElectricImpedance": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626", "Impedimetry": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Impedimetry", "InChI": "https://w3id.org/emmo#EMMO_d74ed682_894f_46c5_87cb_167f60926965", "IncreasingPotentialPulses": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_77be01ef_49bd_4f2e_bec8_eec0894b8562", @@ -2288,7 +2289,7 @@ "IridiumSymbol": "https://w3id.org/emmo#EMMO_b8aab013_b729_51f1_bc14_5302e7f97cbe", "Iron": "https://w3id.org/emmo/domain/chemical-substance#substance_89fd13e8_8061_41da_83f4_634144116425", "IronAtom": "https://w3id.org/emmo#EMMO_a4839f08_1080_53bf_9cb3_101e20c2656b", - "IronBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_cc4e178c_bc1f_4502_b6c2_33f304ef6bab", + "IronBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_5e1136d3_df00_40f7_a4bc_8259341053a1", "IronDisulfide": "https://w3id.org/emmo/domain/chemical-substance#substance_c728b6b9_449a_45ff_b5ae_6b7968708f0d", "IronDisulfideElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d2726dd5_69f0_4cb1_bd3c_4c48813e57e7", "IronIIIHydroxide": "https://w3id.org/emmo/domain/chemical-substance#substance_323a2e39_d7d5_4802_884a_9aa41a280986", @@ -2556,6 +2557,7 @@ "LossFactor": "https://w3id.org/emmo#EMMO_c3796906_8063_47d4_92af_890ae08f25fa", "LowPressureCasting": "https://w3id.org/emmo#EMMO_8b2fd84c_8f51_4731_9bd7_830545e78b23", "LowerCriticalMagneticFluxDensity": "https://w3id.org/emmo#EMMO_fd4a6307_f9f7_4b54_b044_caa04e620232", + "LowerCurrentLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea", "LowerFrequencyLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_b66d6553_6136_4754_902a_707e414210c2", "LowerVoltageLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_534dd59c_904c_45d9_8550_ae9d2eb6bbc9", "Lumen": "https://w3id.org/emmo#Lumen", @@ -2608,7 +2610,7 @@ "MagnesiumTriflate": "https://w3id.org/emmo/domain/chemical-substance#substance_df24fad8_7ef0_4330_a3f2_c4d65d9a3be8", "MagnesiumTrifluoromethanesulfonyloxalatoborate": "https://w3id.org/emmo/domain/chemical-substance#substance_2b7473ba_9156_489a_880f_3a2f746cd104", "MagneticDipoleMoment": "https://w3id.org/emmo#EMMO_81e767f1_59b1_4d7a_bf69_17f322241831", - "MagneticDipoleMomentUnit": "https://w3id.org/emmo#EMMO_5073dc80_aec2_4a3b_8057_fababfcbfe11", + "MagneticDipoleMomentUnit": "https://w3id.org/emmo#EMMO_1c2226a9_22f0_40c8_8928_5a01d398f96e", "MagneticFieldStrength": "https://w3id.org/emmo#EMMO_b4895f75_41c8_4fd9_b6d6_4d5f7c99c423", "MagneticFieldStrengthUnit": "https://w3id.org/emmo#EMMO_e6b83139_ba92_4fbd_a8b2_c8dde55844a1", "MagneticFlux": "https://w3id.org/emmo#EMMO_3b931698_937e_49be_ab1b_36fa52d91181", @@ -2676,7 +2678,7 @@ "MassExcess": "https://w3id.org/emmo#EMMO_7dd84949_0afa_4313_9b89_7bb0dd2e7771", "MassFlow": "https://w3id.org/emmo#EMMO_6d61ee3c_c5b6_4452_bc11_e9c33af992a7", "MassFluxUnit": "https://w3id.org/emmo#EMMO_e35d4936_b2e3_4cd6_a437_f1c864b3d450", - "MassFraction": "https://w3id.org/emmo/disciplines/units/coherentsiunits#EMMO_089f13b1_ceb3_4d2a_8795_b4a2d92916da", + "MassFraction": "https://w3id.org/emmo#EMMO_7c055d65_2929_40e1_af4f_4bf10995ad50", "MassFractionOfDryMatter": "https://w3id.org/emmo#EMMO_8f171308_f902_42c5_ac1d_d5259022e9c1", "MassFractionOfWater": "https://w3id.org/emmo#EMMO_cac16ce6_2cef_405d_ac63_0f918db4875e", "MassFractionUnit": "https://w3id.org/emmo#EMMO_18448443_dcf1_49b8_a321_cf46e2c393e1", @@ -3027,6 +3029,7 @@ "NobeliumAtom": "https://w3id.org/emmo#EMMO_49eb0790_50c2_5691_a8bf_dfa6f4a9f6c7", "NobeliumSymbol": "https://w3id.org/emmo#EMMO_c1bb775c_0888_5b88_9cce_c49bae1d298b", "NobleGasElementalSubstance": "https://w3id.org/emmo/domain/chemical-substance#substance_cac14194_2d5f_4fe6_b794_a9319f6d76ee", + "NominalCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100", "NominalProperty": "https://w3id.org/emmo#EMMO_909415d1_7c43_4d5e_bbeb_7e1910159f66", "NominalVoltage": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_639b844a_e801_436b_985d_28926129ead6", "NonActivePower": "https://w3id.org/emmo#EMMO_83318add_d05e_40fc_93ea_c6cd605df437", @@ -3061,6 +3064,7 @@ "NumberOfFiniteVolumeCellsInX": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_e73586eb_8475_4879_a43e_087c702ea6bf", "NumberOfFiniteVolumeCellsInY": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_c2a85d02_c6b4_42df_b5ed_a9904ec34a5c", "NumberOfFiniteVolumeCellsInZ": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a5e00e3a_736c_4200_8d04_ed222fe07037", + "NumberOfIterations": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_88dd2bce_fb17_4705_905d_892681812290", "NumberOfTurnsInAWinding": "https://w3id.org/emmo#EMMO_eefaa0ef_e7d4_4633_bf79_655bb55f4a49", "Numeral": "https://w3id.org/emmo#EMMO_74b05aed_66bf_43c8_aa2c_752a9ca8be03", "Numerical": "https://w3id.org/emmo#EMMO_4ce76d7f_03f8_45b6_9003_90052a79bfaa", @@ -3211,7 +3215,7 @@ "Permittivity": "https://w3id.org/emmo#EMMO_0ee5779e_d798_4ee5_9bfe_c392d5bea112", "PermittivityUnit": "https://w3id.org/emmo#EMMO_5f89cb0c_3171_47ee_b2ab_027a07c34c4b", "Persistence": "https://w3id.org/emmo#EMMO_e04884d9_eda6_487e_93d5_7722d7eda96b", - "Person": "http://xmlns.com/foaf/0.1/Person", + "Person": "https://schema.org/Person", "Perspective": "https://w3id.org/emmo#EMMO_49267eba_5548_4163_8f36_518d65b583f9", "Peta": "https://w3id.org/emmo#EMMO_d7c74480_a568_4470_acff_f18b499cc850", "PetaPrefixedUnit": "https://w3id.org/emmo#EMMO_43a6b269_da31_4bb6_a537_c97df4fff32a", @@ -3298,7 +3302,7 @@ "Porosity": "https://w3id.org/emmo#EMMO_3a6578ac_aee0_43b9_9bc6_1eb208c8c9a9", "PorousElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3663991d_9319_4f7a_922b_f0e428b58801", "PorousSeparator": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_58413d4e_2885_459e_ac06_8d45e661cf91", - "PositionVector": "https://w3id.org/emmo#EMMO_4312cae4_03ba_457e_b35d_0671a7db350c", + "PositionVector": "https://w3id.org/emmo#EMMO_44da6d75_54a4_4aa8_bd3a_156f6e9abb8e", "PositiveElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_aff732a9_238a_4734_977c_b2ba202af126", "PositiveTerminal": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_522f0c0b_cf33_4328_af71_12e38dae6798", "Positron": "https://w3id.org/emmo#EMMO_26a38b26_38ea_4acf_b212_db9e34c71b7a", @@ -3483,7 +3487,7 @@ "R54215": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_fc9e7ba3_5084_4c2a_b488_c6a96af99232", "R616": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_dc019f3f_e5f3_4eeb_bab9_a845a02223a0", "R621": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_15ec346a_6d3c_4161_95e1_9cf889965f85", - "R626": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_68c1c36e_1548_4247_bae2_fe7102a2c4ff", + "R626": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6b275583_433f_46f7_aafd_ebc9409257cc", "R712": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_bb2faf17_b819_4876_b17f_fa82917cf85d", "R716": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_34cb7ea7_2436_46e0_806e_a3c7835ae228", "R721": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3279f575_1c62_4bf2_a6e8_de4c7ff36f8e", @@ -3535,6 +3539,7 @@ "ReactivePower": "https://w3id.org/emmo#EMMO_d8030875_6d89_4645_9728_bbc3b8690609", "ReactorTimeConstant": "https://w3id.org/emmo#EMMO_b03dfad7_eab8_4949_9d10_dd4fd12faaef", "Real": "https://w3id.org/emmo#EMMO_18d180e4_5e3e_42f7_820c_e08951223486", + "RealElectricImpedance": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f", "ReciprocalAmountPerVolumeUnit": "https://w3id.org/emmo#EMMO_aef218f9_6ded_4db9_9263_e78eed55e5d6", "ReciprocalCentiMetre": "https://w3id.org/emmo#ReciprocalCentiMetre", "ReciprocalCubicCentiMetre": "https://w3id.org/emmo#ReciprocalCubicCentiMetre", @@ -3637,6 +3642,7 @@ "ResponseTimeAtAnISE": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_1a104474_c326_4a29_ac26_26a05ac8f72c", "RestEnergy": "https://w3id.org/emmo#EMMO_5117c5fe_f661_46f8_83c3_b48947f1532a", "RestMass": "https://w3id.org/emmo#EMMO_3c947caf_4070_4c79_a3a3_e53274ac9944", + "Resting": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b", "RestingTime": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_2678a656_4a27_4706_8dde_b0a93e9b92fa", "ReversibleHydrogenElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0d9ba00d_04bc_4bdc_85af_3380694f6f68", "RevolutionPerMinute": "https://w3id.org/emmo#RevolutionPerMinute", @@ -3790,7 +3796,7 @@ "SiemensSquareMetrePerMole": "https://w3id.org/emmo#SiemensSquareMetrePerMole", "Sievert": "https://w3id.org/emmo#Sievert", "Sign": "https://w3id.org/emmo#EMMO_b21a56ed_f969_4612_a6ec_cb7766f7f31d", - "Signal": "https://w3id.org/emmo/domain/chameo#Signal", + "Signal": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Signal", "SignalReferencePotential": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_68059d94_4c21_4065_b329_07faeebc7e87", "Silicon": "https://w3id.org/emmo/domain/chemical-substance#substance_68c0876b_cb62_41cd_846d_95cc9d9a8733", "SiliconAtom": "https://w3id.org/emmo#EMMO_798b0c96_82ca_5ce8_8d5f_f9f72668cf5d", @@ -4318,6 +4324,7 @@ "UpQuark": "https://w3id.org/emmo#EMMO_0a3f04a6_ba3a_49d9_99da_08b0e26f51f0", "UpQuarkType": "https://w3id.org/emmo#EMMO_fc47b76f_ad01_4cd0_8fc6_55532000e7c8", "UpperCriticalMagneticFluxDensity": "https://w3id.org/emmo#EMMO_6bfe6ad2_96ba_4478_81e5_d8881c550757", + "UpperCurrentLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45", "UpperFrequencyLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_666f0b69_9c74_49a3_80b3_96a188332462", "UpperVoltageLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6dcd5baf_58cd_43f5_a692_51508e036c88", "UraniumAtom": "https://w3id.org/emmo#EMMO_b233f8c0_37d8_51ae_9264_560e6649e246", diff --git a/versions/0.17.0-beta/electrochemicalquantities.ttl b/versions/0.17.0-beta/electrochemicalquantities.ttl index 882a543..96cb275 100644 --- a/versions/0.17.0-beta/electrochemicalquantities.ttl +++ b/versions/0.17.0-beta/electrochemicalquantities.ttl @@ -24,8 +24,6 @@ emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f a owl:AnnotationProperty . emmo:EMMO_5c78b424_087b_4e31_8c91_6422f1be1e86 owl:equivalentClass :electrochemistry_9c657fdc_b9d3_4964_907c_f9a6e8c5f52b . -emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 :electrochemistry_097ea615_c209_4edd_a1a1_5eea71d98fe8 "acimp/ohms"@en . - emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry_37b24a94_cae0_4d7a_9519_9f7692dec607 ; skos:altLabel "MassDiffusivity"@en ; emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q604008"@en ; @@ -101,6 +99,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "D40ParticleSize"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 40% of the sample's particles fall."@en . +:electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626 a owl:Class ; + rdfs:label "ImaginaryElectricImpedance"@en ; + rdfs:comment "the imaginary part of the complex electric impedance"@en ; + rdfs:subClassOf emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 ; + skos:prefLabel "ImaginaryElectricImpedance"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the imaginary part of the complex electric impedance"@en . + :electrochemistry_02d2d1d1_241c_429b_b4e7_31f2c3dc4835 a owl:Class ; rdfs:label "D95ParticleSize"@en ; rdfs:comment "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 95% of the sample's particles fall."@en ; @@ -381,6 +386,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "D50ParticleSize"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 50% of the sample's particles fall."@en . +:electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45 a owl:Class ; + rdfs:label "UpperCurrentLimit"@en ; + rdfs:comment "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en ; + rdfs:subClassOf :electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 ; + skos:prefLabel "UpperCurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + :electrochemistry_3e54f9e3_a31d_4821_9bfb_ef953a42c35b a owl:Class ; rdfs:label "MaximumPulseDischargingCurrent"@en ; rdfs:comment "the maximum current approved for pulse discharge of an electrochemical device"@en ; @@ -608,6 +620,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "ChargingCurrent"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electric current applied to an electrochemical device during a charging process"@en . +:electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea a owl:Class ; + rdfs:label "LowerCurrentLimit"@en ; + rdfs:comment "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en ; + rdfs:subClassOf :electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 ; + skos:prefLabel "LowerCurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + :electrochemistry_7f073272_8925_4344_995c_a5a6dd1fcde6 a owl:Class ; rdfs:label "ChargingConstantCurrentPercentage"@en ; rdfs:comment "the percentage of the total charge capacity that is obtained during a constant current charge process"@en ; @@ -705,6 +724,20 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "DischargingSpecificCapacity"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "quotient of the capacity of a cell or battery [ or electrode or active material ] obtained during a discharge process by its mass."@en . +:electrochemistry_88dd2bce_fb17_4705_905d_892681812290 a owl:Class ; + rdfs:label "NumberOfIterations"@en ; + rdfs:comment "the number of times an iterative process should occur"@en ; + rdfs:subClassOf emmo:EMMO_ba882f34_0d71_4e4f_9d92_0c076c633a2c ; + skos:prefLabel "NumberOfIterations"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the number of times an iterative process should occur"@en . + +:electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100 a owl:Class ; + rdfs:label "NominalCapacity"@en ; + rdfs:comment "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en ; + rdfs:subClassOf :electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 ; + skos:prefLabel "NominalCapacity"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en . + :electrochemistry_8e943e12_ecc0_4093_899e_7226be6be7f2 a owl:Class ; rdfs:label "D90ParticleSize"@en ; rdfs:comment "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 90% of the sample's particles fall."@en ; @@ -820,6 +853,15 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the celsius temperature of the ambient environment"@en ; :electrochemistry_1b717a20_17e3_4480_8c60_c4ae94058f05 "Environmental_Temperature (C)"@en . +:electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f a owl:Class ; + rdfs:label "RealElectricImpedance"@en ; + rdfs:comment "the imaginary part of the complex electric impedance"@en ; + rdfs:subClassOf emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 ; + skos:altLabel "ACResistance"@en ; + skos:prefLabel "RealElectricImpedance"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q1048490"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the imaginary part of the complex electric impedance"@en . + :electrochemistry_ae108db7_8765_4329_9908_059277dee586 a owl:Class ; rdfs:label "StepCapacity"@en ; rdfs:comment "the amount of charge that has passed through an electrochemical device within the time interval of a given testing step"@en ; @@ -1084,8 +1126,8 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry ; dcterms:license "https://creativecommons.org/licenses/by/4.0/legalcode" ; owl:imports ; - owl:versionIRI ; - owl:versionInfo "0.17.0-beta" . + owl:versionIRI ; + owl:versionInfo "0.18.0-beta" . a owl:NamedIndividual, foaf:Person ; @@ -1866,6 +1908,8 @@ In either case, the magnitude of the catalytic current depends on the applied po emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electric potential of an ion-selective electrode (ISE) and activity of an analyte ion at which the potential of the ISE is independent of temperature"@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1351/goldbook.I03304"@en . +emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 :electrochemistry_097ea615_c209_4edd_a1a1_5eea71d98fe8 "acimp/ohms"@en . + emmo:EMMO_e218c625_6a39_47a9_8d08_a2ef41c152a9 rdfs:subClassOf :electrochemistry_02eb0465_4f94_453c_8c1f_5ddf80134634 ; skos:altLabel "GravimetricEnergyDensity"@en ; :electrochemistry_811aafc3_0c6d_470e_b67e_ff5c82992609 "CmpEng(mWh/g)"@en . @@ -1997,14 +2041,6 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog skos:prefLabel "TemperatureLimit"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the temperature of a system"@en . -:electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 a owl:Class ; - rdfs:label "RatedCapacity"@en ; - rdfs:comment "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en ; - rdfs:subClassOf :electrochemistry_791c1915_a791_4450_acd8_7f94764743b5 ; - skos:prefLabel "RatedCapacity"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-03-15"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en . - :electrochemistry_9ed7210c_c4fa_467b_822d_ba12f885bdf4 a owl:Class ; rdfs:label "ConcentrationOverpotential"@en ; rdfs:comment "The concentration overpotential of an electrode reaction at a given electrode current density (c.d.) is basically the difference in equilibrium potentials across the diffusion layer. More precisely, it is the potential of a reference electrode (of the same electrode reaction as the working electrode ) with the interfacial concentrations which establish themselves at c.d., relative to the potential of a similar reference electrode with the concentrations of the bulk solution. From such a measured potential difference, with c.d. flowing, one needs to subtract the ohmic potential drop prevailing between the two electrodes."@en, @@ -2110,6 +2146,14 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog skos:prefLabel "NumberOfFiniteVolumeCells"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "number of discrete finite volume cells in a grid or sub-grid"@en . +:electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 a owl:Class ; + rdfs:label "RatedCapacity"@en ; + rdfs:comment "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en ; + rdfs:subClassOf :electrochemistry_791c1915_a791_4450_acd8_7f94764743b5 ; + skos:prefLabel "RatedCapacity"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-03-15"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en . + :electrochemistry_cc519a19_b8d5_4e3f_b893_3a884888ad79 a owl:Class ; rdfs:label "MaximumTemperature"@en ; rdfs:comment "the maximum allowable temperature"@en ; @@ -2186,14 +2230,6 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa :electrochemistry_a07dd85b_d0df_4d5d_8b0c_14d20ea3fe45 "current"@en ; :electrochemistry_ea9f4dba_8ca2_419e_9cdf_ce54e9ebbd46 "Current (A)"@en . -:electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 a owl:Class ; - rdfs:label "CurrentLimit"@en ; - rdfs:comment "limit on the electric current of an electrical system"@en ; - rdfs:subClassOf emmo:EMMO_c995ae70_3b84_4ebb_bcfc_69e6a281bb88, - :electrochemistry_b395a244_3a75_4737_be38_981bfa1277fe ; - skos:prefLabel "CurrentLimit"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the electric current of an electrical system"@en . - :electrochemistry_900e357f_2ee3_425a_a0b6_322661117787 a owl:Class ; rdfs:label "ElectrochemicalProperty"@en ; rdfs:subClassOf emmo:EMMO_909415d1_7c43_4d5e_bbeb_7e1910159f66 ; @@ -2292,6 +2328,14 @@ foaf:Person a owl:Class ; emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Faradaic_current"@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://goldbook.iupac.org/terms/view/F02321"@en . +:electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 a owl:Class ; + rdfs:label "CurrentLimit"@en ; + rdfs:comment "limit on the electric current of an electrical system"@en ; + rdfs:subClassOf emmo:EMMO_c995ae70_3b84_4ebb_bcfc_69e6a281bb88, + :electrochemistry_b395a244_3a75_4737_be38_981bfa1277fe ; + skos:prefLabel "CurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the electric current of an electrical system"@en . + :electrochemistry_1cd1d777_e67b_47eb_81f1_edac35d9f2c6 a owl:Class ; rdfs:label "Overpotential"@en ; rdfs:comment "difference between the electrode potential with current flow, and the electrode potential without current flow, i.e. the equilibrium potential"@en, diff --git a/versions/0.17.0-beta/electrochemistry-inferred.ttl b/versions/0.17.0-beta/electrochemistry-inferred.ttl index f4fa0f9..c704a22 100644 --- a/versions/0.17.0-beta/electrochemistry-inferred.ttl +++ b/versions/0.17.0-beta/electrochemistry-inferred.ttl @@ -7,7 +7,7 @@ @base . rdf:type owl:Ontology ; - owl:versionIRI ; + owl:versionIRI ; ""@en , "CHAMEO is a domain ontology designed to model the common aspects across the different characterisation techniques and methodologies."@en , """Defines physical quantities in the International System of Quantities (ISQ). ISQ was made an official ISO standard in 2009 and is defined in the ISO/IEC 80000 standard. @@ -146,12 +146,12 @@ The symbolic module includes symbols, symbolic constructs and formal languages." "https://w3id.org/emmo/domain/characterisation-methodology/chameo" ; "2024-04-12" , "2024-06-23"^^xsd:date , - "2024-07-03"^^xsd:date ; + "2024-07-05"^^xsd:date ; "https://creativecommons.org/licenses/by/4.0/legalcode" , "https://creativecommons.org/licenses/by/4.0/legalcode"@en ; "2024-04-12" , "2024-06-23"^^xsd:date , - "2024-07-03"^^xsd:date ; + "2024-07-05"^^xsd:date ; "EMMC ASBL" , "EMMC ASBL"@en , """EMMC ASBL @@ -241,11 +241,11 @@ We kindly acknowledge NIST for reusing their content, including the selection of "You can contact EMMO Authors via emmo@emmc.eu"@en ; owl:backwardCompatibleWith "" , " " , - "0.16.0-beta" ; - owl:priorVersion "0.16.0-beta" , + "0.17.0-beta" ; + owl:priorVersion "0.17.0-beta" , "0.5.0-beta" , "1.0.0-beta2" ; - owl:versionInfo "0.17.0-beta" , + owl:versionInfo "0.18.0-beta" , "0.6.0-beta" , "1.0.0-beta3" , "1.0.0-beta7" ; @@ -2333,7 +2333,7 @@ While the EMMO FOL introduces the quantum causality relation C(x,y) as primitive rdf:type owl:ObjectProperty ; rdfs:subPropertyOf ; rdfs:domain ; - rdfs:range ; + rdfs:range ; "hasSolvent"@en . @@ -2364,7 +2364,7 @@ While the EMMO FOL introduces the quantum causality relation C(x,y) as primitive rdf:type owl:ObjectProperty ; rdfs:subPropertyOf ; rdfs:domain ; - rdfs:range ; + rdfs:range ; "hasSolute"@en . @@ -34532,7 +34532,7 @@ Wikipedia"""@en ; , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "ZincElectrode"@en ; "an electrode in which the main active material is zinc metal"@en ; @@ -34555,7 +34555,7 @@ Wikipedia"""@en ; rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "LithiumElectrode"@en ; "an electrode in which the active material is lithium metal" . @@ -44391,164 +44391,11 @@ Wear is defined as the progressive removal of the material from a solid surface "InChI=1S/Pb" . -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0139937b_2724_4864_84fb_f14bcfb83538 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0bdf0bb9_41fc_455d_af11_a249e24acdf6 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0f2f65a7_5cc4_4c86_a4d0_676771c646f1 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_250fa43e_1f26_4ed8_b787_91a2325a8e7b - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_25f6ff4c_53ad_4837_97c4_aa6f06099bb5 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_2a540939_3908_4f85_92f9_c46da7d4e9cb - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_2a87ca10_fc6a_4d61_b48c_d9790a566ee3 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_3899a9c9_9b34_443e_8ce6_0257589bb38a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_3ac62305_acd6_4312_9e31_4f824bd2530d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_4126ee09_b9c6_4694_bf33_0d8970e05f72 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_4c62d334_a124_40b3_9fd1_fe713d01a6af - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_5088ad54_b37d_4ee1_a086_d6c17e644f9a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_5cee19d2_f916_4264_a8ed_efed13a808d2 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_68c0876b_cb62_41cd_846d_95cc9d9a8733 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_68f9b85e_340f_46ec_96da_ebb6bd62f5fd - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_73d4606c_7460_4a5c_9413_793bdf35753e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_7dc738d6_74f2_489e_ae84_a6dbdf627f2e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_848003a2_71ee_4967_8039_354c907ec7f4 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_97439fbb_155f_433d_9edd_d510cd491f24 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_9bd78e1c_a4dc_41b6_8013_adb51df1ffdc - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_9da78aea_d436_40e2_a68f_c3dee32b825e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_aa8e9cc4_5f66_4307_b1c8_26fac7653a90 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_acdb232f_8041_4e11_8a11_5db2d2baae4d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_b01771a9_218a_4b01_b20f_4021cfa0b7d5 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_b3815a7f_f64a_48f6_b0ce_d0032578c699 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c109ca45_08c7_4436_a818_a9c575785e2f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c28a0967_ed23_48cc_a14e_a651d75a19db - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c5582dae_ccff_4fbe_adaa_078091054640 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c728b6b9_449a_45ff_b5ae_6b7968708f0d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_cd17ca33_ae3d_4738_8930_547673bf6c1f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_cdd18f0c_e7b3_4d09_b3dd_c09fe4b1adba - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_d53259a7_0d9c_48b9_a6c1_4418169df303 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_d673ceb2_3045_4e2e_8cad_56f5169b542f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_db74b6b7_09fc_40db_a7d5_6eb86b69192a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_dc5fb846_1824_40f8_9834_81f118aa1c2d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_dcdbdbed_2e20_40d1_a7a5_5761de7f0618 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_e1e6ff98_0725_4d27_ab21_2ca5a95371f0 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_e8fafdc8_6cd3_4dd0_9630_10ca8e3f1827 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_f3e7979a_e3ef_450a_8762_7d8778afe478 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_f7525766_90cf_43e9_8932_7cb3b14f676f - rdf:type owl:Class . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626 + rdf:type owl:Class ; + rdfs:subClassOf ; + "ImaginaryElectricImpedance"@en ; + "the imaginary part of the complex electric impedance"@en . ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_01260656_ac32_472e_9513_a607366538ec @@ -44872,11 +44719,11 @@ Wear is defined as the progressive removal of the material from a solid surface rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCLCOElectrode"@en ; @@ -45639,7 +45486,7 @@ and t* through mathematical models, provided that the long-time potential- deter , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LFPElectrode"@en ; @@ -46241,7 +46088,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "PtElectrode"@en ; "PlatinumElectrode"@en ; @@ -46343,7 +46190,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SiliconOxideGraphiteElectrode"@en ; @@ -46477,7 +46324,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "FTOElectrode"@en ; @@ -46500,7 +46347,7 @@ Aluminum foil"""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "NiOOHElectrode"@en , "NickelOxyhydroxideElectrode"@en ; @@ -46544,6 +46391,14 @@ Aluminum foil"""@en . "a coin case with a nominal diameter of 7.9 mm and a height of 1.65 mm"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b + rdf:type owl:Class ; + rdfs:subClassOf , + ; + "Resting"@en ; + "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 rdf:type owl:Class ; rdfs:subClassOf ; @@ -46811,6 +46666,13 @@ Aluminum foil"""@en . "A material relation in electrochemistry."@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45 + rdf:type owl:Class ; + rdfs:subClassOf ; + "UpperCurrentLimit"@en ; + "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3e54f9e3_a31d_4821_9bfb_ef953a42c35b rdf:type owl:Class ; rdfs:subClassOf , @@ -46981,7 +46843,7 @@ Aluminum foil"""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNMOElectrode"@en ; @@ -47201,11 +47063,11 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCLMOElectrode"@en ; @@ -47294,7 +47156,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumNickelPhosphateElectrode"@en ; @@ -47549,7 +47411,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumIronPhosphateElectrode"@en ; @@ -47904,7 +47766,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "CarbonMonofluorideElectrode"@en ; "electrode in which the active material is carbon monofluoride"@en ; @@ -48131,7 +47993,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "HardCarbonElectrode"@en ; "electrode in which the active material is hard carbon"@en . @@ -48291,7 +48153,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "SAE"@en ; "SolidAmalgamElectrode"@en ; @@ -48426,7 +48288,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LTOElectrode"@en ; @@ -48518,20 +48380,13 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ] . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "system that consists of at least two electron conductors (electrodes) in contact with ionic conductors (electrolytes)"@en ; - "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6fec8cc1_4e6c_428e_8343_6cf3c286a185 rdf:type owl:Class ; rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "AuElectrode"@en ; "GoldElectrode"@en ; @@ -48691,7 +48546,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NiOElectrode"@en ; @@ -48721,7 +48576,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "TiO2Electrode"@en ; @@ -48915,13 +48770,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ] . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "in secondary cells, the active material is restored to its original state during charge"@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - [ rdf:type owl:Axiom ; owl:annotatedSource ; owl:annotatedProperty ; @@ -48965,6 +48813,13 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s "an electrode in which the primary active material consists of caesium or caesium compounds"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea + rdf:type owl:Class ; + rdfs:subClassOf ; + "LowerCurrentLimit"@en ; + "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7f073272_8925_4344_995c_a5a6dd1fcde6 rdf:type owl:Class ; rdfs:subClassOf ; @@ -49118,7 +48973,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "LiquidGalliumElectrode"@en ; "a liquid electrode with an active material of gallium"@en . @@ -49188,7 +49043,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "ZnOElectrode"@en ; @@ -49446,6 +49301,13 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "an electrode in which the primary active material consists of sulfur or sulfur compounds"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_88dd2bce_fb17_4705_905d_892681812290 + rdf:type owl:Class ; + rdfs:subClassOf ; + "NumberOfIterations"@en ; + "the number of times an iterative process should occur"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8968eb7a_9a65_4286_a596_c31b998df329 rdf:type owl:Class ; rdfs:subClassOf ; @@ -49504,6 +49366,13 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "substance that increases chemical reaction speed, and which is conserved after the reaction"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100 + rdf:type owl:Class ; + rdfs:subClassOf ; + "NominalCapacity"@en ; + "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8b40856f_1ca2_4137_9616_7fb624671909 rdf:type owl:Class ; rdfs:subClassOf , @@ -50109,7 +49978,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumCobaltPhosphateElectrode"@en ; @@ -50298,13 +50167,6 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; "plate in which the active material is applied as a paste to a conductive current collector"@en . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "plate in which the active material is applied as a paste to a conductive current collector"@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a24f8581_a5a4_41a4_bb45_d0fdd5c0d810 rdf:type owl:Class ; @@ -50397,7 +50259,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "SilverOxideElectrode"@en ; "an electrode in which the primary active material consists of manganese dioxide or vmanganese dioxide compounds"@en ; @@ -50427,7 +50289,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "AgElectrode"@en ; "SilverElectrode"@en ; @@ -50662,7 +50524,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "CupricOxideElectrode"@en ; "CopperOxideElectrode"@en ; @@ -50751,6 +50613,15 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "Environmental_Temperature (C)"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f + rdf:type owl:Class ; + rdfs:subClassOf ; + "ACResistance"@en ; + "RealElectricImpedance"@en ; + "https://www.wikidata.org/wiki/Q1048490"@en ; + "the imaginary part of the complex electric impedance"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abfadc99_6e43_4d37_9b04_7fc5b0f327ae rdf:type owl:Class ; rdfs:subClassOf , @@ -50782,7 +50653,8 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e rdf:type owl:Class ; rdfs:subClassOf ; - "CCCVCycling"@en ; + "CCCVCycling"@en ; + "ConstantCurrentConstantVoltageCycling"@en ; "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en . @@ -51030,7 +50902,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCElectrode"@en ; @@ -51360,11 +51232,11 @@ of other configurations are used."""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNMOLFPElectrode"@en ; @@ -51466,13 +51338,6 @@ of other configurations are used."""@en . "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; "https://en.wikipedia.org/wiki/Fuel_cell"@en . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_bea04148_10d9_4eda_9cd5_8f609d7e9ff8 rdf:type owl:Class ; @@ -51568,7 +51433,7 @@ of other configurations are used."""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LMOElectrode"@en ; @@ -51751,11 +51616,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "ITO"@en ; @@ -51809,7 +51674,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "GraphiteElectrode"@en ; "electrode in which the active material is graphite"@en . @@ -51928,7 +51793,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "MnO2Electrode"@en ; "ManganeseDioxideElectrode"@en ; @@ -51943,7 +51808,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNOElectrode"@en ; @@ -51963,7 +51828,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "IrO2Electrode"@en ; @@ -51977,7 +51842,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumManganesePhosphateElectrode"@en ; @@ -52146,7 +52011,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "IronDisulfideElectrode"@en ; "an electrode in which the primary active material consists of iron disulfide or iron disulfide compounds."@en ; @@ -52509,7 +52374,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "HgElectrode"@en ; "MercuryElectrode"@en ; @@ -52785,11 +52650,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SiliconGraphiteElectrode"@en ; @@ -52802,7 +52667,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumManganeseOxideElectrode"@en ; @@ -53004,7 +52869,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumCobaltOxideElectrode"@en ; @@ -53096,7 +52961,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NCAElectrode"@en ; @@ -53315,7 +53180,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "PbOElectrode"@en ; @@ -53401,7 +53266,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumChromiumOxideElectrode"@en ; @@ -53621,7 +53486,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LCOElectrode"@en ; @@ -53672,11 +53537,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LMOLFPElectrode"@en ; @@ -53808,10 +53673,10 @@ In either case, the magnitude of the catalytic current depends on the applied po "The universe is considered as a causally self-connected object, encompassing all other objects. For this reason is unique."@en . -[ owl:qualifiedCardinality "3"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "3"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "4"^^xsd:nonNegativeInteger @@ -53835,10 +53700,10 @@ In either case, the magnitude of the catalytic current depends on the applied po [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:minQualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:minQualifiedCardinality "2"^^xsd:nonNegativeInteger +[ owl:minQualifiedCardinality "1"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger @@ -53850,7 +53715,7 @@ In either case, the magnitude of the catalytic current depends on the applied po [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:minQualifiedCardinality "2"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger diff --git a/versions/0.17.0-beta/electrochemistry.ttl b/versions/0.17.0-beta/electrochemistry.ttl index baa1206..d442e3c 100644 --- a/versions/0.17.0-beta/electrochemistry.ttl +++ b/versions/0.17.0-beta/electrochemistry.ttl @@ -1,6 +1,6 @@ @prefix : . @prefix bibo: . -@prefix chemsub: . +@prefix chemsub: . @prefix dcterms: . @prefix emmo: . @prefix foaf: . @@ -54,9 +54,9 @@ schema:name a owl:AnnotationProperty . dcterms:created "2022-11-25"^^xsd:date ; dcterms:creator , ; - dcterms:issued "2024-07-03"^^xsd:date ; + dcterms:issued "2024-07-05"^^xsd:date ; dcterms:license "https://creativecommons.org/licenses/by/4.0/legalcode" ; - dcterms:modified "2024-07-03"^^xsd:date ; + dcterms:modified "2024-07-05"^^xsd:date ; dcterms:publisher "EMMO" ; dcterms:source , , @@ -67,13 +67,13 @@ schema:name a owl:AnnotationProperty . bibo:status "unstable" ; vann:preferredNamespacePrefix "echem" ; vann:preferredNamespaceUri "https://w3id.org/emmo/domain/electrochemistry" ; - owl:backwardCompatibleWith "0.16.0-beta" ; + owl:backwardCompatibleWith "0.17.0-beta" ; owl:imports , , - ; - owl:priorVersion "0.16.0-beta" ; - owl:versionIRI ; - owl:versionInfo "0.17.0-beta" ; + ; + owl:priorVersion "0.17.0-beta" ; + owl:versionIRI ; + owl:versionInfo "0.18.0-beta" ; foaf:logo "https://raw.githubusercontent.com/emmo-repo/domain-electrochemistry/gh-pages/assets/img/fig/png/domain-electrochemistry-logo.png" . :electrochemistry_027d437e_3bbf_4eda_940b_e509f8d2b993 a owl:Class ; @@ -535,6 +535,14 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "R716" ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a coin case with a nominal diameter of 7.9 mm and a height of 1.65 mm"@en . +:electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b a owl:Class ; + rdfs:label "Resting"@en ; + rdfs:comment "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en ; + rdfs:subClassOf , + :electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 ; + skos:prefLabel "Resting"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en . + :electrochemistry_36444184_1100_4271_869f_7f2d983aaecb a owl:Class ; rdfs:label "P45173115" ; rdfs:comment "a prismatic case with a nominal length of 45 mm, width of 173 mm, and height of 115 mm"@en ; @@ -1564,6 +1572,15 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "TinBasedElectrode"@en ; emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "an electrode in which the primary active material consists of tin or tin compounds"@en . +:electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c a owl:Class ; + rdfs:label "PastedPlate"@en ; + rdfs:comment "plate in which the active material is applied as a paste to a conductive current collector"@en ; + rdfs:subClassOf :electrochemistry_92147e31_d015_4889_a092_04fbab033f15 ; + skos:altLabel "PastedElectrode"@en ; + skos:prefLabel "PastedPlate"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "plate in which the active material is applied as a paste to a conductive current collector"@en . + :electrochemistry_a277e420_2483_44d5_a2bc_4e421dea231a a owl:Class ; rdfs:label "R926" ; rdfs:comment "a coin case with a nominal diameter of 9.5 mm and a height of 2.6 mm"@en ; @@ -1658,10 +1675,11 @@ schema:name a owl:AnnotationProperty . emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a coin case with a nominal diameter of 11.6 mm and a height of 4.2 mm"@en . :electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e a owl:Class ; - rdfs:label "CCCVCycling"@en ; + rdfs:label "ConstantCurrentConstantVoltageCycling"@en ; rdfs:comment "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en ; rdfs:subClassOf :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; - skos:prefLabel "CCCVCycling"@en ; + skos:altLabel "CCCVCycling"@en ; + skos:prefLabel "ConstantCurrentConstantVoltageCycling"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en . :electrochemistry_ad9cdad6_66e8_471e_a7c6_b79f37c20814 a owl:Class ; @@ -1783,6 +1801,17 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "P20100141" ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a prismatic case with a nominal length of 20 mm, width of 100 mm, and height of 141 mm"@en . +:electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d a owl:Class ; + rdfs:label "FuelCell"@en ; + rdfs:comment "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; + rdfs:subClassOf :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; + skos:prefLabel "FuelCell"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q180253"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-05"@en ; + emmo:EMMO_6dd685dd_1895_46e4_b227_be9f7d643c25 "https://dbpedia.org/page/Fuel_cell"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; + emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Fuel_cell"@en . + :electrochemistry_bea04148_10d9_4eda_9cd5_8f609d7e9ff8 a owl:Class ; rdfs:label "CelsiusTemperatureMeasurement"@en ; rdfs:comment "measurement of temperature"@en ; @@ -3335,15 +3364,6 @@ schema:name a owl:AnnotationProperty . "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-26"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "interface between an electrolyte and an electrode where an electrode reaction takes place."@en . -:electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c a owl:Class ; - rdfs:label "PastedPlate"@en ; - rdfs:comment "plate in which the active material is applied as a paste to a conductive current collector"@en ; - rdfs:subClassOf :electrochemistry_92147e31_d015_4889_a092_04fbab033f15 ; - skos:altLabel "PastedElectrode"@en ; - skos:prefLabel "PastedPlate"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "plate in which the active material is applied as a paste to a conductive current collector"@en . - :electrochemistry_a462859d_d8bd_48ea_8bde_1576f1248a1e a owl:Class ; rdfs:label "SilverElectrode"@en ; rdfs:comment "electrode in the form of foil, mesh, wire, rod, tube, powder, pellets, or single crystal of silver"@en ; @@ -3459,17 +3479,6 @@ of other configurations are used."""@en . emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-19"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "part which insures insulation between the plate (electrode) edges and adjacent plates (electrodes) and the container side walls"@en . -:electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d a owl:Class ; - rdfs:label "FuelCell"@en ; - rdfs:comment "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - rdfs:subClassOf :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; - skos:prefLabel "FuelCell"@en ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q180253"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-05"@en ; - emmo:EMMO_6dd685dd_1895_46e4_b227_be9f7d643c25 "https://dbpedia.org/page/Fuel_cell"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Fuel_cell"@en . - :electrochemistry_bed5b5f9_b89d_45e3_a8c2_81b70ae21847 a owl:Class ; rdfs:label "SeriesParallelConnection"@en ; rdfs:comment "arrangement of cells or batteries wherein in series connected cells or batteries are connected in parallel."@en ; @@ -4518,15 +4527,20 @@ schema:Person a owl:Class ; skos:prefLabel "BimetallicOxideElectrode"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "an electrode consisting of two metal oxide active materials"@en . -:electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 a owl:Class ; - rdfs:label "GalvanostaticProcess"@en ; - rdfs:comment "a process in which the electric current is kept constant"@en ; - rdfs:subClassOf [ a owl:Restriction ; - owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; - owl:someValuesFrom :electrochemistry_22725105_c941_4b14_a4a2_fcb627958607 ], - :electrochemistry_5548f188_df00_4c05_ae98_7846e92efe36 ; - skos:prefLabel "GalvanostaticProcess"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a process in which the electric current is kept constant"@en . +:electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 a owl:Class ; + rdfs:label "ActiveMaterial"@en ; + rdfs:comment "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; + rdfs:subClassOf :electrochemistry_b5ea31c9_bb10_4276_980e_c3eceb1efc82, + :electrochemistry_ebdb68e9_c4b5_4d57_a042_c0f51d446755 ; + skos:altLabel "ActiveElectrochemicalMaterial"@en, + "ElectrochemicallyActiveMaterial"@en ; + skos:prefLabel "ActiveMaterial"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q120907375" ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-33", + "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-14"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; + emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "material which reacts chemically to produce electric energy when the cell discharges", + "in secondary cells, the active material is restored to its original state during charge"@en . :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 a owl:Class ; rdfs:label "PotentiometricStrippingAnalysis"@en ; @@ -4601,20 +4615,15 @@ schema:Person a owl:Class ; "The electrode (or interfacial) reaction involves all the processes (chemical reaction, structural reorganization, adsorption) accompanying the charge transfer step."@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1351/goldbook.E01960"@en . -:electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 a owl:Class ; - rdfs:label "ActiveMaterial"@en ; - rdfs:comment "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; - rdfs:subClassOf :electrochemistry_b5ea31c9_bb10_4276_980e_c3eceb1efc82, - :electrochemistry_ebdb68e9_c4b5_4d57_a042_c0f51d446755 ; - skos:altLabel "ActiveElectrochemicalMaterial"@en, - "ElectrochemicallyActiveMaterial"@en ; - skos:prefLabel "ActiveMaterial"@en ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q120907375" ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-33", - "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-14"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "material which reacts chemically to produce electric energy when the cell discharges", - "in secondary cells, the active material is restored to its original state during charge"@en . +:electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 a owl:Class ; + rdfs:label "GalvanostaticProcess"@en ; + rdfs:comment "a process in which the electric current is kept constant"@en ; + rdfs:subClassOf [ a owl:Restriction ; + owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; + owl:someValuesFrom :electrochemistry_22725105_c941_4b14_a4a2_fcb627958607 ], + :electrochemistry_5548f188_df00_4c05_ae98_7846e92efe36 ; + skos:prefLabel "GalvanostaticProcess"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a process in which the electric current is kept constant"@en . :electrochemistry_8a1c9a7b_978c_4421_a9c1_d0b07b42aab9 a owl:Class ; rdfs:label "ChemicalReaction"@en ; @@ -4953,9 +4962,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "extremely resistant to many chemicals, impermeable to gases and liquids, and has good electrical conductivity, high hardness and strength, and biocompatibility"@en . + owl:annotatedTarget "electrode made of glassy carbon material with an intertwined graphitic ribbon structure, formed by pyrolysis of a resol precursor at temperatures up to 3000 °C"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -4976,28 +4985,22 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "A disc electrode that is embedded in the centre of a cylinder which rotates in solution around the longitudinal cylinder axis."@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "composite system in which the supplied electric energy mainly produces chemical reactions or, conversely, in which the energy released by chemical reactions is mainly delivered by the system as electric energy"@en . + owl:annotatedTarget "a system containing two electrodes that allow transport of electrons, separated by an electrolyte that allows movement of ions but blocks movement of electrons."@en . [] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "system that consists of at least two electron conductors (electrodes) in contact with ionic conductors (electrolytes)"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" . + owl:annotatedTarget "composite system in which the supplied electric energy mainly produces chemical reactions or, conversely, in which the energy released by chemical reactions is mainly delivered by the system as electric energy"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "glassy carbon combines glass-like mechanical characteristics with physical properties similar to graphite, owing to its “graphene ribbon” structure"@en . - -[] a owl:Axiom ; - dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "a system containing two electrodes that allow transport of electrons, separated by an electrolyte that allows movement of ions but blocks movement of electrons."@en . + owl:annotatedTarget "extremely resistant to many chemicals, impermeable to gases and liquids, and has good electrical conductivity, high hardness and strength, and biocompatibility"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5033,13 +5036,13 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "one of the most frequently used working electrodes"@en . + owl:annotatedTarget "glassy carbon combines glass-like mechanical characteristics with physical properties similar to graphite, owing to its “graphene ribbon” structure"@en . [] a owl:Axiom ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; - owl:annotatedTarget "in secondary cells, the active material is restored to its original state during charge"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedTarget "material that is oxidized or reduced at an electrode in an electrochemical cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5047,12 +5050,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; owl:annotatedTarget "material which reacts chemically to produce electric energy when the cell discharges" . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; - owl:annotatedTarget "material that is oxidized or reduced at an electrode in an electrochemical cell"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5061,9 +5058,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "electrode made of glassy carbon material with an intertwined graphitic ribbon structure, formed by pyrolysis of a resol precursor at temperatures up to 3000 °C"@en . + owl:annotatedTarget "one of the most frequently used working electrodes"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5083,18 +5080,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_83f2b1e9_cb67_4dbf_977f_ba54bbae374f ; owl:annotatedTarget "charge during which the electric current is maintained at a constant value regardless of the battery voltage or temperature"@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; - owl:annotatedTarget "Electrolyte solution in the anodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the anode is placed."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; owl:annotatedTarget "electrolyte on the anode side of an electrochemical cell that is divided into compartments"@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; + owl:annotatedTarget "Electrolyte solution in the anodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the anode is placed."@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5133,15 +5130,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_8d3bf304_78e4_4e99_abe1_6ab429e44ed1 ; - owl:annotatedTarget "a sealed cell may be equipped with a safety device to prevent a dangerously high internal pressure and is designed to operate during its life in its original sealed state"@en . + owl:annotatedTarget "cell which remains closed and does not release either gas or liquid when operated within the limits specified by the manufacturer"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_8d3bf304_78e4_4e99_abe1_6ab429e44ed1 ; - owl:annotatedTarget "cell which remains closed and does not release either gas or liquid when operated within the limits specified by the manufacturer"@en . + owl:annotatedTarget "a sealed cell may be equipped with a safety device to prevent a dangerously high internal pressure and is designed to operate during its life in its original sealed state"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5150,10 +5147,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "capacitor consisting of a metallic plate as first conductor, a very thin oxide film formed on the metal as the dielectric and an electrolyte as second conductor"@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_06d8e1ee_924a_4915_998d_33a69f41dadc ; - owl:annotatedTarget "operation during which an electrochemical cell supplies electric energy as the result of chemical changes within the cell"@en . + owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; + owl:annotatedTarget "two-step electrochemical measurement in which 1) material is accumulated at an electrode and 2) the material is removed by chemical reaction or electrochemically at constant current with measurement of electrode potential"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5161,6 +5158,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; owl:annotatedTarget "historically for the analysis of metal ions, mercury ions were added to the test solution to form a mercury amalgam when reduced. Alternatively, an HMDE or MFE was used and the oxidizing agent added after amalgam formation. However, the toxicity of mercury and its compounds have all but precluded the present-day use of mercury"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_06d8e1ee_924a_4915_998d_33a69f41dadc ; + owl:annotatedTarget "operation during which an electrochemical cell supplies electric energy as the result of chemical changes within the cell"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5179,12 +5182,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; owl:annotatedTarget "the time between changes in potential in step 2 is related to the concentration of analyte in the solution"@en . -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; - owl:annotatedTarget "two-step electrochemical measurement in which 1) material is accumulated at an electrode and 2) the material is removed by chemical reaction or electrochemically at constant current with measurement of electrode potential"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5211,15 +5208,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_9ee6e728_e8f5_4b36_a045_d63da69dfc85 ; - owl:annotatedTarget "overcharge is also the act of charging beyond a certain limit specified by the manufacturer"@en . + owl:annotatedTarget "continued charging of a fully charged secondary cell or battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_9ee6e728_e8f5_4b36_a045_d63da69dfc85 ; - owl:annotatedTarget "continued charging of a fully charged secondary cell or battery"@en . + owl:annotatedTarget "overcharge is also the act of charging beyond a certain limit specified by the manufacturer"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5227,6 +5224,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_9f466223_e20a_474d_ac4d_6d4b6131c275 ; owl:annotatedTarget "an electrode that holds its potential essentially constant by efficiently allowing electric current to pass"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_a0580fa9_5073_44af_b33e_7adbc83892d0 ; + owl:annotatedTarget "electrode reaction in which oxidation occurs at the anode"@en . + [] a owl:Axiom ; dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5242,14 +5245,14 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0580fa9_5073_44af_b33e_7adbc83892d0 ; - owl:annotatedTarget "electrode reaction in which oxidation occurs at the anode"@en . + owl:annotatedSource :electrochemistry_a0a619d7_da95_41f0_8bc3_9c19d636d543 ; + owl:annotatedTarget "electrode that serves only as a source or sink for electrons without playing a chemical role in the electrode reaction"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0a619d7_da95_41f0_8bc3_9c19d636d543 ; - owl:annotatedTarget "electrode that serves only as a source or sink for electrons without playing a chemical role in the electrode reaction"@en . + owl:annotatedSource :electrochemistry_a0fcb105_587f_45d8_a89a_46dc8f745069 ; + owl:annotatedTarget "partial or complete external covering of a cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5260,14 +5263,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0fcb105_587f_45d8_a89a_46dc8f745069 ; - owl:annotatedTarget "partial or complete external covering of a cell"@en . - -[] a owl:Axiom ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c ; - owl:annotatedTarget "plate in which the active material is applied as a paste to a conductive current collector"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedSource :electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e ; + owl:annotatedTarget "process inside an electrolytic cell used to coat a conductive object with a layer of a material"@en . [] a owl:Axiom ; dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; @@ -5278,8 +5275,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e ; - owl:annotatedTarget "process inside an electrolytic cell used to coat a conductive object with a layer of a material"@en . + owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; + owl:annotatedTarget "component of a cell which permits the flow of gas in one direction only"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5287,12 +5284,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; owl:annotatedTarget "a valve has a characteristic venting or opening and closing pressure"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; - owl:annotatedTarget "component of a cell which permits the flow of gas in one direction only"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5305,6 +5296,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a462859d_d8bd_48ea_8bde_1576f1248a1e ; owl:annotatedTarget "electrode in the form of foil, mesh, wire, rod, tube, powder, pellets, or single crystal of silver"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; + owl:annotatedTarget "a chemical reaction in an electrolyte involving a transfer of electrons between chemical components or between chemical components and an electrode"@en . + [] a owl:Axiom ; dcterms:source "Bockris, J. O'M. and Despić, . Aleksandar R. (2011, December 15). Electrochemical reaction. Encyclopedia Britannica. https://www.britannica.com/science/electrochemical-reaction" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5317,12 +5314,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; owl:annotatedTarget "the electrode reaction can also involve other chemical reactions including subreactions on a cell electrode"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; - owl:annotatedTarget "a chemical reaction in an electrolyte involving a transfer of electrons between chemical components or between chemical components and an electrode"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5355,15 +5346,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_ae56cce3_7a7c_4e53_bb58_31e0d642d47e ; - owl:annotatedTarget "this flame front may originate from a spark or an external naked flame igniting combustible electrolysis gas"@en . + owl:annotatedTarget "vent of special design which provides protection against the propagation of a flame front from or into the interior of a secondary cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_ae56cce3_7a7c_4e53_bb58_31e0d642d47e ; - owl:annotatedTarget "vent of special design which provides protection against the propagation of a flame front from or into the interior of a secondary cell"@en . + owl:annotatedTarget "this flame front may originate from a spark or an external naked flame igniting combustible electrolysis gas"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5395,6 +5386,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_b525a629_a679_464f_bc5b_b49d2fc82686 ; owl:annotatedTarget "an electrochemical cell for conductivity measurements"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; + owl:annotatedTarget "by convention, cell electrode at which an oxidation reaction occurs"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5419,12 +5416,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; owl:annotatedTarget "the concepts of “anode” and “cathode” are related only to the direction of electron flow, not to the polarity of the electrodes"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; - owl:annotatedTarget "by convention, cell electrode at which an oxidation reaction occurs"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5433,15 +5424,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_b79d4f9e_5727_4895_8d7f_5fc18d83eb90 ; - owl:annotatedTarget "in a galvanic cell, parasitic reactions may cause inefficiencies or loss of performance"@en . + owl:annotatedTarget "an unwanted side reaction"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_b79d4f9e_5727_4895_8d7f_5fc18d83eb90 ; - owl:annotatedTarget "an unwanted side reaction"@en . + owl:annotatedTarget "in a galvanic cell, parasitic reactions may cause inefficiencies or loss of performance"@en . [] a owl:Axiom ; dcterms:source "IEEE Standard Glossary of Stationary Battery Terminology (2016), https://doi.org/10.1109/IEEESTD.2016.7552407" ; @@ -5481,12 +5472,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_bbae1ef4_0a95_4e7d_9932_1bf939129eef ; owl:annotatedTarget "current-potential curve in a voltammetry experiment"@en . -[] a owl:Axiom ; - dcterms:source "https://en.wikipedia.org/wiki/Square_wave" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0e33278b_639f_412d_9abd_64c3790026ef ; - owl:annotatedTarget "Periodic potential where the amplitude alternates at a steady frequency between fixed minimum and maximum values, with the same duration at minimum and maximum."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5500,10 +5485,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "part which insures insulation between the plate (electrode) edges and adjacent plates (electrodes) and the container side walls"@en . [] a owl:Axiom ; + dcterms:source "https://en.wikipedia.org/wiki/Square_wave" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d ; - owl:annotatedTarget "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedSource :electrochemistry_0e33278b_639f_412d_9abd_64c3790026ef ; + owl:annotatedTarget "Periodic potential where the amplitude alternates at a steady frequency between fixed minimum and maximum values, with the same duration at minimum and maximum."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5535,12 +5520,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_c3f4b34a_0e2c_46f3_baab_4ebd2682d26f ; owl:annotatedTarget "An ionic liquid is an electrolyte composed of a salt that is liquid below 100 °C. Ionic liquids have found uses in electrochemical analysis, because their unconventional properties include a negligible vapor pressure, a high thermal and electrochemical stability, and exceptional dissolution properties for both organic and inorganic chemical species."@en . -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; - owl:annotatedTarget "Electron conductor in an electrochemical cell connected to the external circuit."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5553,6 +5532,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_c55ec02c_b727_4df1_97ce_91d7bb5d5e91 ; owl:annotatedTarget "unplanned escape of electrolyte, gas or other material from a cell or battery"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_c610d869_cc03_44f0_b40d_ca86e945b9c9 ; + owl:annotatedTarget "cell from which electrolyte cannot escape regardless of its orientation"@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5562,8 +5547,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_c610d869_cc03_44f0_b40d_ca86e945b9c9 ; - owl:annotatedTarget "cell from which electrolyte cannot escape regardless of its orientation"@en . + owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; + owl:annotatedTarget "electronically conductive part in electric contact with a medium of lower electronic conductivity and intended to perform one or more of the functions of emitting charge carriers to or receiving charge carriers from that medium or to establish an electric field in that medium"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5579,21 +5564,21 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; - owl:annotatedTarget "by convention, an oxidation reaction occurs during discharge"@en . + owl:annotatedTarget "for a device having two electrodes, that electrode having the lower electric potential"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; - owl:annotatedTarget "electronically conductive part in electric contact with a medium of lower electronic conductivity and intended to perform one or more of the functions of emitting charge carriers to or receiving charge carriers from that medium or to establish an electric field in that medium"@en . + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; + owl:annotatedTarget "by convention, an oxidation reaction occurs during discharge"@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; - owl:annotatedTarget "for a device having two electrodes, that electrode having the lower electric potential"@en . + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; + owl:annotatedTarget "Electron conductor in an electrochemical cell connected to the external circuit."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5604,8 +5589,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0f827b54_370d_4c63_99a6_80f13b24e55e ; - owl:annotatedTarget "evolution of gas resulting from electrolysis of the water in the electrolyte of a cell"@en . + owl:annotatedSource :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; + owl:annotatedTarget "set of operations that is carried out on a secondary cell or battery and is repeated regularly in the same sequence."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5622,14 +5607,14 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; - owl:annotatedTarget "set of operations that is carried out on a secondary cell or battery and is repeated regularly in the same sequence."@en . + owl:annotatedSource :electrochemistry_d5da9948_e95b_4f12_a2d2_10a48f390c52 ; + owl:annotatedTarget "arrangement of cells or batteries wherein parallel connected cells or batteries are connected in series."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_d5da9948_e95b_4f12_a2d2_10a48f390c52 ; - owl:annotatedTarget "arrangement of cells or batteries wherein parallel connected cells or batteries are connected in series."@en . + owl:annotatedSource :electrochemistry_0f827b54_370d_4c63_99a6_80f13b24e55e ; + owl:annotatedTarget "evolution of gas resulting from electrolysis of the water in the electrolyte of a cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5655,18 +5640,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_df78745e_f9db_4830_88f0_8ce074fcb8ff ; owl:annotatedTarget "liquid metal electrode used in polarography"@en . +[] a owl:Axiom ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; + owl:annotatedTarget "electrochemical cell in which chemical reactions occur spontaneously and chemical energy is converted into electrical energy."@en . + [] a owl:Axiom ; dcterms:references "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; owl:annotatedTarget "An electrochemical cell that spontaneously produces work."@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_113e0469_8ae0_407f_892d_4b988f8d8a08 ; - owl:annotatedTarget "electrochemical cell that has two half-cells separated by a wall permeable to ions, both containing the same electrolyte differing only in their temperatures."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5674,16 +5659,22 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "Electrochemical cell intended to produce electric energy."@en . [] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; - owl:annotatedTarget "electrochemical cell in which chemical reactions occur spontaneously and chemical energy is converted into electrical energy."@en . + owl:annotatedSource :electrochemistry_e2a1dae1_05e4_4bd1_a39d_0eb10db482bc ; + owl:annotatedTarget "method of separating and neutralizing ions by an electric current in an electrolytic cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e2a1dae1_05e4_4bd1_a39d_0eb10db482bc ; - owl:annotatedTarget "method of separating and neutralizing ions by an electric current in an electrolytic cell"@en . + owl:annotatedSource :electrochemistry_113e0469_8ae0_407f_892d_4b988f8d8a08 ; + owl:annotatedTarget "electrochemical cell that has two half-cells separated by a wall permeable to ions, both containing the same electrolyte differing only in their temperatures."@en . + +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; + owl:annotatedTarget "electrochemical cell intended to produce chemical reactions"@en . [] a owl:Axiom ; dcterms:references "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; @@ -5697,18 +5688,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; owl:annotatedTarget "Electrochemical cell in which electrical energy is converted into chemical energy."@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; - owl:annotatedTarget "electrochemical cell intended to produce chemical reactions"@en . - -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_1152ae6b_8b57_4d99_912e_40c6a29342fb ; - owl:annotatedTarget "mass m of electrochemically-transformed substance is proportional to the charge Q passed, m ∝ Q."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5721,6 +5700,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_ec1dce8b_bb46_41a9_b532_6bed381aa557 ; owl:annotatedTarget "secondary cell having a cover provided with an opening through which products of electrolysis and evaporation are allowed to escape freely from the cell to the atmosphere"@en . +[] a owl:Axiom ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_1152ae6b_8b57_4d99_912e_40c6a29342fb ; + owl:annotatedTarget "mass m of electrochemically-transformed substance is proportional to the charge Q passed, m ∝ Q."@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5739,12 +5724,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f0c24970_4c14_4207_bd78_5f2181a67085 ; owl:annotatedTarget "the process of forming a film or a bulk material using an electrochemical process where the electrons are supplied by an external power supply"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_1355816f_a2b5_4800_8001_fc888f5d6b1b ; - owl:annotatedTarget "instrument intended to measure the value of a voltage."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5757,6 +5736,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f47611a2_e081_47f0_b287_3fda5f706154 ; owl:annotatedTarget "chemical reaction which occurs in addition to the main process"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; + owl:annotatedTarget "electrode reaction in which reduction occurs at the cathode"@en . + +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_1355816f_a2b5_4800_8001_fc888f5d6b1b ; + owl:annotatedTarget "instrument intended to measure the value of a voltage."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5769,12 +5760,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; owl:annotatedTarget "electrode reaction, where the energy of electrons in the working electrode is higher than the LUMO orbital of the substrate"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; - owl:annotatedTarget "electrode reaction in which reduction occurs at the cathode"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5782,10 +5767,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "electrode that responds to one, or more than one, species in the solution being investigated, with no appreciable change of bulk solution composition during the measurement"@en . [] a owl:Axiom ; - dcterms:source "IUPAC. Compendium of Chemical Terminology, 2nd ed. (the \"Gold Book\"). Compiled by A. D. McNaught and A. Wilkinson. Blackwell Scientific Publications, Oxford (1997). Online version (2019-) created by S. J. Chalk. ISBN 0-9678550-9-8. https://doi.org/10.1351/goldbook." ; + dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_15325775_6d4c_4192_82f1_e4feca9de426 ; - owl:annotatedTarget "A membrane having ion-exchange groups:"@en . + owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; + owl:annotatedTarget "a material in which the mobile species are ions and free movement of electrons is blocked."@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5799,18 +5784,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; owl:annotatedTarget "liquid or solid substance containing mobile ions that render it conductive"@en . +[] a owl:Axiom ; + dcterms:source "IUPAC. Compendium of Chemical Terminology, 2nd ed. (the \"Gold Book\"). Compiled by A. D. McNaught and A. Wilkinson. Blackwell Scientific Publications, Oxford (1997). Online version (2019-) created by S. J. Chalk. ISBN 0-9678550-9-8. https://doi.org/10.1351/goldbook." ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_15325775_6d4c_4192_82f1_e4feca9de426 ; + owl:annotatedTarget "A membrane having ion-exchange groups:"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; owl:annotatedTarget "substance that provides ions on dissolution in a solvent or on melting"@en . -[] a owl:Axiom ; - dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; - owl:annotatedTarget "a material in which the mobile species are ions and free movement of electrons is blocked."@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5823,18 +5808,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_fb9bf7cb_dd4b_4391_99a1_628263dd6940 ; owl:annotatedTarget "measuring instrument to obtain the electrical charge passed in an experiment, or to produce a known amount of substance in a titration."@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; - owl:annotatedTarget "Electrolyte solution in the cathodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the cathode is placed."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; owl:annotatedTarget "electrolyte on the cathode side of an electrochemical cell that is divided into compartments."@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; + owl:annotatedTarget "Electrolyte solution in the cathodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the cathode is placed."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5931,18 +5916,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_2d32a81a_2148_41bd_84fb_467aa8de4a8f ; owl:annotatedTarget "foil, wire, disc, or mesh electrode made of platinum, which is the most commonly used metallic working electrode in electrochemistry"@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; - owl:annotatedTarget "An interfacial reaction that necessarily involves a charge-transfer step."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; owl:annotatedTarget "electrochemical reaction involving the transfer of electrons between electrolyte and electrode"@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; + owl:annotatedTarget "An interfacial reaction that necessarily involves a charge-transfer step."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5957,15 +5942,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_328c6e36_3706_4d92_abae_432fa3adb2a0 ; - owl:annotatedTarget "a cell baffle has a second function in protecting the plate pack from damage by objects inserted through the filling hole"@en . + owl:annotatedTarget "internal component used to reduce the amount of electrolyte loss due to electrolyte spray being carried in the gas and/or by electrolyte movement"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_328c6e36_3706_4d92_abae_432fa3adb2a0 ; - owl:annotatedTarget "internal component used to reduce the amount of electrolyte loss due to electrolyte spray being carried in the gas and/or by electrolyte movement"@en . + owl:annotatedTarget "a cell baffle has a second function in protecting the plate pack from damage by objects inserted through the filling hole"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5979,6 +5964,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_34bc54e3_de4c_41f8_8d3a_d77c951ee23a ; owl:annotatedTarget "needle-like or tree-like formation of crystalline growth formed during deposition of a material"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; + owl:annotatedTarget "by convention, cell electrode at which, a reduction reaction occurs"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5997,12 +5988,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; owl:annotatedTarget "the concepts of “anode” and “cathode” are related only to the direction of electron flow, not to the polarity of the electrodes"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; - owl:annotatedTarget "by convention, cell electrode at which, a reduction reaction occurs"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -6023,15 +6008,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_3f6c9e09_5f23_41cc_9f85_7de365cef089 ; - owl:annotatedTarget "electrolyte creep is sometimes indicated by the presence of a visible solid deposit or wet spots"@en . + owl:annotatedTarget "gradual and slow spreading of an electrolyte film on the external surface of a cell or battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_3f6c9e09_5f23_41cc_9f85_7de365cef089 ; - owl:annotatedTarget "gradual and slow spreading of an electrolyte film on the external surface of a cell or battery"@en . + owl:annotatedTarget "electrolyte creep is sometimes indicated by the presence of a visible solid deposit or wet spots"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -6041,9 +6026,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_04f28ce3_251d_429e_aa85_ab3eb45bbcd2 ; - owl:annotatedTarget "in lithium batteries thermal runaway may cause melting of lithium"@en . + owl:annotatedTarget "unstable condition arising during constant voltage charge in which the rate of heat dissipation capability, causing a continuous temperature increase with resulting further charge current increase, which can lead to the destruction of the battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -6077,9 +6062,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_04f28ce3_251d_429e_aa85_ab3eb45bbcd2 ; - owl:annotatedTarget "unstable condition arising during constant voltage charge in which the rate of heat dissipation capability, causing a continuous temperature increase with resulting further charge current increase, which can lead to the destruction of the battery"@en . + owl:annotatedTarget "in lithium batteries thermal runaway may cause melting of lithium"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; diff --git a/versions/0.4.0/context/context.json b/versions/0.4.0/context/context.json index ac1b0bb..2006ca7 100644 --- a/versions/0.4.0/context/context.json +++ b/versions/0.4.0/context/context.json @@ -1076,7 +1076,6 @@ "ButlerVolmerEquation": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d48ea516_5cac_4f86_bc88_21b6276c0938", "C": "https://w3id.org/emmo#EMMO_36a9bf69_483b_42fd_8a0c_7ac9206320bc", "CASRN": "https://w3id.org/emmo#EMMO_d2a47cd8_662f_438f_855a_b4378eb992ff", - "CCCVCycling": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e", "CPlusPlus": "https://w3id.org/emmo#EMMO_64aba1e5_24b7_4140_8eb4_676c35698e79", "CRate": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_e1fd84eb_acdb_4b2c_b90c_e899d552a3ee", "CSharp": "https://w3id.org/emmo#EMMO_268a8a97_3a6f_4022_93da_962a66827cdc", @@ -1285,7 +1284,7 @@ "CoatingThickness": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3b938708_e7e4_4ac0_a959_9c04306302e7", "Cobalt": "https://w3id.org/emmo/domain/chemical-substance#substance_8f857eb2_7cc8_4294_954d_e69f2842c084", "CobaltAtom": "https://w3id.org/emmo#EMMO_3fe9d899_f1f1_5657_b176_ac6afff2e93d", - "CobaltBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_838c115b_6bc9_4ce8_9f8d_86a6bf67742a", + "CobaltBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7b811780_7251_481b_a4d3_97d437955099", "CobaltHydroxide": "https://w3id.org/emmo/domain/chemical-substance#substance_29b1c15d_2632_40d7_88f7_43575b68b988", "CobaltIIAcetate": "https://w3id.org/emmo/domain/chemical-substance#substance_4310c690_9810_4a95_8d62_7e78e0b84437", "CobaltIIBistrifluoromethanesulfonylimide": "https://w3id.org/emmo/domain/chemical-substance#substance_f4dffee2_c642_4114_a748_5e93b3908380", @@ -1358,6 +1357,7 @@ "ConstantCurrentCharging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_83f2b1e9_cb67_4dbf_977f_ba54bbae374f", "ConstantCurrentChargingCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_37c38b7e_9ded_481a_85fd_a467f1ee2b9f", "ConstantCurrentConstantVoltageCharging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0cc8f231_0ce5_467e_9c76_29b2c80349ad", + "ConstantCurrentConstantVoltageCycling": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e", "ConstantCurrentDischarging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_53fe3f58_0802_41cf_af69_4784fc42cc30", "ConstantCurrentDischargingCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_08833ed2_6324_411a_b34b_fe64c44cd5ef", "ConstantPotentialPulses": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_84d37a37_88bd_47db_9425_31f73a81d38c", @@ -1590,7 +1590,7 @@ "DeviceTemperature": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_463950b9_fd8d_48de_a52d_b29cab026391", "DewPointTemperature": "https://w3id.org/emmo#EMMO_a383e332_a271_463f_9e44_559604547220", "Diameter": "https://w3id.org/emmo#EMMO_c1c8ac3c_8a1c_4777_8e0b_14c1f9f9b0c6", - "Dichloromethane": "https://w3id.org/emmo/domain/chemical-substance#substance_8385c3c4_5906_48f6_b6b6_4bb60dccc27a", + "Dichloromethane": "https://w3id.org/emmo/domain/chemical-substance#substance_a6feec60_5fe7_4687_b427_3bf2ed06008d", "DieCasting": "https://w3id.org/emmo#EMMO_a85d0b8a_588e_423f_b799_97b0890e9183", "DielectricAndImpedanceSpectroscopy": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#DielectricAndImpedanceSpectroscopy", "Dielectrometry": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Dielectrometry", @@ -1624,7 +1624,7 @@ "Dimethoxyethane": "https://w3id.org/emmo/domain/chemical-substance#substance_b6ecabf9_14a4_4808_a139_55329e70ad42", "Dimethoxymethane": "https://w3id.org/emmo/domain/chemical-substance#substance_21954b0b_c05c_42db_b276_3a931d8aabb1", "DimethylCarbonate": "https://w3id.org/emmo/domain/chemical-substance#substance_c4a7d7bd_497e_457e_b858_ff73254266d0", - "DimethylSulfoxide": "https://w3id.org/emmo/domain/chemical-substance#substance_b593b5dd_7957_4b85_856a_dd59775210b6", + "DimethylSulfoxide": "https://w3id.org/emmo/domain/chemical-substance#substance_ea68e1a4_6be8_4686_8701_ba88b40d00b7", "Dimethylformamide": "https://w3id.org/emmo/domain/chemical-substance#substance_769bdc09_f533_4fde_bb53_20339d5bfcb7", "Dimethylpropyleneurea": "https://w3id.org/emmo/domain/chemical-substance#substance_945c68da_3baf_4da6_b794_dca7aebc4ca7", "Dimethylsulfate": "https://w3id.org/emmo/domain/chemical-substance#substance_3c8fb431_7d9d_4a89_a494_708df34f44d3", @@ -1837,7 +1837,7 @@ "ElectronicModel": "https://w3id.org/emmo#EMMO_6eca09be_17e9_445e_abc9_000aa61b7a11", "ElectronvoltPerMetre": "https://w3id.org/emmo#ElectronvoltPerMetre", "Electroosmosis": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_5641910f_6e69_4ce4_be84_4b1bf14b8916", - "Electroplating": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e", + "Electroplating": "https://w3id.org/emmo#EMMO_30e3edb5_0977_4b9b_9aed_5a4d16c1c07c", "ElementalMaterial": "https://w3id.org/emmo#EMMO_a086af15_a7c3_404c_b4ce_c8e4466f1b4b", "ElementalSubstance": "https://w3id.org/emmo#EMMO_436b11bd_1756_4821_9f14_c9ed6b67552e", "ElementaryBoson": "https://w3id.org/emmo#EMMO_cafd0f10_ce85_48b9_9a36_2b0af141ce21", @@ -2192,11 +2192,12 @@ "ISQBaseQuantity": "https://w3id.org/emmo#EMMO_1a4c1a97_88a7_4d8e_b2f9_2ca58e92dde4", "ISQDerivedQuantity": "https://w3id.org/emmo#EMMO_2946d40b_24a1_47fa_8176_e3f79bb45064", "ISQDimensionlessQuantity": "https://w3id.org/emmo#EMMO_a66427d1_9932_4363_9ec5_7d91f2bfda1e", - "IUPACName": "https://w3id.org/emmo#EMMO_16a3bd5c_75f0_42b3_b000_cb0d018f840e", + "IUPACName": "https://w3id.org/emmo#EMMO_f652e7d2_0b33_4d10_8d0f_2f70089982ba", "IUPACNomencalture": "https://w3id.org/emmo#EMMO_91a0635a_a89a_46de_8928_04a777d145c7", "Icon": "https://w3id.org/emmo#EMMO_d7788d1a_020d_4c78_85a1_13563fcec168", "Illuminance": "https://w3id.org/emmo#EMMO_b51fbd00_a857_4132_9711_0ef70e7bdd20", "IlluminanceTimeUnit": "https://w3id.org/emmo#EMMO_e467cc3f_676c_432e_b70e_19237d1bcc78", + "ImaginaryElectricImpedance": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626", "Impedimetry": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Impedimetry", "InChI": "https://w3id.org/emmo#EMMO_d74ed682_894f_46c5_87cb_167f60926965", "IncreasingPotentialPulses": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_77be01ef_49bd_4f2e_bec8_eec0894b8562", @@ -2288,7 +2289,7 @@ "IridiumSymbol": "https://w3id.org/emmo#EMMO_b8aab013_b729_51f1_bc14_5302e7f97cbe", "Iron": "https://w3id.org/emmo/domain/chemical-substance#substance_89fd13e8_8061_41da_83f4_634144116425", "IronAtom": "https://w3id.org/emmo#EMMO_a4839f08_1080_53bf_9cb3_101e20c2656b", - "IronBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_cc4e178c_bc1f_4502_b6c2_33f304ef6bab", + "IronBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_5e1136d3_df00_40f7_a4bc_8259341053a1", "IronDisulfide": "https://w3id.org/emmo/domain/chemical-substance#substance_c728b6b9_449a_45ff_b5ae_6b7968708f0d", "IronDisulfideElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d2726dd5_69f0_4cb1_bd3c_4c48813e57e7", "IronIIIHydroxide": "https://w3id.org/emmo/domain/chemical-substance#substance_323a2e39_d7d5_4802_884a_9aa41a280986", @@ -2556,6 +2557,7 @@ "LossFactor": "https://w3id.org/emmo#EMMO_c3796906_8063_47d4_92af_890ae08f25fa", "LowPressureCasting": "https://w3id.org/emmo#EMMO_8b2fd84c_8f51_4731_9bd7_830545e78b23", "LowerCriticalMagneticFluxDensity": "https://w3id.org/emmo#EMMO_fd4a6307_f9f7_4b54_b044_caa04e620232", + "LowerCurrentLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea", "LowerFrequencyLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_b66d6553_6136_4754_902a_707e414210c2", "LowerVoltageLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_534dd59c_904c_45d9_8550_ae9d2eb6bbc9", "Lumen": "https://w3id.org/emmo#Lumen", @@ -2608,7 +2610,7 @@ "MagnesiumTriflate": "https://w3id.org/emmo/domain/chemical-substance#substance_df24fad8_7ef0_4330_a3f2_c4d65d9a3be8", "MagnesiumTrifluoromethanesulfonyloxalatoborate": "https://w3id.org/emmo/domain/chemical-substance#substance_2b7473ba_9156_489a_880f_3a2f746cd104", "MagneticDipoleMoment": "https://w3id.org/emmo#EMMO_81e767f1_59b1_4d7a_bf69_17f322241831", - "MagneticDipoleMomentUnit": "https://w3id.org/emmo#EMMO_5073dc80_aec2_4a3b_8057_fababfcbfe11", + "MagneticDipoleMomentUnit": "https://w3id.org/emmo#EMMO_1c2226a9_22f0_40c8_8928_5a01d398f96e", "MagneticFieldStrength": "https://w3id.org/emmo#EMMO_b4895f75_41c8_4fd9_b6d6_4d5f7c99c423", "MagneticFieldStrengthUnit": "https://w3id.org/emmo#EMMO_e6b83139_ba92_4fbd_a8b2_c8dde55844a1", "MagneticFlux": "https://w3id.org/emmo#EMMO_3b931698_937e_49be_ab1b_36fa52d91181", @@ -2676,7 +2678,7 @@ "MassExcess": "https://w3id.org/emmo#EMMO_7dd84949_0afa_4313_9b89_7bb0dd2e7771", "MassFlow": "https://w3id.org/emmo#EMMO_6d61ee3c_c5b6_4452_bc11_e9c33af992a7", "MassFluxUnit": "https://w3id.org/emmo#EMMO_e35d4936_b2e3_4cd6_a437_f1c864b3d450", - "MassFraction": "https://w3id.org/emmo/disciplines/units/coherentsiunits#EMMO_089f13b1_ceb3_4d2a_8795_b4a2d92916da", + "MassFraction": "https://w3id.org/emmo#EMMO_7c055d65_2929_40e1_af4f_4bf10995ad50", "MassFractionOfDryMatter": "https://w3id.org/emmo#EMMO_8f171308_f902_42c5_ac1d_d5259022e9c1", "MassFractionOfWater": "https://w3id.org/emmo#EMMO_cac16ce6_2cef_405d_ac63_0f918db4875e", "MassFractionUnit": "https://w3id.org/emmo#EMMO_18448443_dcf1_49b8_a321_cf46e2c393e1", @@ -3027,6 +3029,7 @@ "NobeliumAtom": "https://w3id.org/emmo#EMMO_49eb0790_50c2_5691_a8bf_dfa6f4a9f6c7", "NobeliumSymbol": "https://w3id.org/emmo#EMMO_c1bb775c_0888_5b88_9cce_c49bae1d298b", "NobleGasElementalSubstance": "https://w3id.org/emmo/domain/chemical-substance#substance_cac14194_2d5f_4fe6_b794_a9319f6d76ee", + "NominalCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100", "NominalProperty": "https://w3id.org/emmo#EMMO_909415d1_7c43_4d5e_bbeb_7e1910159f66", "NominalVoltage": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_639b844a_e801_436b_985d_28926129ead6", "NonActivePower": "https://w3id.org/emmo#EMMO_83318add_d05e_40fc_93ea_c6cd605df437", @@ -3061,6 +3064,7 @@ "NumberOfFiniteVolumeCellsInX": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_e73586eb_8475_4879_a43e_087c702ea6bf", "NumberOfFiniteVolumeCellsInY": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_c2a85d02_c6b4_42df_b5ed_a9904ec34a5c", "NumberOfFiniteVolumeCellsInZ": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a5e00e3a_736c_4200_8d04_ed222fe07037", + "NumberOfIterations": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_88dd2bce_fb17_4705_905d_892681812290", "NumberOfTurnsInAWinding": "https://w3id.org/emmo#EMMO_eefaa0ef_e7d4_4633_bf79_655bb55f4a49", "Numeral": "https://w3id.org/emmo#EMMO_74b05aed_66bf_43c8_aa2c_752a9ca8be03", "Numerical": "https://w3id.org/emmo#EMMO_4ce76d7f_03f8_45b6_9003_90052a79bfaa", @@ -3211,7 +3215,7 @@ "Permittivity": "https://w3id.org/emmo#EMMO_0ee5779e_d798_4ee5_9bfe_c392d5bea112", "PermittivityUnit": "https://w3id.org/emmo#EMMO_5f89cb0c_3171_47ee_b2ab_027a07c34c4b", "Persistence": "https://w3id.org/emmo#EMMO_e04884d9_eda6_487e_93d5_7722d7eda96b", - "Person": "http://xmlns.com/foaf/0.1/Person", + "Person": "https://schema.org/Person", "Perspective": "https://w3id.org/emmo#EMMO_49267eba_5548_4163_8f36_518d65b583f9", "Peta": "https://w3id.org/emmo#EMMO_d7c74480_a568_4470_acff_f18b499cc850", "PetaPrefixedUnit": "https://w3id.org/emmo#EMMO_43a6b269_da31_4bb6_a537_c97df4fff32a", @@ -3298,7 +3302,7 @@ "Porosity": "https://w3id.org/emmo#EMMO_3a6578ac_aee0_43b9_9bc6_1eb208c8c9a9", "PorousElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3663991d_9319_4f7a_922b_f0e428b58801", "PorousSeparator": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_58413d4e_2885_459e_ac06_8d45e661cf91", - "PositionVector": "https://w3id.org/emmo#EMMO_4312cae4_03ba_457e_b35d_0671a7db350c", + "PositionVector": "https://w3id.org/emmo#EMMO_44da6d75_54a4_4aa8_bd3a_156f6e9abb8e", "PositiveElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_aff732a9_238a_4734_977c_b2ba202af126", "PositiveTerminal": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_522f0c0b_cf33_4328_af71_12e38dae6798", "Positron": "https://w3id.org/emmo#EMMO_26a38b26_38ea_4acf_b212_db9e34c71b7a", @@ -3483,7 +3487,7 @@ "R54215": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_fc9e7ba3_5084_4c2a_b488_c6a96af99232", "R616": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_dc019f3f_e5f3_4eeb_bab9_a845a02223a0", "R621": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_15ec346a_6d3c_4161_95e1_9cf889965f85", - "R626": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_68c1c36e_1548_4247_bae2_fe7102a2c4ff", + "R626": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6b275583_433f_46f7_aafd_ebc9409257cc", "R712": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_bb2faf17_b819_4876_b17f_fa82917cf85d", "R716": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_34cb7ea7_2436_46e0_806e_a3c7835ae228", "R721": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3279f575_1c62_4bf2_a6e8_de4c7ff36f8e", @@ -3535,6 +3539,7 @@ "ReactivePower": "https://w3id.org/emmo#EMMO_d8030875_6d89_4645_9728_bbc3b8690609", "ReactorTimeConstant": "https://w3id.org/emmo#EMMO_b03dfad7_eab8_4949_9d10_dd4fd12faaef", "Real": "https://w3id.org/emmo#EMMO_18d180e4_5e3e_42f7_820c_e08951223486", + "RealElectricImpedance": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f", "ReciprocalAmountPerVolumeUnit": "https://w3id.org/emmo#EMMO_aef218f9_6ded_4db9_9263_e78eed55e5d6", "ReciprocalCentiMetre": "https://w3id.org/emmo#ReciprocalCentiMetre", "ReciprocalCubicCentiMetre": "https://w3id.org/emmo#ReciprocalCubicCentiMetre", @@ -3637,6 +3642,7 @@ "ResponseTimeAtAnISE": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_1a104474_c326_4a29_ac26_26a05ac8f72c", "RestEnergy": "https://w3id.org/emmo#EMMO_5117c5fe_f661_46f8_83c3_b48947f1532a", "RestMass": "https://w3id.org/emmo#EMMO_3c947caf_4070_4c79_a3a3_e53274ac9944", + "Resting": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b", "RestingTime": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_2678a656_4a27_4706_8dde_b0a93e9b92fa", "ReversibleHydrogenElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0d9ba00d_04bc_4bdc_85af_3380694f6f68", "RevolutionPerMinute": "https://w3id.org/emmo#RevolutionPerMinute", @@ -3790,7 +3796,7 @@ "SiemensSquareMetrePerMole": "https://w3id.org/emmo#SiemensSquareMetrePerMole", "Sievert": "https://w3id.org/emmo#Sievert", "Sign": "https://w3id.org/emmo#EMMO_b21a56ed_f969_4612_a6ec_cb7766f7f31d", - "Signal": "https://w3id.org/emmo/domain/chameo#Signal", + "Signal": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Signal", "SignalReferencePotential": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_68059d94_4c21_4065_b329_07faeebc7e87", "Silicon": "https://w3id.org/emmo/domain/chemical-substance#substance_68c0876b_cb62_41cd_846d_95cc9d9a8733", "SiliconAtom": "https://w3id.org/emmo#EMMO_798b0c96_82ca_5ce8_8d5f_f9f72668cf5d", @@ -4318,6 +4324,7 @@ "UpQuark": "https://w3id.org/emmo#EMMO_0a3f04a6_ba3a_49d9_99da_08b0e26f51f0", "UpQuarkType": "https://w3id.org/emmo#EMMO_fc47b76f_ad01_4cd0_8fc6_55532000e7c8", "UpperCriticalMagneticFluxDensity": "https://w3id.org/emmo#EMMO_6bfe6ad2_96ba_4478_81e5_d8881c550757", + "UpperCurrentLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45", "UpperFrequencyLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_666f0b69_9c74_49a3_80b3_96a188332462", "UpperVoltageLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6dcd5baf_58cd_43f5_a692_51508e036c88", "UraniumAtom": "https://w3id.org/emmo#EMMO_b233f8c0_37d8_51ae_9264_560e6649e246", diff --git a/versions/0.4.0/electrochemicalquantities.ttl b/versions/0.4.0/electrochemicalquantities.ttl index 882a543..96cb275 100644 --- a/versions/0.4.0/electrochemicalquantities.ttl +++ b/versions/0.4.0/electrochemicalquantities.ttl @@ -24,8 +24,6 @@ emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f a owl:AnnotationProperty . emmo:EMMO_5c78b424_087b_4e31_8c91_6422f1be1e86 owl:equivalentClass :electrochemistry_9c657fdc_b9d3_4964_907c_f9a6e8c5f52b . -emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 :electrochemistry_097ea615_c209_4edd_a1a1_5eea71d98fe8 "acimp/ohms"@en . - emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry_37b24a94_cae0_4d7a_9519_9f7692dec607 ; skos:altLabel "MassDiffusivity"@en ; emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q604008"@en ; @@ -101,6 +99,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "D40ParticleSize"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 40% of the sample's particles fall."@en . +:electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626 a owl:Class ; + rdfs:label "ImaginaryElectricImpedance"@en ; + rdfs:comment "the imaginary part of the complex electric impedance"@en ; + rdfs:subClassOf emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 ; + skos:prefLabel "ImaginaryElectricImpedance"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the imaginary part of the complex electric impedance"@en . + :electrochemistry_02d2d1d1_241c_429b_b4e7_31f2c3dc4835 a owl:Class ; rdfs:label "D95ParticleSize"@en ; rdfs:comment "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 95% of the sample's particles fall."@en ; @@ -381,6 +386,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "D50ParticleSize"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 50% of the sample's particles fall."@en . +:electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45 a owl:Class ; + rdfs:label "UpperCurrentLimit"@en ; + rdfs:comment "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en ; + rdfs:subClassOf :electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 ; + skos:prefLabel "UpperCurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + :electrochemistry_3e54f9e3_a31d_4821_9bfb_ef953a42c35b a owl:Class ; rdfs:label "MaximumPulseDischargingCurrent"@en ; rdfs:comment "the maximum current approved for pulse discharge of an electrochemical device"@en ; @@ -608,6 +620,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "ChargingCurrent"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electric current applied to an electrochemical device during a charging process"@en . +:electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea a owl:Class ; + rdfs:label "LowerCurrentLimit"@en ; + rdfs:comment "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en ; + rdfs:subClassOf :electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 ; + skos:prefLabel "LowerCurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + :electrochemistry_7f073272_8925_4344_995c_a5a6dd1fcde6 a owl:Class ; rdfs:label "ChargingConstantCurrentPercentage"@en ; rdfs:comment "the percentage of the total charge capacity that is obtained during a constant current charge process"@en ; @@ -705,6 +724,20 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "DischargingSpecificCapacity"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "quotient of the capacity of a cell or battery [ or electrode or active material ] obtained during a discharge process by its mass."@en . +:electrochemistry_88dd2bce_fb17_4705_905d_892681812290 a owl:Class ; + rdfs:label "NumberOfIterations"@en ; + rdfs:comment "the number of times an iterative process should occur"@en ; + rdfs:subClassOf emmo:EMMO_ba882f34_0d71_4e4f_9d92_0c076c633a2c ; + skos:prefLabel "NumberOfIterations"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the number of times an iterative process should occur"@en . + +:electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100 a owl:Class ; + rdfs:label "NominalCapacity"@en ; + rdfs:comment "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en ; + rdfs:subClassOf :electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 ; + skos:prefLabel "NominalCapacity"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en . + :electrochemistry_8e943e12_ecc0_4093_899e_7226be6be7f2 a owl:Class ; rdfs:label "D90ParticleSize"@en ; rdfs:comment "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 90% of the sample's particles fall."@en ; @@ -820,6 +853,15 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the celsius temperature of the ambient environment"@en ; :electrochemistry_1b717a20_17e3_4480_8c60_c4ae94058f05 "Environmental_Temperature (C)"@en . +:electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f a owl:Class ; + rdfs:label "RealElectricImpedance"@en ; + rdfs:comment "the imaginary part of the complex electric impedance"@en ; + rdfs:subClassOf emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 ; + skos:altLabel "ACResistance"@en ; + skos:prefLabel "RealElectricImpedance"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q1048490"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the imaginary part of the complex electric impedance"@en . + :electrochemistry_ae108db7_8765_4329_9908_059277dee586 a owl:Class ; rdfs:label "StepCapacity"@en ; rdfs:comment "the amount of charge that has passed through an electrochemical device within the time interval of a given testing step"@en ; @@ -1084,8 +1126,8 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry ; dcterms:license "https://creativecommons.org/licenses/by/4.0/legalcode" ; owl:imports ; - owl:versionIRI ; - owl:versionInfo "0.17.0-beta" . + owl:versionIRI ; + owl:versionInfo "0.18.0-beta" . a owl:NamedIndividual, foaf:Person ; @@ -1866,6 +1908,8 @@ In either case, the magnitude of the catalytic current depends on the applied po emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electric potential of an ion-selective electrode (ISE) and activity of an analyte ion at which the potential of the ISE is independent of temperature"@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1351/goldbook.I03304"@en . +emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 :electrochemistry_097ea615_c209_4edd_a1a1_5eea71d98fe8 "acimp/ohms"@en . + emmo:EMMO_e218c625_6a39_47a9_8d08_a2ef41c152a9 rdfs:subClassOf :electrochemistry_02eb0465_4f94_453c_8c1f_5ddf80134634 ; skos:altLabel "GravimetricEnergyDensity"@en ; :electrochemistry_811aafc3_0c6d_470e_b67e_ff5c82992609 "CmpEng(mWh/g)"@en . @@ -1997,14 +2041,6 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog skos:prefLabel "TemperatureLimit"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the temperature of a system"@en . -:electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 a owl:Class ; - rdfs:label "RatedCapacity"@en ; - rdfs:comment "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en ; - rdfs:subClassOf :electrochemistry_791c1915_a791_4450_acd8_7f94764743b5 ; - skos:prefLabel "RatedCapacity"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-03-15"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en . - :electrochemistry_9ed7210c_c4fa_467b_822d_ba12f885bdf4 a owl:Class ; rdfs:label "ConcentrationOverpotential"@en ; rdfs:comment "The concentration overpotential of an electrode reaction at a given electrode current density (c.d.) is basically the difference in equilibrium potentials across the diffusion layer. More precisely, it is the potential of a reference electrode (of the same electrode reaction as the working electrode ) with the interfacial concentrations which establish themselves at c.d., relative to the potential of a similar reference electrode with the concentrations of the bulk solution. From such a measured potential difference, with c.d. flowing, one needs to subtract the ohmic potential drop prevailing between the two electrodes."@en, @@ -2110,6 +2146,14 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog skos:prefLabel "NumberOfFiniteVolumeCells"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "number of discrete finite volume cells in a grid or sub-grid"@en . +:electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 a owl:Class ; + rdfs:label "RatedCapacity"@en ; + rdfs:comment "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en ; + rdfs:subClassOf :electrochemistry_791c1915_a791_4450_acd8_7f94764743b5 ; + skos:prefLabel "RatedCapacity"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-03-15"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en . + :electrochemistry_cc519a19_b8d5_4e3f_b893_3a884888ad79 a owl:Class ; rdfs:label "MaximumTemperature"@en ; rdfs:comment "the maximum allowable temperature"@en ; @@ -2186,14 +2230,6 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa :electrochemistry_a07dd85b_d0df_4d5d_8b0c_14d20ea3fe45 "current"@en ; :electrochemistry_ea9f4dba_8ca2_419e_9cdf_ce54e9ebbd46 "Current (A)"@en . -:electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 a owl:Class ; - rdfs:label "CurrentLimit"@en ; - rdfs:comment "limit on the electric current of an electrical system"@en ; - rdfs:subClassOf emmo:EMMO_c995ae70_3b84_4ebb_bcfc_69e6a281bb88, - :electrochemistry_b395a244_3a75_4737_be38_981bfa1277fe ; - skos:prefLabel "CurrentLimit"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the electric current of an electrical system"@en . - :electrochemistry_900e357f_2ee3_425a_a0b6_322661117787 a owl:Class ; rdfs:label "ElectrochemicalProperty"@en ; rdfs:subClassOf emmo:EMMO_909415d1_7c43_4d5e_bbeb_7e1910159f66 ; @@ -2292,6 +2328,14 @@ foaf:Person a owl:Class ; emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Faradaic_current"@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://goldbook.iupac.org/terms/view/F02321"@en . +:electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 a owl:Class ; + rdfs:label "CurrentLimit"@en ; + rdfs:comment "limit on the electric current of an electrical system"@en ; + rdfs:subClassOf emmo:EMMO_c995ae70_3b84_4ebb_bcfc_69e6a281bb88, + :electrochemistry_b395a244_3a75_4737_be38_981bfa1277fe ; + skos:prefLabel "CurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the electric current of an electrical system"@en . + :electrochemistry_1cd1d777_e67b_47eb_81f1_edac35d9f2c6 a owl:Class ; rdfs:label "Overpotential"@en ; rdfs:comment "difference between the electrode potential with current flow, and the electrode potential without current flow, i.e. the equilibrium potential"@en, diff --git a/versions/0.4.0/electrochemistry-inferred.ttl b/versions/0.4.0/electrochemistry-inferred.ttl index f4fa0f9..c704a22 100644 --- a/versions/0.4.0/electrochemistry-inferred.ttl +++ b/versions/0.4.0/electrochemistry-inferred.ttl @@ -7,7 +7,7 @@ @base . rdf:type owl:Ontology ; - owl:versionIRI ; + owl:versionIRI ; ""@en , "CHAMEO is a domain ontology designed to model the common aspects across the different characterisation techniques and methodologies."@en , """Defines physical quantities in the International System of Quantities (ISQ). ISQ was made an official ISO standard in 2009 and is defined in the ISO/IEC 80000 standard. @@ -146,12 +146,12 @@ The symbolic module includes symbols, symbolic constructs and formal languages." "https://w3id.org/emmo/domain/characterisation-methodology/chameo" ; "2024-04-12" , "2024-06-23"^^xsd:date , - "2024-07-03"^^xsd:date ; + "2024-07-05"^^xsd:date ; "https://creativecommons.org/licenses/by/4.0/legalcode" , "https://creativecommons.org/licenses/by/4.0/legalcode"@en ; "2024-04-12" , "2024-06-23"^^xsd:date , - "2024-07-03"^^xsd:date ; + "2024-07-05"^^xsd:date ; "EMMC ASBL" , "EMMC ASBL"@en , """EMMC ASBL @@ -241,11 +241,11 @@ We kindly acknowledge NIST for reusing their content, including the selection of "You can contact EMMO Authors via emmo@emmc.eu"@en ; owl:backwardCompatibleWith "" , " " , - "0.16.0-beta" ; - owl:priorVersion "0.16.0-beta" , + "0.17.0-beta" ; + owl:priorVersion "0.17.0-beta" , "0.5.0-beta" , "1.0.0-beta2" ; - owl:versionInfo "0.17.0-beta" , + owl:versionInfo "0.18.0-beta" , "0.6.0-beta" , "1.0.0-beta3" , "1.0.0-beta7" ; @@ -2333,7 +2333,7 @@ While the EMMO FOL introduces the quantum causality relation C(x,y) as primitive rdf:type owl:ObjectProperty ; rdfs:subPropertyOf ; rdfs:domain ; - rdfs:range ; + rdfs:range ; "hasSolvent"@en . @@ -2364,7 +2364,7 @@ While the EMMO FOL introduces the quantum causality relation C(x,y) as primitive rdf:type owl:ObjectProperty ; rdfs:subPropertyOf ; rdfs:domain ; - rdfs:range ; + rdfs:range ; "hasSolute"@en . @@ -34532,7 +34532,7 @@ Wikipedia"""@en ; , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "ZincElectrode"@en ; "an electrode in which the main active material is zinc metal"@en ; @@ -34555,7 +34555,7 @@ Wikipedia"""@en ; rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "LithiumElectrode"@en ; "an electrode in which the active material is lithium metal" . @@ -44391,164 +44391,11 @@ Wear is defined as the progressive removal of the material from a solid surface "InChI=1S/Pb" . -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0139937b_2724_4864_84fb_f14bcfb83538 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0bdf0bb9_41fc_455d_af11_a249e24acdf6 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0f2f65a7_5cc4_4c86_a4d0_676771c646f1 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_250fa43e_1f26_4ed8_b787_91a2325a8e7b - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_25f6ff4c_53ad_4837_97c4_aa6f06099bb5 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_2a540939_3908_4f85_92f9_c46da7d4e9cb - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_2a87ca10_fc6a_4d61_b48c_d9790a566ee3 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_3899a9c9_9b34_443e_8ce6_0257589bb38a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_3ac62305_acd6_4312_9e31_4f824bd2530d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_4126ee09_b9c6_4694_bf33_0d8970e05f72 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_4c62d334_a124_40b3_9fd1_fe713d01a6af - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_5088ad54_b37d_4ee1_a086_d6c17e644f9a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_5cee19d2_f916_4264_a8ed_efed13a808d2 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_68c0876b_cb62_41cd_846d_95cc9d9a8733 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_68f9b85e_340f_46ec_96da_ebb6bd62f5fd - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_73d4606c_7460_4a5c_9413_793bdf35753e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_7dc738d6_74f2_489e_ae84_a6dbdf627f2e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_848003a2_71ee_4967_8039_354c907ec7f4 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_97439fbb_155f_433d_9edd_d510cd491f24 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_9bd78e1c_a4dc_41b6_8013_adb51df1ffdc - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_9da78aea_d436_40e2_a68f_c3dee32b825e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_aa8e9cc4_5f66_4307_b1c8_26fac7653a90 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_acdb232f_8041_4e11_8a11_5db2d2baae4d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_b01771a9_218a_4b01_b20f_4021cfa0b7d5 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_b3815a7f_f64a_48f6_b0ce_d0032578c699 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c109ca45_08c7_4436_a818_a9c575785e2f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c28a0967_ed23_48cc_a14e_a651d75a19db - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c5582dae_ccff_4fbe_adaa_078091054640 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c728b6b9_449a_45ff_b5ae_6b7968708f0d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_cd17ca33_ae3d_4738_8930_547673bf6c1f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_cdd18f0c_e7b3_4d09_b3dd_c09fe4b1adba - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_d53259a7_0d9c_48b9_a6c1_4418169df303 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_d673ceb2_3045_4e2e_8cad_56f5169b542f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_db74b6b7_09fc_40db_a7d5_6eb86b69192a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_dc5fb846_1824_40f8_9834_81f118aa1c2d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_dcdbdbed_2e20_40d1_a7a5_5761de7f0618 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_e1e6ff98_0725_4d27_ab21_2ca5a95371f0 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_e8fafdc8_6cd3_4dd0_9630_10ca8e3f1827 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_f3e7979a_e3ef_450a_8762_7d8778afe478 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_f7525766_90cf_43e9_8932_7cb3b14f676f - rdf:type owl:Class . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626 + rdf:type owl:Class ; + rdfs:subClassOf ; + "ImaginaryElectricImpedance"@en ; + "the imaginary part of the complex electric impedance"@en . ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_01260656_ac32_472e_9513_a607366538ec @@ -44872,11 +44719,11 @@ Wear is defined as the progressive removal of the material from a solid surface rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCLCOElectrode"@en ; @@ -45639,7 +45486,7 @@ and t* through mathematical models, provided that the long-time potential- deter , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LFPElectrode"@en ; @@ -46241,7 +46088,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "PtElectrode"@en ; "PlatinumElectrode"@en ; @@ -46343,7 +46190,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SiliconOxideGraphiteElectrode"@en ; @@ -46477,7 +46324,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "FTOElectrode"@en ; @@ -46500,7 +46347,7 @@ Aluminum foil"""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "NiOOHElectrode"@en , "NickelOxyhydroxideElectrode"@en ; @@ -46544,6 +46391,14 @@ Aluminum foil"""@en . "a coin case with a nominal diameter of 7.9 mm and a height of 1.65 mm"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b + rdf:type owl:Class ; + rdfs:subClassOf , + ; + "Resting"@en ; + "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 rdf:type owl:Class ; rdfs:subClassOf ; @@ -46811,6 +46666,13 @@ Aluminum foil"""@en . "A material relation in electrochemistry."@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45 + rdf:type owl:Class ; + rdfs:subClassOf ; + "UpperCurrentLimit"@en ; + "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3e54f9e3_a31d_4821_9bfb_ef953a42c35b rdf:type owl:Class ; rdfs:subClassOf , @@ -46981,7 +46843,7 @@ Aluminum foil"""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNMOElectrode"@en ; @@ -47201,11 +47063,11 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCLMOElectrode"@en ; @@ -47294,7 +47156,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumNickelPhosphateElectrode"@en ; @@ -47549,7 +47411,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumIronPhosphateElectrode"@en ; @@ -47904,7 +47766,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "CarbonMonofluorideElectrode"@en ; "electrode in which the active material is carbon monofluoride"@en ; @@ -48131,7 +47993,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "HardCarbonElectrode"@en ; "electrode in which the active material is hard carbon"@en . @@ -48291,7 +48153,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "SAE"@en ; "SolidAmalgamElectrode"@en ; @@ -48426,7 +48288,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LTOElectrode"@en ; @@ -48518,20 +48380,13 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ] . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "system that consists of at least two electron conductors (electrodes) in contact with ionic conductors (electrolytes)"@en ; - "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6fec8cc1_4e6c_428e_8343_6cf3c286a185 rdf:type owl:Class ; rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "AuElectrode"@en ; "GoldElectrode"@en ; @@ -48691,7 +48546,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NiOElectrode"@en ; @@ -48721,7 +48576,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "TiO2Electrode"@en ; @@ -48915,13 +48770,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ] . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "in secondary cells, the active material is restored to its original state during charge"@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - [ rdf:type owl:Axiom ; owl:annotatedSource ; owl:annotatedProperty ; @@ -48965,6 +48813,13 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s "an electrode in which the primary active material consists of caesium or caesium compounds"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea + rdf:type owl:Class ; + rdfs:subClassOf ; + "LowerCurrentLimit"@en ; + "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7f073272_8925_4344_995c_a5a6dd1fcde6 rdf:type owl:Class ; rdfs:subClassOf ; @@ -49118,7 +48973,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "LiquidGalliumElectrode"@en ; "a liquid electrode with an active material of gallium"@en . @@ -49188,7 +49043,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "ZnOElectrode"@en ; @@ -49446,6 +49301,13 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "an electrode in which the primary active material consists of sulfur or sulfur compounds"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_88dd2bce_fb17_4705_905d_892681812290 + rdf:type owl:Class ; + rdfs:subClassOf ; + "NumberOfIterations"@en ; + "the number of times an iterative process should occur"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8968eb7a_9a65_4286_a596_c31b998df329 rdf:type owl:Class ; rdfs:subClassOf ; @@ -49504,6 +49366,13 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "substance that increases chemical reaction speed, and which is conserved after the reaction"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100 + rdf:type owl:Class ; + rdfs:subClassOf ; + "NominalCapacity"@en ; + "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8b40856f_1ca2_4137_9616_7fb624671909 rdf:type owl:Class ; rdfs:subClassOf , @@ -50109,7 +49978,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumCobaltPhosphateElectrode"@en ; @@ -50298,13 +50167,6 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; "plate in which the active material is applied as a paste to a conductive current collector"@en . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "plate in which the active material is applied as a paste to a conductive current collector"@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a24f8581_a5a4_41a4_bb45_d0fdd5c0d810 rdf:type owl:Class ; @@ -50397,7 +50259,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "SilverOxideElectrode"@en ; "an electrode in which the primary active material consists of manganese dioxide or vmanganese dioxide compounds"@en ; @@ -50427,7 +50289,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "AgElectrode"@en ; "SilverElectrode"@en ; @@ -50662,7 +50524,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "CupricOxideElectrode"@en ; "CopperOxideElectrode"@en ; @@ -50751,6 +50613,15 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "Environmental_Temperature (C)"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f + rdf:type owl:Class ; + rdfs:subClassOf ; + "ACResistance"@en ; + "RealElectricImpedance"@en ; + "https://www.wikidata.org/wiki/Q1048490"@en ; + "the imaginary part of the complex electric impedance"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abfadc99_6e43_4d37_9b04_7fc5b0f327ae rdf:type owl:Class ; rdfs:subClassOf , @@ -50782,7 +50653,8 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e rdf:type owl:Class ; rdfs:subClassOf ; - "CCCVCycling"@en ; + "CCCVCycling"@en ; + "ConstantCurrentConstantVoltageCycling"@en ; "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en . @@ -51030,7 +50902,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCElectrode"@en ; @@ -51360,11 +51232,11 @@ of other configurations are used."""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNMOLFPElectrode"@en ; @@ -51466,13 +51338,6 @@ of other configurations are used."""@en . "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; "https://en.wikipedia.org/wiki/Fuel_cell"@en . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_bea04148_10d9_4eda_9cd5_8f609d7e9ff8 rdf:type owl:Class ; @@ -51568,7 +51433,7 @@ of other configurations are used."""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LMOElectrode"@en ; @@ -51751,11 +51616,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "ITO"@en ; @@ -51809,7 +51674,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "GraphiteElectrode"@en ; "electrode in which the active material is graphite"@en . @@ -51928,7 +51793,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "MnO2Electrode"@en ; "ManganeseDioxideElectrode"@en ; @@ -51943,7 +51808,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNOElectrode"@en ; @@ -51963,7 +51828,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "IrO2Electrode"@en ; @@ -51977,7 +51842,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumManganesePhosphateElectrode"@en ; @@ -52146,7 +52011,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "IronDisulfideElectrode"@en ; "an electrode in which the primary active material consists of iron disulfide or iron disulfide compounds."@en ; @@ -52509,7 +52374,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "HgElectrode"@en ; "MercuryElectrode"@en ; @@ -52785,11 +52650,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SiliconGraphiteElectrode"@en ; @@ -52802,7 +52667,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumManganeseOxideElectrode"@en ; @@ -53004,7 +52869,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumCobaltOxideElectrode"@en ; @@ -53096,7 +52961,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NCAElectrode"@en ; @@ -53315,7 +53180,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "PbOElectrode"@en ; @@ -53401,7 +53266,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumChromiumOxideElectrode"@en ; @@ -53621,7 +53486,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LCOElectrode"@en ; @@ -53672,11 +53537,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LMOLFPElectrode"@en ; @@ -53808,10 +53673,10 @@ In either case, the magnitude of the catalytic current depends on the applied po "The universe is considered as a causally self-connected object, encompassing all other objects. For this reason is unique."@en . -[ owl:qualifiedCardinality "3"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "3"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "4"^^xsd:nonNegativeInteger @@ -53835,10 +53700,10 @@ In either case, the magnitude of the catalytic current depends on the applied po [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:minQualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:minQualifiedCardinality "2"^^xsd:nonNegativeInteger +[ owl:minQualifiedCardinality "1"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger @@ -53850,7 +53715,7 @@ In either case, the magnitude of the catalytic current depends on the applied po [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:minQualifiedCardinality "2"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger diff --git a/versions/0.4.0/electrochemistry.ttl b/versions/0.4.0/electrochemistry.ttl index baa1206..d442e3c 100644 --- a/versions/0.4.0/electrochemistry.ttl +++ b/versions/0.4.0/electrochemistry.ttl @@ -1,6 +1,6 @@ @prefix : . @prefix bibo: . -@prefix chemsub: . +@prefix chemsub: . @prefix dcterms: . @prefix emmo: . @prefix foaf: . @@ -54,9 +54,9 @@ schema:name a owl:AnnotationProperty . dcterms:created "2022-11-25"^^xsd:date ; dcterms:creator , ; - dcterms:issued "2024-07-03"^^xsd:date ; + dcterms:issued "2024-07-05"^^xsd:date ; dcterms:license "https://creativecommons.org/licenses/by/4.0/legalcode" ; - dcterms:modified "2024-07-03"^^xsd:date ; + dcterms:modified "2024-07-05"^^xsd:date ; dcterms:publisher "EMMO" ; dcterms:source , , @@ -67,13 +67,13 @@ schema:name a owl:AnnotationProperty . bibo:status "unstable" ; vann:preferredNamespacePrefix "echem" ; vann:preferredNamespaceUri "https://w3id.org/emmo/domain/electrochemistry" ; - owl:backwardCompatibleWith "0.16.0-beta" ; + owl:backwardCompatibleWith "0.17.0-beta" ; owl:imports , , - ; - owl:priorVersion "0.16.0-beta" ; - owl:versionIRI ; - owl:versionInfo "0.17.0-beta" ; + ; + owl:priorVersion "0.17.0-beta" ; + owl:versionIRI ; + owl:versionInfo "0.18.0-beta" ; foaf:logo "https://raw.githubusercontent.com/emmo-repo/domain-electrochemistry/gh-pages/assets/img/fig/png/domain-electrochemistry-logo.png" . :electrochemistry_027d437e_3bbf_4eda_940b_e509f8d2b993 a owl:Class ; @@ -535,6 +535,14 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "R716" ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a coin case with a nominal diameter of 7.9 mm and a height of 1.65 mm"@en . +:electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b a owl:Class ; + rdfs:label "Resting"@en ; + rdfs:comment "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en ; + rdfs:subClassOf , + :electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 ; + skos:prefLabel "Resting"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en . + :electrochemistry_36444184_1100_4271_869f_7f2d983aaecb a owl:Class ; rdfs:label "P45173115" ; rdfs:comment "a prismatic case with a nominal length of 45 mm, width of 173 mm, and height of 115 mm"@en ; @@ -1564,6 +1572,15 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "TinBasedElectrode"@en ; emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "an electrode in which the primary active material consists of tin or tin compounds"@en . +:electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c a owl:Class ; + rdfs:label "PastedPlate"@en ; + rdfs:comment "plate in which the active material is applied as a paste to a conductive current collector"@en ; + rdfs:subClassOf :electrochemistry_92147e31_d015_4889_a092_04fbab033f15 ; + skos:altLabel "PastedElectrode"@en ; + skos:prefLabel "PastedPlate"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "plate in which the active material is applied as a paste to a conductive current collector"@en . + :electrochemistry_a277e420_2483_44d5_a2bc_4e421dea231a a owl:Class ; rdfs:label "R926" ; rdfs:comment "a coin case with a nominal diameter of 9.5 mm and a height of 2.6 mm"@en ; @@ -1658,10 +1675,11 @@ schema:name a owl:AnnotationProperty . emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a coin case with a nominal diameter of 11.6 mm and a height of 4.2 mm"@en . :electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e a owl:Class ; - rdfs:label "CCCVCycling"@en ; + rdfs:label "ConstantCurrentConstantVoltageCycling"@en ; rdfs:comment "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en ; rdfs:subClassOf :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; - skos:prefLabel "CCCVCycling"@en ; + skos:altLabel "CCCVCycling"@en ; + skos:prefLabel "ConstantCurrentConstantVoltageCycling"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en . :electrochemistry_ad9cdad6_66e8_471e_a7c6_b79f37c20814 a owl:Class ; @@ -1783,6 +1801,17 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "P20100141" ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a prismatic case with a nominal length of 20 mm, width of 100 mm, and height of 141 mm"@en . +:electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d a owl:Class ; + rdfs:label "FuelCell"@en ; + rdfs:comment "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; + rdfs:subClassOf :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; + skos:prefLabel "FuelCell"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q180253"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-05"@en ; + emmo:EMMO_6dd685dd_1895_46e4_b227_be9f7d643c25 "https://dbpedia.org/page/Fuel_cell"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; + emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Fuel_cell"@en . + :electrochemistry_bea04148_10d9_4eda_9cd5_8f609d7e9ff8 a owl:Class ; rdfs:label "CelsiusTemperatureMeasurement"@en ; rdfs:comment "measurement of temperature"@en ; @@ -3335,15 +3364,6 @@ schema:name a owl:AnnotationProperty . "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-26"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "interface between an electrolyte and an electrode where an electrode reaction takes place."@en . -:electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c a owl:Class ; - rdfs:label "PastedPlate"@en ; - rdfs:comment "plate in which the active material is applied as a paste to a conductive current collector"@en ; - rdfs:subClassOf :electrochemistry_92147e31_d015_4889_a092_04fbab033f15 ; - skos:altLabel "PastedElectrode"@en ; - skos:prefLabel "PastedPlate"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "plate in which the active material is applied as a paste to a conductive current collector"@en . - :electrochemistry_a462859d_d8bd_48ea_8bde_1576f1248a1e a owl:Class ; rdfs:label "SilverElectrode"@en ; rdfs:comment "electrode in the form of foil, mesh, wire, rod, tube, powder, pellets, or single crystal of silver"@en ; @@ -3459,17 +3479,6 @@ of other configurations are used."""@en . emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-19"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "part which insures insulation between the plate (electrode) edges and adjacent plates (electrodes) and the container side walls"@en . -:electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d a owl:Class ; - rdfs:label "FuelCell"@en ; - rdfs:comment "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - rdfs:subClassOf :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; - skos:prefLabel "FuelCell"@en ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q180253"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-05"@en ; - emmo:EMMO_6dd685dd_1895_46e4_b227_be9f7d643c25 "https://dbpedia.org/page/Fuel_cell"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Fuel_cell"@en . - :electrochemistry_bed5b5f9_b89d_45e3_a8c2_81b70ae21847 a owl:Class ; rdfs:label "SeriesParallelConnection"@en ; rdfs:comment "arrangement of cells or batteries wherein in series connected cells or batteries are connected in parallel."@en ; @@ -4518,15 +4527,20 @@ schema:Person a owl:Class ; skos:prefLabel "BimetallicOxideElectrode"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "an electrode consisting of two metal oxide active materials"@en . -:electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 a owl:Class ; - rdfs:label "GalvanostaticProcess"@en ; - rdfs:comment "a process in which the electric current is kept constant"@en ; - rdfs:subClassOf [ a owl:Restriction ; - owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; - owl:someValuesFrom :electrochemistry_22725105_c941_4b14_a4a2_fcb627958607 ], - :electrochemistry_5548f188_df00_4c05_ae98_7846e92efe36 ; - skos:prefLabel "GalvanostaticProcess"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a process in which the electric current is kept constant"@en . +:electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 a owl:Class ; + rdfs:label "ActiveMaterial"@en ; + rdfs:comment "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; + rdfs:subClassOf :electrochemistry_b5ea31c9_bb10_4276_980e_c3eceb1efc82, + :electrochemistry_ebdb68e9_c4b5_4d57_a042_c0f51d446755 ; + skos:altLabel "ActiveElectrochemicalMaterial"@en, + "ElectrochemicallyActiveMaterial"@en ; + skos:prefLabel "ActiveMaterial"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q120907375" ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-33", + "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-14"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; + emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "material which reacts chemically to produce electric energy when the cell discharges", + "in secondary cells, the active material is restored to its original state during charge"@en . :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 a owl:Class ; rdfs:label "PotentiometricStrippingAnalysis"@en ; @@ -4601,20 +4615,15 @@ schema:Person a owl:Class ; "The electrode (or interfacial) reaction involves all the processes (chemical reaction, structural reorganization, adsorption) accompanying the charge transfer step."@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1351/goldbook.E01960"@en . -:electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 a owl:Class ; - rdfs:label "ActiveMaterial"@en ; - rdfs:comment "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; - rdfs:subClassOf :electrochemistry_b5ea31c9_bb10_4276_980e_c3eceb1efc82, - :electrochemistry_ebdb68e9_c4b5_4d57_a042_c0f51d446755 ; - skos:altLabel "ActiveElectrochemicalMaterial"@en, - "ElectrochemicallyActiveMaterial"@en ; - skos:prefLabel "ActiveMaterial"@en ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q120907375" ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-33", - "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-14"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "material which reacts chemically to produce electric energy when the cell discharges", - "in secondary cells, the active material is restored to its original state during charge"@en . +:electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 a owl:Class ; + rdfs:label "GalvanostaticProcess"@en ; + rdfs:comment "a process in which the electric current is kept constant"@en ; + rdfs:subClassOf [ a owl:Restriction ; + owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; + owl:someValuesFrom :electrochemistry_22725105_c941_4b14_a4a2_fcb627958607 ], + :electrochemistry_5548f188_df00_4c05_ae98_7846e92efe36 ; + skos:prefLabel "GalvanostaticProcess"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a process in which the electric current is kept constant"@en . :electrochemistry_8a1c9a7b_978c_4421_a9c1_d0b07b42aab9 a owl:Class ; rdfs:label "ChemicalReaction"@en ; @@ -4953,9 +4962,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "extremely resistant to many chemicals, impermeable to gases and liquids, and has good electrical conductivity, high hardness and strength, and biocompatibility"@en . + owl:annotatedTarget "electrode made of glassy carbon material with an intertwined graphitic ribbon structure, formed by pyrolysis of a resol precursor at temperatures up to 3000 °C"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -4976,28 +4985,22 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "A disc electrode that is embedded in the centre of a cylinder which rotates in solution around the longitudinal cylinder axis."@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "composite system in which the supplied electric energy mainly produces chemical reactions or, conversely, in which the energy released by chemical reactions is mainly delivered by the system as electric energy"@en . + owl:annotatedTarget "a system containing two electrodes that allow transport of electrons, separated by an electrolyte that allows movement of ions but blocks movement of electrons."@en . [] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "system that consists of at least two electron conductors (electrodes) in contact with ionic conductors (electrolytes)"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" . + owl:annotatedTarget "composite system in which the supplied electric energy mainly produces chemical reactions or, conversely, in which the energy released by chemical reactions is mainly delivered by the system as electric energy"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "glassy carbon combines glass-like mechanical characteristics with physical properties similar to graphite, owing to its “graphene ribbon” structure"@en . - -[] a owl:Axiom ; - dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "a system containing two electrodes that allow transport of electrons, separated by an electrolyte that allows movement of ions but blocks movement of electrons."@en . + owl:annotatedTarget "extremely resistant to many chemicals, impermeable to gases and liquids, and has good electrical conductivity, high hardness and strength, and biocompatibility"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5033,13 +5036,13 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "one of the most frequently used working electrodes"@en . + owl:annotatedTarget "glassy carbon combines glass-like mechanical characteristics with physical properties similar to graphite, owing to its “graphene ribbon” structure"@en . [] a owl:Axiom ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; - owl:annotatedTarget "in secondary cells, the active material is restored to its original state during charge"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedTarget "material that is oxidized or reduced at an electrode in an electrochemical cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5047,12 +5050,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; owl:annotatedTarget "material which reacts chemically to produce electric energy when the cell discharges" . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; - owl:annotatedTarget "material that is oxidized or reduced at an electrode in an electrochemical cell"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5061,9 +5058,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "electrode made of glassy carbon material with an intertwined graphitic ribbon structure, formed by pyrolysis of a resol precursor at temperatures up to 3000 °C"@en . + owl:annotatedTarget "one of the most frequently used working electrodes"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5083,18 +5080,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_83f2b1e9_cb67_4dbf_977f_ba54bbae374f ; owl:annotatedTarget "charge during which the electric current is maintained at a constant value regardless of the battery voltage or temperature"@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; - owl:annotatedTarget "Electrolyte solution in the anodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the anode is placed."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; owl:annotatedTarget "electrolyte on the anode side of an electrochemical cell that is divided into compartments"@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; + owl:annotatedTarget "Electrolyte solution in the anodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the anode is placed."@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5133,15 +5130,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_8d3bf304_78e4_4e99_abe1_6ab429e44ed1 ; - owl:annotatedTarget "a sealed cell may be equipped with a safety device to prevent a dangerously high internal pressure and is designed to operate during its life in its original sealed state"@en . + owl:annotatedTarget "cell which remains closed and does not release either gas or liquid when operated within the limits specified by the manufacturer"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_8d3bf304_78e4_4e99_abe1_6ab429e44ed1 ; - owl:annotatedTarget "cell which remains closed and does not release either gas or liquid when operated within the limits specified by the manufacturer"@en . + owl:annotatedTarget "a sealed cell may be equipped with a safety device to prevent a dangerously high internal pressure and is designed to operate during its life in its original sealed state"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5150,10 +5147,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "capacitor consisting of a metallic plate as first conductor, a very thin oxide film formed on the metal as the dielectric and an electrolyte as second conductor"@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_06d8e1ee_924a_4915_998d_33a69f41dadc ; - owl:annotatedTarget "operation during which an electrochemical cell supplies electric energy as the result of chemical changes within the cell"@en . + owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; + owl:annotatedTarget "two-step electrochemical measurement in which 1) material is accumulated at an electrode and 2) the material is removed by chemical reaction or electrochemically at constant current with measurement of electrode potential"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5161,6 +5158,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; owl:annotatedTarget "historically for the analysis of metal ions, mercury ions were added to the test solution to form a mercury amalgam when reduced. Alternatively, an HMDE or MFE was used and the oxidizing agent added after amalgam formation. However, the toxicity of mercury and its compounds have all but precluded the present-day use of mercury"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_06d8e1ee_924a_4915_998d_33a69f41dadc ; + owl:annotatedTarget "operation during which an electrochemical cell supplies electric energy as the result of chemical changes within the cell"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5179,12 +5182,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; owl:annotatedTarget "the time between changes in potential in step 2 is related to the concentration of analyte in the solution"@en . -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; - owl:annotatedTarget "two-step electrochemical measurement in which 1) material is accumulated at an electrode and 2) the material is removed by chemical reaction or electrochemically at constant current with measurement of electrode potential"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5211,15 +5208,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_9ee6e728_e8f5_4b36_a045_d63da69dfc85 ; - owl:annotatedTarget "overcharge is also the act of charging beyond a certain limit specified by the manufacturer"@en . + owl:annotatedTarget "continued charging of a fully charged secondary cell or battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_9ee6e728_e8f5_4b36_a045_d63da69dfc85 ; - owl:annotatedTarget "continued charging of a fully charged secondary cell or battery"@en . + owl:annotatedTarget "overcharge is also the act of charging beyond a certain limit specified by the manufacturer"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5227,6 +5224,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_9f466223_e20a_474d_ac4d_6d4b6131c275 ; owl:annotatedTarget "an electrode that holds its potential essentially constant by efficiently allowing electric current to pass"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_a0580fa9_5073_44af_b33e_7adbc83892d0 ; + owl:annotatedTarget "electrode reaction in which oxidation occurs at the anode"@en . + [] a owl:Axiom ; dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5242,14 +5245,14 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0580fa9_5073_44af_b33e_7adbc83892d0 ; - owl:annotatedTarget "electrode reaction in which oxidation occurs at the anode"@en . + owl:annotatedSource :electrochemistry_a0a619d7_da95_41f0_8bc3_9c19d636d543 ; + owl:annotatedTarget "electrode that serves only as a source or sink for electrons without playing a chemical role in the electrode reaction"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0a619d7_da95_41f0_8bc3_9c19d636d543 ; - owl:annotatedTarget "electrode that serves only as a source or sink for electrons without playing a chemical role in the electrode reaction"@en . + owl:annotatedSource :electrochemistry_a0fcb105_587f_45d8_a89a_46dc8f745069 ; + owl:annotatedTarget "partial or complete external covering of a cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5260,14 +5263,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0fcb105_587f_45d8_a89a_46dc8f745069 ; - owl:annotatedTarget "partial or complete external covering of a cell"@en . - -[] a owl:Axiom ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c ; - owl:annotatedTarget "plate in which the active material is applied as a paste to a conductive current collector"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedSource :electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e ; + owl:annotatedTarget "process inside an electrolytic cell used to coat a conductive object with a layer of a material"@en . [] a owl:Axiom ; dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; @@ -5278,8 +5275,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e ; - owl:annotatedTarget "process inside an electrolytic cell used to coat a conductive object with a layer of a material"@en . + owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; + owl:annotatedTarget "component of a cell which permits the flow of gas in one direction only"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5287,12 +5284,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; owl:annotatedTarget "a valve has a characteristic venting or opening and closing pressure"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; - owl:annotatedTarget "component of a cell which permits the flow of gas in one direction only"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5305,6 +5296,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a462859d_d8bd_48ea_8bde_1576f1248a1e ; owl:annotatedTarget "electrode in the form of foil, mesh, wire, rod, tube, powder, pellets, or single crystal of silver"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; + owl:annotatedTarget "a chemical reaction in an electrolyte involving a transfer of electrons between chemical components or between chemical components and an electrode"@en . + [] a owl:Axiom ; dcterms:source "Bockris, J. O'M. and Despić, . Aleksandar R. (2011, December 15). Electrochemical reaction. Encyclopedia Britannica. https://www.britannica.com/science/electrochemical-reaction" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5317,12 +5314,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; owl:annotatedTarget "the electrode reaction can also involve other chemical reactions including subreactions on a cell electrode"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; - owl:annotatedTarget "a chemical reaction in an electrolyte involving a transfer of electrons between chemical components or between chemical components and an electrode"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5355,15 +5346,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_ae56cce3_7a7c_4e53_bb58_31e0d642d47e ; - owl:annotatedTarget "this flame front may originate from a spark or an external naked flame igniting combustible electrolysis gas"@en . + owl:annotatedTarget "vent of special design which provides protection against the propagation of a flame front from or into the interior of a secondary cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_ae56cce3_7a7c_4e53_bb58_31e0d642d47e ; - owl:annotatedTarget "vent of special design which provides protection against the propagation of a flame front from or into the interior of a secondary cell"@en . + owl:annotatedTarget "this flame front may originate from a spark or an external naked flame igniting combustible electrolysis gas"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5395,6 +5386,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_b525a629_a679_464f_bc5b_b49d2fc82686 ; owl:annotatedTarget "an electrochemical cell for conductivity measurements"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; + owl:annotatedTarget "by convention, cell electrode at which an oxidation reaction occurs"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5419,12 +5416,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; owl:annotatedTarget "the concepts of “anode” and “cathode” are related only to the direction of electron flow, not to the polarity of the electrodes"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; - owl:annotatedTarget "by convention, cell electrode at which an oxidation reaction occurs"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5433,15 +5424,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_b79d4f9e_5727_4895_8d7f_5fc18d83eb90 ; - owl:annotatedTarget "in a galvanic cell, parasitic reactions may cause inefficiencies or loss of performance"@en . + owl:annotatedTarget "an unwanted side reaction"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_b79d4f9e_5727_4895_8d7f_5fc18d83eb90 ; - owl:annotatedTarget "an unwanted side reaction"@en . + owl:annotatedTarget "in a galvanic cell, parasitic reactions may cause inefficiencies or loss of performance"@en . [] a owl:Axiom ; dcterms:source "IEEE Standard Glossary of Stationary Battery Terminology (2016), https://doi.org/10.1109/IEEESTD.2016.7552407" ; @@ -5481,12 +5472,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_bbae1ef4_0a95_4e7d_9932_1bf939129eef ; owl:annotatedTarget "current-potential curve in a voltammetry experiment"@en . -[] a owl:Axiom ; - dcterms:source "https://en.wikipedia.org/wiki/Square_wave" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0e33278b_639f_412d_9abd_64c3790026ef ; - owl:annotatedTarget "Periodic potential where the amplitude alternates at a steady frequency between fixed minimum and maximum values, with the same duration at minimum and maximum."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5500,10 +5485,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "part which insures insulation between the plate (electrode) edges and adjacent plates (electrodes) and the container side walls"@en . [] a owl:Axiom ; + dcterms:source "https://en.wikipedia.org/wiki/Square_wave" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d ; - owl:annotatedTarget "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedSource :electrochemistry_0e33278b_639f_412d_9abd_64c3790026ef ; + owl:annotatedTarget "Periodic potential where the amplitude alternates at a steady frequency between fixed minimum and maximum values, with the same duration at minimum and maximum."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5535,12 +5520,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_c3f4b34a_0e2c_46f3_baab_4ebd2682d26f ; owl:annotatedTarget "An ionic liquid is an electrolyte composed of a salt that is liquid below 100 °C. Ionic liquids have found uses in electrochemical analysis, because their unconventional properties include a negligible vapor pressure, a high thermal and electrochemical stability, and exceptional dissolution properties for both organic and inorganic chemical species."@en . -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; - owl:annotatedTarget "Electron conductor in an electrochemical cell connected to the external circuit."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5553,6 +5532,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_c55ec02c_b727_4df1_97ce_91d7bb5d5e91 ; owl:annotatedTarget "unplanned escape of electrolyte, gas or other material from a cell or battery"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_c610d869_cc03_44f0_b40d_ca86e945b9c9 ; + owl:annotatedTarget "cell from which electrolyte cannot escape regardless of its orientation"@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5562,8 +5547,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_c610d869_cc03_44f0_b40d_ca86e945b9c9 ; - owl:annotatedTarget "cell from which electrolyte cannot escape regardless of its orientation"@en . + owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; + owl:annotatedTarget "electronically conductive part in electric contact with a medium of lower electronic conductivity and intended to perform one or more of the functions of emitting charge carriers to or receiving charge carriers from that medium or to establish an electric field in that medium"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5579,21 +5564,21 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; - owl:annotatedTarget "by convention, an oxidation reaction occurs during discharge"@en . + owl:annotatedTarget "for a device having two electrodes, that electrode having the lower electric potential"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; - owl:annotatedTarget "electronically conductive part in electric contact with a medium of lower electronic conductivity and intended to perform one or more of the functions of emitting charge carriers to or receiving charge carriers from that medium or to establish an electric field in that medium"@en . + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; + owl:annotatedTarget "by convention, an oxidation reaction occurs during discharge"@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; - owl:annotatedTarget "for a device having two electrodes, that electrode having the lower electric potential"@en . + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; + owl:annotatedTarget "Electron conductor in an electrochemical cell connected to the external circuit."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5604,8 +5589,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0f827b54_370d_4c63_99a6_80f13b24e55e ; - owl:annotatedTarget "evolution of gas resulting from electrolysis of the water in the electrolyte of a cell"@en . + owl:annotatedSource :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; + owl:annotatedTarget "set of operations that is carried out on a secondary cell or battery and is repeated regularly in the same sequence."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5622,14 +5607,14 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; - owl:annotatedTarget "set of operations that is carried out on a secondary cell or battery and is repeated regularly in the same sequence."@en . + owl:annotatedSource :electrochemistry_d5da9948_e95b_4f12_a2d2_10a48f390c52 ; + owl:annotatedTarget "arrangement of cells or batteries wherein parallel connected cells or batteries are connected in series."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_d5da9948_e95b_4f12_a2d2_10a48f390c52 ; - owl:annotatedTarget "arrangement of cells or batteries wherein parallel connected cells or batteries are connected in series."@en . + owl:annotatedSource :electrochemistry_0f827b54_370d_4c63_99a6_80f13b24e55e ; + owl:annotatedTarget "evolution of gas resulting from electrolysis of the water in the electrolyte of a cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5655,18 +5640,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_df78745e_f9db_4830_88f0_8ce074fcb8ff ; owl:annotatedTarget "liquid metal electrode used in polarography"@en . +[] a owl:Axiom ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; + owl:annotatedTarget "electrochemical cell in which chemical reactions occur spontaneously and chemical energy is converted into electrical energy."@en . + [] a owl:Axiom ; dcterms:references "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; owl:annotatedTarget "An electrochemical cell that spontaneously produces work."@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_113e0469_8ae0_407f_892d_4b988f8d8a08 ; - owl:annotatedTarget "electrochemical cell that has two half-cells separated by a wall permeable to ions, both containing the same electrolyte differing only in their temperatures."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5674,16 +5659,22 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "Electrochemical cell intended to produce electric energy."@en . [] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; - owl:annotatedTarget "electrochemical cell in which chemical reactions occur spontaneously and chemical energy is converted into electrical energy."@en . + owl:annotatedSource :electrochemistry_e2a1dae1_05e4_4bd1_a39d_0eb10db482bc ; + owl:annotatedTarget "method of separating and neutralizing ions by an electric current in an electrolytic cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e2a1dae1_05e4_4bd1_a39d_0eb10db482bc ; - owl:annotatedTarget "method of separating and neutralizing ions by an electric current in an electrolytic cell"@en . + owl:annotatedSource :electrochemistry_113e0469_8ae0_407f_892d_4b988f8d8a08 ; + owl:annotatedTarget "electrochemical cell that has two half-cells separated by a wall permeable to ions, both containing the same electrolyte differing only in their temperatures."@en . + +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; + owl:annotatedTarget "electrochemical cell intended to produce chemical reactions"@en . [] a owl:Axiom ; dcterms:references "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; @@ -5697,18 +5688,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; owl:annotatedTarget "Electrochemical cell in which electrical energy is converted into chemical energy."@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; - owl:annotatedTarget "electrochemical cell intended to produce chemical reactions"@en . - -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_1152ae6b_8b57_4d99_912e_40c6a29342fb ; - owl:annotatedTarget "mass m of electrochemically-transformed substance is proportional to the charge Q passed, m ∝ Q."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5721,6 +5700,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_ec1dce8b_bb46_41a9_b532_6bed381aa557 ; owl:annotatedTarget "secondary cell having a cover provided with an opening through which products of electrolysis and evaporation are allowed to escape freely from the cell to the atmosphere"@en . +[] a owl:Axiom ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_1152ae6b_8b57_4d99_912e_40c6a29342fb ; + owl:annotatedTarget "mass m of electrochemically-transformed substance is proportional to the charge Q passed, m ∝ Q."@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5739,12 +5724,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f0c24970_4c14_4207_bd78_5f2181a67085 ; owl:annotatedTarget "the process of forming a film or a bulk material using an electrochemical process where the electrons are supplied by an external power supply"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_1355816f_a2b5_4800_8001_fc888f5d6b1b ; - owl:annotatedTarget "instrument intended to measure the value of a voltage."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5757,6 +5736,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f47611a2_e081_47f0_b287_3fda5f706154 ; owl:annotatedTarget "chemical reaction which occurs in addition to the main process"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; + owl:annotatedTarget "electrode reaction in which reduction occurs at the cathode"@en . + +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_1355816f_a2b5_4800_8001_fc888f5d6b1b ; + owl:annotatedTarget "instrument intended to measure the value of a voltage."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5769,12 +5760,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; owl:annotatedTarget "electrode reaction, where the energy of electrons in the working electrode is higher than the LUMO orbital of the substrate"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; - owl:annotatedTarget "electrode reaction in which reduction occurs at the cathode"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5782,10 +5767,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "electrode that responds to one, or more than one, species in the solution being investigated, with no appreciable change of bulk solution composition during the measurement"@en . [] a owl:Axiom ; - dcterms:source "IUPAC. Compendium of Chemical Terminology, 2nd ed. (the \"Gold Book\"). Compiled by A. D. McNaught and A. Wilkinson. Blackwell Scientific Publications, Oxford (1997). Online version (2019-) created by S. J. Chalk. ISBN 0-9678550-9-8. https://doi.org/10.1351/goldbook." ; + dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_15325775_6d4c_4192_82f1_e4feca9de426 ; - owl:annotatedTarget "A membrane having ion-exchange groups:"@en . + owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; + owl:annotatedTarget "a material in which the mobile species are ions and free movement of electrons is blocked."@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5799,18 +5784,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; owl:annotatedTarget "liquid or solid substance containing mobile ions that render it conductive"@en . +[] a owl:Axiom ; + dcterms:source "IUPAC. Compendium of Chemical Terminology, 2nd ed. (the \"Gold Book\"). Compiled by A. D. McNaught and A. Wilkinson. Blackwell Scientific Publications, Oxford (1997). Online version (2019-) created by S. J. Chalk. ISBN 0-9678550-9-8. https://doi.org/10.1351/goldbook." ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_15325775_6d4c_4192_82f1_e4feca9de426 ; + owl:annotatedTarget "A membrane having ion-exchange groups:"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; owl:annotatedTarget "substance that provides ions on dissolution in a solvent or on melting"@en . -[] a owl:Axiom ; - dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; - owl:annotatedTarget "a material in which the mobile species are ions and free movement of electrons is blocked."@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5823,18 +5808,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_fb9bf7cb_dd4b_4391_99a1_628263dd6940 ; owl:annotatedTarget "measuring instrument to obtain the electrical charge passed in an experiment, or to produce a known amount of substance in a titration."@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; - owl:annotatedTarget "Electrolyte solution in the cathodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the cathode is placed."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; owl:annotatedTarget "electrolyte on the cathode side of an electrochemical cell that is divided into compartments."@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; + owl:annotatedTarget "Electrolyte solution in the cathodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the cathode is placed."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5931,18 +5916,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_2d32a81a_2148_41bd_84fb_467aa8de4a8f ; owl:annotatedTarget "foil, wire, disc, or mesh electrode made of platinum, which is the most commonly used metallic working electrode in electrochemistry"@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; - owl:annotatedTarget "An interfacial reaction that necessarily involves a charge-transfer step."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; owl:annotatedTarget "electrochemical reaction involving the transfer of electrons between electrolyte and electrode"@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; + owl:annotatedTarget "An interfacial reaction that necessarily involves a charge-transfer step."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5957,15 +5942,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_328c6e36_3706_4d92_abae_432fa3adb2a0 ; - owl:annotatedTarget "a cell baffle has a second function in protecting the plate pack from damage by objects inserted through the filling hole"@en . + owl:annotatedTarget "internal component used to reduce the amount of electrolyte loss due to electrolyte spray being carried in the gas and/or by electrolyte movement"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_328c6e36_3706_4d92_abae_432fa3adb2a0 ; - owl:annotatedTarget "internal component used to reduce the amount of electrolyte loss due to electrolyte spray being carried in the gas and/or by electrolyte movement"@en . + owl:annotatedTarget "a cell baffle has a second function in protecting the plate pack from damage by objects inserted through the filling hole"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5979,6 +5964,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_34bc54e3_de4c_41f8_8d3a_d77c951ee23a ; owl:annotatedTarget "needle-like or tree-like formation of crystalline growth formed during deposition of a material"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; + owl:annotatedTarget "by convention, cell electrode at which, a reduction reaction occurs"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5997,12 +5988,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; owl:annotatedTarget "the concepts of “anode” and “cathode” are related only to the direction of electron flow, not to the polarity of the electrodes"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; - owl:annotatedTarget "by convention, cell electrode at which, a reduction reaction occurs"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -6023,15 +6008,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_3f6c9e09_5f23_41cc_9f85_7de365cef089 ; - owl:annotatedTarget "electrolyte creep is sometimes indicated by the presence of a visible solid deposit or wet spots"@en . + owl:annotatedTarget "gradual and slow spreading of an electrolyte film on the external surface of a cell or battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_3f6c9e09_5f23_41cc_9f85_7de365cef089 ; - owl:annotatedTarget "gradual and slow spreading of an electrolyte film on the external surface of a cell or battery"@en . + owl:annotatedTarget "electrolyte creep is sometimes indicated by the presence of a visible solid deposit or wet spots"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -6041,9 +6026,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_04f28ce3_251d_429e_aa85_ab3eb45bbcd2 ; - owl:annotatedTarget "in lithium batteries thermal runaway may cause melting of lithium"@en . + owl:annotatedTarget "unstable condition arising during constant voltage charge in which the rate of heat dissipation capability, causing a continuous temperature increase with resulting further charge current increase, which can lead to the destruction of the battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -6077,9 +6062,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_04f28ce3_251d_429e_aa85_ab3eb45bbcd2 ; - owl:annotatedTarget "unstable condition arising during constant voltage charge in which the rate of heat dissipation capability, causing a continuous temperature increase with resulting further charge current increase, which can lead to the destruction of the battery"@en . + owl:annotatedTarget "in lithium batteries thermal runaway may cause melting of lithium"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; diff --git a/versions/0.5.0/context/context.json b/versions/0.5.0/context/context.json index ac1b0bb..2006ca7 100644 --- a/versions/0.5.0/context/context.json +++ b/versions/0.5.0/context/context.json @@ -1076,7 +1076,6 @@ "ButlerVolmerEquation": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d48ea516_5cac_4f86_bc88_21b6276c0938", "C": "https://w3id.org/emmo#EMMO_36a9bf69_483b_42fd_8a0c_7ac9206320bc", "CASRN": "https://w3id.org/emmo#EMMO_d2a47cd8_662f_438f_855a_b4378eb992ff", - "CCCVCycling": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e", "CPlusPlus": "https://w3id.org/emmo#EMMO_64aba1e5_24b7_4140_8eb4_676c35698e79", "CRate": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_e1fd84eb_acdb_4b2c_b90c_e899d552a3ee", "CSharp": "https://w3id.org/emmo#EMMO_268a8a97_3a6f_4022_93da_962a66827cdc", @@ -1285,7 +1284,7 @@ "CoatingThickness": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3b938708_e7e4_4ac0_a959_9c04306302e7", "Cobalt": "https://w3id.org/emmo/domain/chemical-substance#substance_8f857eb2_7cc8_4294_954d_e69f2842c084", "CobaltAtom": "https://w3id.org/emmo#EMMO_3fe9d899_f1f1_5657_b176_ac6afff2e93d", - "CobaltBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_838c115b_6bc9_4ce8_9f8d_86a6bf67742a", + "CobaltBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7b811780_7251_481b_a4d3_97d437955099", "CobaltHydroxide": "https://w3id.org/emmo/domain/chemical-substance#substance_29b1c15d_2632_40d7_88f7_43575b68b988", "CobaltIIAcetate": "https://w3id.org/emmo/domain/chemical-substance#substance_4310c690_9810_4a95_8d62_7e78e0b84437", "CobaltIIBistrifluoromethanesulfonylimide": "https://w3id.org/emmo/domain/chemical-substance#substance_f4dffee2_c642_4114_a748_5e93b3908380", @@ -1358,6 +1357,7 @@ "ConstantCurrentCharging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_83f2b1e9_cb67_4dbf_977f_ba54bbae374f", "ConstantCurrentChargingCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_37c38b7e_9ded_481a_85fd_a467f1ee2b9f", "ConstantCurrentConstantVoltageCharging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0cc8f231_0ce5_467e_9c76_29b2c80349ad", + "ConstantCurrentConstantVoltageCycling": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e", "ConstantCurrentDischarging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_53fe3f58_0802_41cf_af69_4784fc42cc30", "ConstantCurrentDischargingCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_08833ed2_6324_411a_b34b_fe64c44cd5ef", "ConstantPotentialPulses": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_84d37a37_88bd_47db_9425_31f73a81d38c", @@ -1590,7 +1590,7 @@ "DeviceTemperature": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_463950b9_fd8d_48de_a52d_b29cab026391", "DewPointTemperature": "https://w3id.org/emmo#EMMO_a383e332_a271_463f_9e44_559604547220", "Diameter": "https://w3id.org/emmo#EMMO_c1c8ac3c_8a1c_4777_8e0b_14c1f9f9b0c6", - "Dichloromethane": "https://w3id.org/emmo/domain/chemical-substance#substance_8385c3c4_5906_48f6_b6b6_4bb60dccc27a", + "Dichloromethane": "https://w3id.org/emmo/domain/chemical-substance#substance_a6feec60_5fe7_4687_b427_3bf2ed06008d", "DieCasting": "https://w3id.org/emmo#EMMO_a85d0b8a_588e_423f_b799_97b0890e9183", "DielectricAndImpedanceSpectroscopy": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#DielectricAndImpedanceSpectroscopy", "Dielectrometry": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Dielectrometry", @@ -1624,7 +1624,7 @@ "Dimethoxyethane": "https://w3id.org/emmo/domain/chemical-substance#substance_b6ecabf9_14a4_4808_a139_55329e70ad42", "Dimethoxymethane": "https://w3id.org/emmo/domain/chemical-substance#substance_21954b0b_c05c_42db_b276_3a931d8aabb1", "DimethylCarbonate": "https://w3id.org/emmo/domain/chemical-substance#substance_c4a7d7bd_497e_457e_b858_ff73254266d0", - "DimethylSulfoxide": "https://w3id.org/emmo/domain/chemical-substance#substance_b593b5dd_7957_4b85_856a_dd59775210b6", + "DimethylSulfoxide": "https://w3id.org/emmo/domain/chemical-substance#substance_ea68e1a4_6be8_4686_8701_ba88b40d00b7", "Dimethylformamide": "https://w3id.org/emmo/domain/chemical-substance#substance_769bdc09_f533_4fde_bb53_20339d5bfcb7", "Dimethylpropyleneurea": "https://w3id.org/emmo/domain/chemical-substance#substance_945c68da_3baf_4da6_b794_dca7aebc4ca7", "Dimethylsulfate": "https://w3id.org/emmo/domain/chemical-substance#substance_3c8fb431_7d9d_4a89_a494_708df34f44d3", @@ -1837,7 +1837,7 @@ "ElectronicModel": "https://w3id.org/emmo#EMMO_6eca09be_17e9_445e_abc9_000aa61b7a11", "ElectronvoltPerMetre": "https://w3id.org/emmo#ElectronvoltPerMetre", "Electroosmosis": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_5641910f_6e69_4ce4_be84_4b1bf14b8916", - "Electroplating": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e", + "Electroplating": "https://w3id.org/emmo#EMMO_30e3edb5_0977_4b9b_9aed_5a4d16c1c07c", "ElementalMaterial": "https://w3id.org/emmo#EMMO_a086af15_a7c3_404c_b4ce_c8e4466f1b4b", "ElementalSubstance": "https://w3id.org/emmo#EMMO_436b11bd_1756_4821_9f14_c9ed6b67552e", "ElementaryBoson": "https://w3id.org/emmo#EMMO_cafd0f10_ce85_48b9_9a36_2b0af141ce21", @@ -2192,11 +2192,12 @@ "ISQBaseQuantity": "https://w3id.org/emmo#EMMO_1a4c1a97_88a7_4d8e_b2f9_2ca58e92dde4", "ISQDerivedQuantity": "https://w3id.org/emmo#EMMO_2946d40b_24a1_47fa_8176_e3f79bb45064", "ISQDimensionlessQuantity": "https://w3id.org/emmo#EMMO_a66427d1_9932_4363_9ec5_7d91f2bfda1e", - "IUPACName": "https://w3id.org/emmo#EMMO_16a3bd5c_75f0_42b3_b000_cb0d018f840e", + "IUPACName": "https://w3id.org/emmo#EMMO_f652e7d2_0b33_4d10_8d0f_2f70089982ba", "IUPACNomencalture": "https://w3id.org/emmo#EMMO_91a0635a_a89a_46de_8928_04a777d145c7", "Icon": "https://w3id.org/emmo#EMMO_d7788d1a_020d_4c78_85a1_13563fcec168", "Illuminance": "https://w3id.org/emmo#EMMO_b51fbd00_a857_4132_9711_0ef70e7bdd20", "IlluminanceTimeUnit": "https://w3id.org/emmo#EMMO_e467cc3f_676c_432e_b70e_19237d1bcc78", + "ImaginaryElectricImpedance": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626", "Impedimetry": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Impedimetry", "InChI": "https://w3id.org/emmo#EMMO_d74ed682_894f_46c5_87cb_167f60926965", "IncreasingPotentialPulses": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_77be01ef_49bd_4f2e_bec8_eec0894b8562", @@ -2288,7 +2289,7 @@ "IridiumSymbol": "https://w3id.org/emmo#EMMO_b8aab013_b729_51f1_bc14_5302e7f97cbe", "Iron": "https://w3id.org/emmo/domain/chemical-substance#substance_89fd13e8_8061_41da_83f4_634144116425", "IronAtom": "https://w3id.org/emmo#EMMO_a4839f08_1080_53bf_9cb3_101e20c2656b", - "IronBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_cc4e178c_bc1f_4502_b6c2_33f304ef6bab", + "IronBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_5e1136d3_df00_40f7_a4bc_8259341053a1", "IronDisulfide": "https://w3id.org/emmo/domain/chemical-substance#substance_c728b6b9_449a_45ff_b5ae_6b7968708f0d", "IronDisulfideElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d2726dd5_69f0_4cb1_bd3c_4c48813e57e7", "IronIIIHydroxide": "https://w3id.org/emmo/domain/chemical-substance#substance_323a2e39_d7d5_4802_884a_9aa41a280986", @@ -2556,6 +2557,7 @@ "LossFactor": "https://w3id.org/emmo#EMMO_c3796906_8063_47d4_92af_890ae08f25fa", "LowPressureCasting": "https://w3id.org/emmo#EMMO_8b2fd84c_8f51_4731_9bd7_830545e78b23", "LowerCriticalMagneticFluxDensity": "https://w3id.org/emmo#EMMO_fd4a6307_f9f7_4b54_b044_caa04e620232", + "LowerCurrentLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea", "LowerFrequencyLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_b66d6553_6136_4754_902a_707e414210c2", "LowerVoltageLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_534dd59c_904c_45d9_8550_ae9d2eb6bbc9", "Lumen": "https://w3id.org/emmo#Lumen", @@ -2608,7 +2610,7 @@ "MagnesiumTriflate": "https://w3id.org/emmo/domain/chemical-substance#substance_df24fad8_7ef0_4330_a3f2_c4d65d9a3be8", "MagnesiumTrifluoromethanesulfonyloxalatoborate": "https://w3id.org/emmo/domain/chemical-substance#substance_2b7473ba_9156_489a_880f_3a2f746cd104", "MagneticDipoleMoment": "https://w3id.org/emmo#EMMO_81e767f1_59b1_4d7a_bf69_17f322241831", - "MagneticDipoleMomentUnit": "https://w3id.org/emmo#EMMO_5073dc80_aec2_4a3b_8057_fababfcbfe11", + "MagneticDipoleMomentUnit": "https://w3id.org/emmo#EMMO_1c2226a9_22f0_40c8_8928_5a01d398f96e", "MagneticFieldStrength": "https://w3id.org/emmo#EMMO_b4895f75_41c8_4fd9_b6d6_4d5f7c99c423", "MagneticFieldStrengthUnit": "https://w3id.org/emmo#EMMO_e6b83139_ba92_4fbd_a8b2_c8dde55844a1", "MagneticFlux": "https://w3id.org/emmo#EMMO_3b931698_937e_49be_ab1b_36fa52d91181", @@ -2676,7 +2678,7 @@ "MassExcess": "https://w3id.org/emmo#EMMO_7dd84949_0afa_4313_9b89_7bb0dd2e7771", "MassFlow": "https://w3id.org/emmo#EMMO_6d61ee3c_c5b6_4452_bc11_e9c33af992a7", "MassFluxUnit": "https://w3id.org/emmo#EMMO_e35d4936_b2e3_4cd6_a437_f1c864b3d450", - "MassFraction": "https://w3id.org/emmo/disciplines/units/coherentsiunits#EMMO_089f13b1_ceb3_4d2a_8795_b4a2d92916da", + "MassFraction": "https://w3id.org/emmo#EMMO_7c055d65_2929_40e1_af4f_4bf10995ad50", "MassFractionOfDryMatter": "https://w3id.org/emmo#EMMO_8f171308_f902_42c5_ac1d_d5259022e9c1", "MassFractionOfWater": "https://w3id.org/emmo#EMMO_cac16ce6_2cef_405d_ac63_0f918db4875e", "MassFractionUnit": "https://w3id.org/emmo#EMMO_18448443_dcf1_49b8_a321_cf46e2c393e1", @@ -3027,6 +3029,7 @@ "NobeliumAtom": "https://w3id.org/emmo#EMMO_49eb0790_50c2_5691_a8bf_dfa6f4a9f6c7", "NobeliumSymbol": "https://w3id.org/emmo#EMMO_c1bb775c_0888_5b88_9cce_c49bae1d298b", "NobleGasElementalSubstance": "https://w3id.org/emmo/domain/chemical-substance#substance_cac14194_2d5f_4fe6_b794_a9319f6d76ee", + "NominalCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100", "NominalProperty": "https://w3id.org/emmo#EMMO_909415d1_7c43_4d5e_bbeb_7e1910159f66", "NominalVoltage": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_639b844a_e801_436b_985d_28926129ead6", "NonActivePower": "https://w3id.org/emmo#EMMO_83318add_d05e_40fc_93ea_c6cd605df437", @@ -3061,6 +3064,7 @@ "NumberOfFiniteVolumeCellsInX": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_e73586eb_8475_4879_a43e_087c702ea6bf", "NumberOfFiniteVolumeCellsInY": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_c2a85d02_c6b4_42df_b5ed_a9904ec34a5c", "NumberOfFiniteVolumeCellsInZ": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a5e00e3a_736c_4200_8d04_ed222fe07037", + "NumberOfIterations": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_88dd2bce_fb17_4705_905d_892681812290", "NumberOfTurnsInAWinding": "https://w3id.org/emmo#EMMO_eefaa0ef_e7d4_4633_bf79_655bb55f4a49", "Numeral": "https://w3id.org/emmo#EMMO_74b05aed_66bf_43c8_aa2c_752a9ca8be03", "Numerical": "https://w3id.org/emmo#EMMO_4ce76d7f_03f8_45b6_9003_90052a79bfaa", @@ -3211,7 +3215,7 @@ "Permittivity": "https://w3id.org/emmo#EMMO_0ee5779e_d798_4ee5_9bfe_c392d5bea112", "PermittivityUnit": "https://w3id.org/emmo#EMMO_5f89cb0c_3171_47ee_b2ab_027a07c34c4b", "Persistence": "https://w3id.org/emmo#EMMO_e04884d9_eda6_487e_93d5_7722d7eda96b", - "Person": "http://xmlns.com/foaf/0.1/Person", + "Person": "https://schema.org/Person", "Perspective": "https://w3id.org/emmo#EMMO_49267eba_5548_4163_8f36_518d65b583f9", "Peta": "https://w3id.org/emmo#EMMO_d7c74480_a568_4470_acff_f18b499cc850", "PetaPrefixedUnit": "https://w3id.org/emmo#EMMO_43a6b269_da31_4bb6_a537_c97df4fff32a", @@ -3298,7 +3302,7 @@ "Porosity": "https://w3id.org/emmo#EMMO_3a6578ac_aee0_43b9_9bc6_1eb208c8c9a9", "PorousElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3663991d_9319_4f7a_922b_f0e428b58801", "PorousSeparator": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_58413d4e_2885_459e_ac06_8d45e661cf91", - "PositionVector": "https://w3id.org/emmo#EMMO_4312cae4_03ba_457e_b35d_0671a7db350c", + "PositionVector": "https://w3id.org/emmo#EMMO_44da6d75_54a4_4aa8_bd3a_156f6e9abb8e", "PositiveElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_aff732a9_238a_4734_977c_b2ba202af126", "PositiveTerminal": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_522f0c0b_cf33_4328_af71_12e38dae6798", "Positron": "https://w3id.org/emmo#EMMO_26a38b26_38ea_4acf_b212_db9e34c71b7a", @@ -3483,7 +3487,7 @@ "R54215": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_fc9e7ba3_5084_4c2a_b488_c6a96af99232", "R616": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_dc019f3f_e5f3_4eeb_bab9_a845a02223a0", "R621": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_15ec346a_6d3c_4161_95e1_9cf889965f85", - "R626": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_68c1c36e_1548_4247_bae2_fe7102a2c4ff", + "R626": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6b275583_433f_46f7_aafd_ebc9409257cc", "R712": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_bb2faf17_b819_4876_b17f_fa82917cf85d", "R716": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_34cb7ea7_2436_46e0_806e_a3c7835ae228", "R721": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3279f575_1c62_4bf2_a6e8_de4c7ff36f8e", @@ -3535,6 +3539,7 @@ "ReactivePower": "https://w3id.org/emmo#EMMO_d8030875_6d89_4645_9728_bbc3b8690609", "ReactorTimeConstant": "https://w3id.org/emmo#EMMO_b03dfad7_eab8_4949_9d10_dd4fd12faaef", "Real": "https://w3id.org/emmo#EMMO_18d180e4_5e3e_42f7_820c_e08951223486", + "RealElectricImpedance": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f", "ReciprocalAmountPerVolumeUnit": "https://w3id.org/emmo#EMMO_aef218f9_6ded_4db9_9263_e78eed55e5d6", "ReciprocalCentiMetre": "https://w3id.org/emmo#ReciprocalCentiMetre", "ReciprocalCubicCentiMetre": "https://w3id.org/emmo#ReciprocalCubicCentiMetre", @@ -3637,6 +3642,7 @@ "ResponseTimeAtAnISE": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_1a104474_c326_4a29_ac26_26a05ac8f72c", "RestEnergy": "https://w3id.org/emmo#EMMO_5117c5fe_f661_46f8_83c3_b48947f1532a", "RestMass": "https://w3id.org/emmo#EMMO_3c947caf_4070_4c79_a3a3_e53274ac9944", + "Resting": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b", "RestingTime": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_2678a656_4a27_4706_8dde_b0a93e9b92fa", "ReversibleHydrogenElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0d9ba00d_04bc_4bdc_85af_3380694f6f68", "RevolutionPerMinute": "https://w3id.org/emmo#RevolutionPerMinute", @@ -3790,7 +3796,7 @@ "SiemensSquareMetrePerMole": "https://w3id.org/emmo#SiemensSquareMetrePerMole", "Sievert": "https://w3id.org/emmo#Sievert", "Sign": "https://w3id.org/emmo#EMMO_b21a56ed_f969_4612_a6ec_cb7766f7f31d", - "Signal": "https://w3id.org/emmo/domain/chameo#Signal", + "Signal": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Signal", "SignalReferencePotential": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_68059d94_4c21_4065_b329_07faeebc7e87", "Silicon": "https://w3id.org/emmo/domain/chemical-substance#substance_68c0876b_cb62_41cd_846d_95cc9d9a8733", "SiliconAtom": "https://w3id.org/emmo#EMMO_798b0c96_82ca_5ce8_8d5f_f9f72668cf5d", @@ -4318,6 +4324,7 @@ "UpQuark": "https://w3id.org/emmo#EMMO_0a3f04a6_ba3a_49d9_99da_08b0e26f51f0", "UpQuarkType": "https://w3id.org/emmo#EMMO_fc47b76f_ad01_4cd0_8fc6_55532000e7c8", "UpperCriticalMagneticFluxDensity": "https://w3id.org/emmo#EMMO_6bfe6ad2_96ba_4478_81e5_d8881c550757", + "UpperCurrentLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45", "UpperFrequencyLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_666f0b69_9c74_49a3_80b3_96a188332462", "UpperVoltageLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6dcd5baf_58cd_43f5_a692_51508e036c88", "UraniumAtom": "https://w3id.org/emmo#EMMO_b233f8c0_37d8_51ae_9264_560e6649e246", diff --git a/versions/0.5.0/electrochemicalquantities.ttl b/versions/0.5.0/electrochemicalquantities.ttl index 882a543..96cb275 100644 --- a/versions/0.5.0/electrochemicalquantities.ttl +++ b/versions/0.5.0/electrochemicalquantities.ttl @@ -24,8 +24,6 @@ emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f a owl:AnnotationProperty . emmo:EMMO_5c78b424_087b_4e31_8c91_6422f1be1e86 owl:equivalentClass :electrochemistry_9c657fdc_b9d3_4964_907c_f9a6e8c5f52b . -emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 :electrochemistry_097ea615_c209_4edd_a1a1_5eea71d98fe8 "acimp/ohms"@en . - emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry_37b24a94_cae0_4d7a_9519_9f7692dec607 ; skos:altLabel "MassDiffusivity"@en ; emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q604008"@en ; @@ -101,6 +99,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "D40ParticleSize"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 40% of the sample's particles fall."@en . +:electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626 a owl:Class ; + rdfs:label "ImaginaryElectricImpedance"@en ; + rdfs:comment "the imaginary part of the complex electric impedance"@en ; + rdfs:subClassOf emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 ; + skos:prefLabel "ImaginaryElectricImpedance"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the imaginary part of the complex electric impedance"@en . + :electrochemistry_02d2d1d1_241c_429b_b4e7_31f2c3dc4835 a owl:Class ; rdfs:label "D95ParticleSize"@en ; rdfs:comment "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 95% of the sample's particles fall."@en ; @@ -381,6 +386,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "D50ParticleSize"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 50% of the sample's particles fall."@en . +:electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45 a owl:Class ; + rdfs:label "UpperCurrentLimit"@en ; + rdfs:comment "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en ; + rdfs:subClassOf :electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 ; + skos:prefLabel "UpperCurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + :electrochemistry_3e54f9e3_a31d_4821_9bfb_ef953a42c35b a owl:Class ; rdfs:label "MaximumPulseDischargingCurrent"@en ; rdfs:comment "the maximum current approved for pulse discharge of an electrochemical device"@en ; @@ -608,6 +620,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "ChargingCurrent"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electric current applied to an electrochemical device during a charging process"@en . +:electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea a owl:Class ; + rdfs:label "LowerCurrentLimit"@en ; + rdfs:comment "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en ; + rdfs:subClassOf :electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 ; + skos:prefLabel "LowerCurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + :electrochemistry_7f073272_8925_4344_995c_a5a6dd1fcde6 a owl:Class ; rdfs:label "ChargingConstantCurrentPercentage"@en ; rdfs:comment "the percentage of the total charge capacity that is obtained during a constant current charge process"@en ; @@ -705,6 +724,20 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "DischargingSpecificCapacity"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "quotient of the capacity of a cell or battery [ or electrode or active material ] obtained during a discharge process by its mass."@en . +:electrochemistry_88dd2bce_fb17_4705_905d_892681812290 a owl:Class ; + rdfs:label "NumberOfIterations"@en ; + rdfs:comment "the number of times an iterative process should occur"@en ; + rdfs:subClassOf emmo:EMMO_ba882f34_0d71_4e4f_9d92_0c076c633a2c ; + skos:prefLabel "NumberOfIterations"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the number of times an iterative process should occur"@en . + +:electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100 a owl:Class ; + rdfs:label "NominalCapacity"@en ; + rdfs:comment "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en ; + rdfs:subClassOf :electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 ; + skos:prefLabel "NominalCapacity"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en . + :electrochemistry_8e943e12_ecc0_4093_899e_7226be6be7f2 a owl:Class ; rdfs:label "D90ParticleSize"@en ; rdfs:comment "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 90% of the sample's particles fall."@en ; @@ -820,6 +853,15 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the celsius temperature of the ambient environment"@en ; :electrochemistry_1b717a20_17e3_4480_8c60_c4ae94058f05 "Environmental_Temperature (C)"@en . +:electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f a owl:Class ; + rdfs:label "RealElectricImpedance"@en ; + rdfs:comment "the imaginary part of the complex electric impedance"@en ; + rdfs:subClassOf emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 ; + skos:altLabel "ACResistance"@en ; + skos:prefLabel "RealElectricImpedance"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q1048490"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the imaginary part of the complex electric impedance"@en . + :electrochemistry_ae108db7_8765_4329_9908_059277dee586 a owl:Class ; rdfs:label "StepCapacity"@en ; rdfs:comment "the amount of charge that has passed through an electrochemical device within the time interval of a given testing step"@en ; @@ -1084,8 +1126,8 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry ; dcterms:license "https://creativecommons.org/licenses/by/4.0/legalcode" ; owl:imports ; - owl:versionIRI ; - owl:versionInfo "0.17.0-beta" . + owl:versionIRI ; + owl:versionInfo "0.18.0-beta" . a owl:NamedIndividual, foaf:Person ; @@ -1866,6 +1908,8 @@ In either case, the magnitude of the catalytic current depends on the applied po emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electric potential of an ion-selective electrode (ISE) and activity of an analyte ion at which the potential of the ISE is independent of temperature"@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1351/goldbook.I03304"@en . +emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 :electrochemistry_097ea615_c209_4edd_a1a1_5eea71d98fe8 "acimp/ohms"@en . + emmo:EMMO_e218c625_6a39_47a9_8d08_a2ef41c152a9 rdfs:subClassOf :electrochemistry_02eb0465_4f94_453c_8c1f_5ddf80134634 ; skos:altLabel "GravimetricEnergyDensity"@en ; :electrochemistry_811aafc3_0c6d_470e_b67e_ff5c82992609 "CmpEng(mWh/g)"@en . @@ -1997,14 +2041,6 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog skos:prefLabel "TemperatureLimit"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the temperature of a system"@en . -:electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 a owl:Class ; - rdfs:label "RatedCapacity"@en ; - rdfs:comment "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en ; - rdfs:subClassOf :electrochemistry_791c1915_a791_4450_acd8_7f94764743b5 ; - skos:prefLabel "RatedCapacity"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-03-15"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en . - :electrochemistry_9ed7210c_c4fa_467b_822d_ba12f885bdf4 a owl:Class ; rdfs:label "ConcentrationOverpotential"@en ; rdfs:comment "The concentration overpotential of an electrode reaction at a given electrode current density (c.d.) is basically the difference in equilibrium potentials across the diffusion layer. More precisely, it is the potential of a reference electrode (of the same electrode reaction as the working electrode ) with the interfacial concentrations which establish themselves at c.d., relative to the potential of a similar reference electrode with the concentrations of the bulk solution. From such a measured potential difference, with c.d. flowing, one needs to subtract the ohmic potential drop prevailing between the two electrodes."@en, @@ -2110,6 +2146,14 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog skos:prefLabel "NumberOfFiniteVolumeCells"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "number of discrete finite volume cells in a grid or sub-grid"@en . +:electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 a owl:Class ; + rdfs:label "RatedCapacity"@en ; + rdfs:comment "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en ; + rdfs:subClassOf :electrochemistry_791c1915_a791_4450_acd8_7f94764743b5 ; + skos:prefLabel "RatedCapacity"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-03-15"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en . + :electrochemistry_cc519a19_b8d5_4e3f_b893_3a884888ad79 a owl:Class ; rdfs:label "MaximumTemperature"@en ; rdfs:comment "the maximum allowable temperature"@en ; @@ -2186,14 +2230,6 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa :electrochemistry_a07dd85b_d0df_4d5d_8b0c_14d20ea3fe45 "current"@en ; :electrochemistry_ea9f4dba_8ca2_419e_9cdf_ce54e9ebbd46 "Current (A)"@en . -:electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 a owl:Class ; - rdfs:label "CurrentLimit"@en ; - rdfs:comment "limit on the electric current of an electrical system"@en ; - rdfs:subClassOf emmo:EMMO_c995ae70_3b84_4ebb_bcfc_69e6a281bb88, - :electrochemistry_b395a244_3a75_4737_be38_981bfa1277fe ; - skos:prefLabel "CurrentLimit"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the electric current of an electrical system"@en . - :electrochemistry_900e357f_2ee3_425a_a0b6_322661117787 a owl:Class ; rdfs:label "ElectrochemicalProperty"@en ; rdfs:subClassOf emmo:EMMO_909415d1_7c43_4d5e_bbeb_7e1910159f66 ; @@ -2292,6 +2328,14 @@ foaf:Person a owl:Class ; emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Faradaic_current"@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://goldbook.iupac.org/terms/view/F02321"@en . +:electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 a owl:Class ; + rdfs:label "CurrentLimit"@en ; + rdfs:comment "limit on the electric current of an electrical system"@en ; + rdfs:subClassOf emmo:EMMO_c995ae70_3b84_4ebb_bcfc_69e6a281bb88, + :electrochemistry_b395a244_3a75_4737_be38_981bfa1277fe ; + skos:prefLabel "CurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the electric current of an electrical system"@en . + :electrochemistry_1cd1d777_e67b_47eb_81f1_edac35d9f2c6 a owl:Class ; rdfs:label "Overpotential"@en ; rdfs:comment "difference between the electrode potential with current flow, and the electrode potential without current flow, i.e. the equilibrium potential"@en, diff --git a/versions/0.5.0/electrochemistry-inferred.ttl b/versions/0.5.0/electrochemistry-inferred.ttl index f4fa0f9..c704a22 100644 --- a/versions/0.5.0/electrochemistry-inferred.ttl +++ b/versions/0.5.0/electrochemistry-inferred.ttl @@ -7,7 +7,7 @@ @base . rdf:type owl:Ontology ; - owl:versionIRI ; + owl:versionIRI ; ""@en , "CHAMEO is a domain ontology designed to model the common aspects across the different characterisation techniques and methodologies."@en , """Defines physical quantities in the International System of Quantities (ISQ). ISQ was made an official ISO standard in 2009 and is defined in the ISO/IEC 80000 standard. @@ -146,12 +146,12 @@ The symbolic module includes symbols, symbolic constructs and formal languages." "https://w3id.org/emmo/domain/characterisation-methodology/chameo" ; "2024-04-12" , "2024-06-23"^^xsd:date , - "2024-07-03"^^xsd:date ; + "2024-07-05"^^xsd:date ; "https://creativecommons.org/licenses/by/4.0/legalcode" , "https://creativecommons.org/licenses/by/4.0/legalcode"@en ; "2024-04-12" , "2024-06-23"^^xsd:date , - "2024-07-03"^^xsd:date ; + "2024-07-05"^^xsd:date ; "EMMC ASBL" , "EMMC ASBL"@en , """EMMC ASBL @@ -241,11 +241,11 @@ We kindly acknowledge NIST for reusing their content, including the selection of "You can contact EMMO Authors via emmo@emmc.eu"@en ; owl:backwardCompatibleWith "" , " " , - "0.16.0-beta" ; - owl:priorVersion "0.16.0-beta" , + "0.17.0-beta" ; + owl:priorVersion "0.17.0-beta" , "0.5.0-beta" , "1.0.0-beta2" ; - owl:versionInfo "0.17.0-beta" , + owl:versionInfo "0.18.0-beta" , "0.6.0-beta" , "1.0.0-beta3" , "1.0.0-beta7" ; @@ -2333,7 +2333,7 @@ While the EMMO FOL introduces the quantum causality relation C(x,y) as primitive rdf:type owl:ObjectProperty ; rdfs:subPropertyOf ; rdfs:domain ; - rdfs:range ; + rdfs:range ; "hasSolvent"@en . @@ -2364,7 +2364,7 @@ While the EMMO FOL introduces the quantum causality relation C(x,y) as primitive rdf:type owl:ObjectProperty ; rdfs:subPropertyOf ; rdfs:domain ; - rdfs:range ; + rdfs:range ; "hasSolute"@en . @@ -34532,7 +34532,7 @@ Wikipedia"""@en ; , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "ZincElectrode"@en ; "an electrode in which the main active material is zinc metal"@en ; @@ -34555,7 +34555,7 @@ Wikipedia"""@en ; rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "LithiumElectrode"@en ; "an electrode in which the active material is lithium metal" . @@ -44391,164 +44391,11 @@ Wear is defined as the progressive removal of the material from a solid surface "InChI=1S/Pb" . -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0139937b_2724_4864_84fb_f14bcfb83538 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0bdf0bb9_41fc_455d_af11_a249e24acdf6 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0f2f65a7_5cc4_4c86_a4d0_676771c646f1 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_250fa43e_1f26_4ed8_b787_91a2325a8e7b - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_25f6ff4c_53ad_4837_97c4_aa6f06099bb5 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_2a540939_3908_4f85_92f9_c46da7d4e9cb - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_2a87ca10_fc6a_4d61_b48c_d9790a566ee3 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_3899a9c9_9b34_443e_8ce6_0257589bb38a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_3ac62305_acd6_4312_9e31_4f824bd2530d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_4126ee09_b9c6_4694_bf33_0d8970e05f72 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_4c62d334_a124_40b3_9fd1_fe713d01a6af - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_5088ad54_b37d_4ee1_a086_d6c17e644f9a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_5cee19d2_f916_4264_a8ed_efed13a808d2 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_68c0876b_cb62_41cd_846d_95cc9d9a8733 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_68f9b85e_340f_46ec_96da_ebb6bd62f5fd - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_73d4606c_7460_4a5c_9413_793bdf35753e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_7dc738d6_74f2_489e_ae84_a6dbdf627f2e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_848003a2_71ee_4967_8039_354c907ec7f4 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_97439fbb_155f_433d_9edd_d510cd491f24 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_9bd78e1c_a4dc_41b6_8013_adb51df1ffdc - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_9da78aea_d436_40e2_a68f_c3dee32b825e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_aa8e9cc4_5f66_4307_b1c8_26fac7653a90 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_acdb232f_8041_4e11_8a11_5db2d2baae4d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_b01771a9_218a_4b01_b20f_4021cfa0b7d5 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_b3815a7f_f64a_48f6_b0ce_d0032578c699 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c109ca45_08c7_4436_a818_a9c575785e2f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c28a0967_ed23_48cc_a14e_a651d75a19db - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c5582dae_ccff_4fbe_adaa_078091054640 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c728b6b9_449a_45ff_b5ae_6b7968708f0d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_cd17ca33_ae3d_4738_8930_547673bf6c1f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_cdd18f0c_e7b3_4d09_b3dd_c09fe4b1adba - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_d53259a7_0d9c_48b9_a6c1_4418169df303 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_d673ceb2_3045_4e2e_8cad_56f5169b542f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_db74b6b7_09fc_40db_a7d5_6eb86b69192a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_dc5fb846_1824_40f8_9834_81f118aa1c2d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_dcdbdbed_2e20_40d1_a7a5_5761de7f0618 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_e1e6ff98_0725_4d27_ab21_2ca5a95371f0 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_e8fafdc8_6cd3_4dd0_9630_10ca8e3f1827 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_f3e7979a_e3ef_450a_8762_7d8778afe478 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_f7525766_90cf_43e9_8932_7cb3b14f676f - rdf:type owl:Class . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626 + rdf:type owl:Class ; + rdfs:subClassOf ; + "ImaginaryElectricImpedance"@en ; + "the imaginary part of the complex electric impedance"@en . ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_01260656_ac32_472e_9513_a607366538ec @@ -44872,11 +44719,11 @@ Wear is defined as the progressive removal of the material from a solid surface rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCLCOElectrode"@en ; @@ -45639,7 +45486,7 @@ and t* through mathematical models, provided that the long-time potential- deter , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LFPElectrode"@en ; @@ -46241,7 +46088,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "PtElectrode"@en ; "PlatinumElectrode"@en ; @@ -46343,7 +46190,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SiliconOxideGraphiteElectrode"@en ; @@ -46477,7 +46324,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "FTOElectrode"@en ; @@ -46500,7 +46347,7 @@ Aluminum foil"""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "NiOOHElectrode"@en , "NickelOxyhydroxideElectrode"@en ; @@ -46544,6 +46391,14 @@ Aluminum foil"""@en . "a coin case with a nominal diameter of 7.9 mm and a height of 1.65 mm"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b + rdf:type owl:Class ; + rdfs:subClassOf , + ; + "Resting"@en ; + "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 rdf:type owl:Class ; rdfs:subClassOf ; @@ -46811,6 +46666,13 @@ Aluminum foil"""@en . "A material relation in electrochemistry."@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45 + rdf:type owl:Class ; + rdfs:subClassOf ; + "UpperCurrentLimit"@en ; + "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3e54f9e3_a31d_4821_9bfb_ef953a42c35b rdf:type owl:Class ; rdfs:subClassOf , @@ -46981,7 +46843,7 @@ Aluminum foil"""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNMOElectrode"@en ; @@ -47201,11 +47063,11 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCLMOElectrode"@en ; @@ -47294,7 +47156,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumNickelPhosphateElectrode"@en ; @@ -47549,7 +47411,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumIronPhosphateElectrode"@en ; @@ -47904,7 +47766,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "CarbonMonofluorideElectrode"@en ; "electrode in which the active material is carbon monofluoride"@en ; @@ -48131,7 +47993,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "HardCarbonElectrode"@en ; "electrode in which the active material is hard carbon"@en . @@ -48291,7 +48153,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "SAE"@en ; "SolidAmalgamElectrode"@en ; @@ -48426,7 +48288,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LTOElectrode"@en ; @@ -48518,20 +48380,13 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ] . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "system that consists of at least two electron conductors (electrodes) in contact with ionic conductors (electrolytes)"@en ; - "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6fec8cc1_4e6c_428e_8343_6cf3c286a185 rdf:type owl:Class ; rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "AuElectrode"@en ; "GoldElectrode"@en ; @@ -48691,7 +48546,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NiOElectrode"@en ; @@ -48721,7 +48576,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "TiO2Electrode"@en ; @@ -48915,13 +48770,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ] . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "in secondary cells, the active material is restored to its original state during charge"@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - [ rdf:type owl:Axiom ; owl:annotatedSource ; owl:annotatedProperty ; @@ -48965,6 +48813,13 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s "an electrode in which the primary active material consists of caesium or caesium compounds"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea + rdf:type owl:Class ; + rdfs:subClassOf ; + "LowerCurrentLimit"@en ; + "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7f073272_8925_4344_995c_a5a6dd1fcde6 rdf:type owl:Class ; rdfs:subClassOf ; @@ -49118,7 +48973,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "LiquidGalliumElectrode"@en ; "a liquid electrode with an active material of gallium"@en . @@ -49188,7 +49043,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "ZnOElectrode"@en ; @@ -49446,6 +49301,13 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "an electrode in which the primary active material consists of sulfur or sulfur compounds"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_88dd2bce_fb17_4705_905d_892681812290 + rdf:type owl:Class ; + rdfs:subClassOf ; + "NumberOfIterations"@en ; + "the number of times an iterative process should occur"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8968eb7a_9a65_4286_a596_c31b998df329 rdf:type owl:Class ; rdfs:subClassOf ; @@ -49504,6 +49366,13 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "substance that increases chemical reaction speed, and which is conserved after the reaction"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100 + rdf:type owl:Class ; + rdfs:subClassOf ; + "NominalCapacity"@en ; + "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8b40856f_1ca2_4137_9616_7fb624671909 rdf:type owl:Class ; rdfs:subClassOf , @@ -50109,7 +49978,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumCobaltPhosphateElectrode"@en ; @@ -50298,13 +50167,6 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; "plate in which the active material is applied as a paste to a conductive current collector"@en . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "plate in which the active material is applied as a paste to a conductive current collector"@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a24f8581_a5a4_41a4_bb45_d0fdd5c0d810 rdf:type owl:Class ; @@ -50397,7 +50259,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "SilverOxideElectrode"@en ; "an electrode in which the primary active material consists of manganese dioxide or vmanganese dioxide compounds"@en ; @@ -50427,7 +50289,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "AgElectrode"@en ; "SilverElectrode"@en ; @@ -50662,7 +50524,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "CupricOxideElectrode"@en ; "CopperOxideElectrode"@en ; @@ -50751,6 +50613,15 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "Environmental_Temperature (C)"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f + rdf:type owl:Class ; + rdfs:subClassOf ; + "ACResistance"@en ; + "RealElectricImpedance"@en ; + "https://www.wikidata.org/wiki/Q1048490"@en ; + "the imaginary part of the complex electric impedance"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abfadc99_6e43_4d37_9b04_7fc5b0f327ae rdf:type owl:Class ; rdfs:subClassOf , @@ -50782,7 +50653,8 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e rdf:type owl:Class ; rdfs:subClassOf ; - "CCCVCycling"@en ; + "CCCVCycling"@en ; + "ConstantCurrentConstantVoltageCycling"@en ; "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en . @@ -51030,7 +50902,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCElectrode"@en ; @@ -51360,11 +51232,11 @@ of other configurations are used."""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNMOLFPElectrode"@en ; @@ -51466,13 +51338,6 @@ of other configurations are used."""@en . "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; "https://en.wikipedia.org/wiki/Fuel_cell"@en . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_bea04148_10d9_4eda_9cd5_8f609d7e9ff8 rdf:type owl:Class ; @@ -51568,7 +51433,7 @@ of other configurations are used."""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LMOElectrode"@en ; @@ -51751,11 +51616,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "ITO"@en ; @@ -51809,7 +51674,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "GraphiteElectrode"@en ; "electrode in which the active material is graphite"@en . @@ -51928,7 +51793,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "MnO2Electrode"@en ; "ManganeseDioxideElectrode"@en ; @@ -51943,7 +51808,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNOElectrode"@en ; @@ -51963,7 +51828,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "IrO2Electrode"@en ; @@ -51977,7 +51842,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumManganesePhosphateElectrode"@en ; @@ -52146,7 +52011,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "IronDisulfideElectrode"@en ; "an electrode in which the primary active material consists of iron disulfide or iron disulfide compounds."@en ; @@ -52509,7 +52374,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "HgElectrode"@en ; "MercuryElectrode"@en ; @@ -52785,11 +52650,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SiliconGraphiteElectrode"@en ; @@ -52802,7 +52667,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumManganeseOxideElectrode"@en ; @@ -53004,7 +52869,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumCobaltOxideElectrode"@en ; @@ -53096,7 +52961,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NCAElectrode"@en ; @@ -53315,7 +53180,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "PbOElectrode"@en ; @@ -53401,7 +53266,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumChromiumOxideElectrode"@en ; @@ -53621,7 +53486,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LCOElectrode"@en ; @@ -53672,11 +53537,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LMOLFPElectrode"@en ; @@ -53808,10 +53673,10 @@ In either case, the magnitude of the catalytic current depends on the applied po "The universe is considered as a causally self-connected object, encompassing all other objects. For this reason is unique."@en . -[ owl:qualifiedCardinality "3"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "3"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "4"^^xsd:nonNegativeInteger @@ -53835,10 +53700,10 @@ In either case, the magnitude of the catalytic current depends on the applied po [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:minQualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:minQualifiedCardinality "2"^^xsd:nonNegativeInteger +[ owl:minQualifiedCardinality "1"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger @@ -53850,7 +53715,7 @@ In either case, the magnitude of the catalytic current depends on the applied po [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:minQualifiedCardinality "2"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger diff --git a/versions/0.5.0/electrochemistry.ttl b/versions/0.5.0/electrochemistry.ttl index baa1206..d442e3c 100644 --- a/versions/0.5.0/electrochemistry.ttl +++ b/versions/0.5.0/electrochemistry.ttl @@ -1,6 +1,6 @@ @prefix : . @prefix bibo: . -@prefix chemsub: . +@prefix chemsub: . @prefix dcterms: . @prefix emmo: . @prefix foaf: . @@ -54,9 +54,9 @@ schema:name a owl:AnnotationProperty . dcterms:created "2022-11-25"^^xsd:date ; dcterms:creator , ; - dcterms:issued "2024-07-03"^^xsd:date ; + dcterms:issued "2024-07-05"^^xsd:date ; dcterms:license "https://creativecommons.org/licenses/by/4.0/legalcode" ; - dcterms:modified "2024-07-03"^^xsd:date ; + dcterms:modified "2024-07-05"^^xsd:date ; dcterms:publisher "EMMO" ; dcterms:source , , @@ -67,13 +67,13 @@ schema:name a owl:AnnotationProperty . bibo:status "unstable" ; vann:preferredNamespacePrefix "echem" ; vann:preferredNamespaceUri "https://w3id.org/emmo/domain/electrochemistry" ; - owl:backwardCompatibleWith "0.16.0-beta" ; + owl:backwardCompatibleWith "0.17.0-beta" ; owl:imports , , - ; - owl:priorVersion "0.16.0-beta" ; - owl:versionIRI ; - owl:versionInfo "0.17.0-beta" ; + ; + owl:priorVersion "0.17.0-beta" ; + owl:versionIRI ; + owl:versionInfo "0.18.0-beta" ; foaf:logo "https://raw.githubusercontent.com/emmo-repo/domain-electrochemistry/gh-pages/assets/img/fig/png/domain-electrochemistry-logo.png" . :electrochemistry_027d437e_3bbf_4eda_940b_e509f8d2b993 a owl:Class ; @@ -535,6 +535,14 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "R716" ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a coin case with a nominal diameter of 7.9 mm and a height of 1.65 mm"@en . +:electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b a owl:Class ; + rdfs:label "Resting"@en ; + rdfs:comment "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en ; + rdfs:subClassOf , + :electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 ; + skos:prefLabel "Resting"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en . + :electrochemistry_36444184_1100_4271_869f_7f2d983aaecb a owl:Class ; rdfs:label "P45173115" ; rdfs:comment "a prismatic case with a nominal length of 45 mm, width of 173 mm, and height of 115 mm"@en ; @@ -1564,6 +1572,15 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "TinBasedElectrode"@en ; emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "an electrode in which the primary active material consists of tin or tin compounds"@en . +:electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c a owl:Class ; + rdfs:label "PastedPlate"@en ; + rdfs:comment "plate in which the active material is applied as a paste to a conductive current collector"@en ; + rdfs:subClassOf :electrochemistry_92147e31_d015_4889_a092_04fbab033f15 ; + skos:altLabel "PastedElectrode"@en ; + skos:prefLabel "PastedPlate"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "plate in which the active material is applied as a paste to a conductive current collector"@en . + :electrochemistry_a277e420_2483_44d5_a2bc_4e421dea231a a owl:Class ; rdfs:label "R926" ; rdfs:comment "a coin case with a nominal diameter of 9.5 mm and a height of 2.6 mm"@en ; @@ -1658,10 +1675,11 @@ schema:name a owl:AnnotationProperty . emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a coin case with a nominal diameter of 11.6 mm and a height of 4.2 mm"@en . :electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e a owl:Class ; - rdfs:label "CCCVCycling"@en ; + rdfs:label "ConstantCurrentConstantVoltageCycling"@en ; rdfs:comment "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en ; rdfs:subClassOf :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; - skos:prefLabel "CCCVCycling"@en ; + skos:altLabel "CCCVCycling"@en ; + skos:prefLabel "ConstantCurrentConstantVoltageCycling"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en . :electrochemistry_ad9cdad6_66e8_471e_a7c6_b79f37c20814 a owl:Class ; @@ -1783,6 +1801,17 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "P20100141" ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a prismatic case with a nominal length of 20 mm, width of 100 mm, and height of 141 mm"@en . +:electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d a owl:Class ; + rdfs:label "FuelCell"@en ; + rdfs:comment "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; + rdfs:subClassOf :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; + skos:prefLabel "FuelCell"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q180253"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-05"@en ; + emmo:EMMO_6dd685dd_1895_46e4_b227_be9f7d643c25 "https://dbpedia.org/page/Fuel_cell"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; + emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Fuel_cell"@en . + :electrochemistry_bea04148_10d9_4eda_9cd5_8f609d7e9ff8 a owl:Class ; rdfs:label "CelsiusTemperatureMeasurement"@en ; rdfs:comment "measurement of temperature"@en ; @@ -3335,15 +3364,6 @@ schema:name a owl:AnnotationProperty . "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-26"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "interface between an electrolyte and an electrode where an electrode reaction takes place."@en . -:electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c a owl:Class ; - rdfs:label "PastedPlate"@en ; - rdfs:comment "plate in which the active material is applied as a paste to a conductive current collector"@en ; - rdfs:subClassOf :electrochemistry_92147e31_d015_4889_a092_04fbab033f15 ; - skos:altLabel "PastedElectrode"@en ; - skos:prefLabel "PastedPlate"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "plate in which the active material is applied as a paste to a conductive current collector"@en . - :electrochemistry_a462859d_d8bd_48ea_8bde_1576f1248a1e a owl:Class ; rdfs:label "SilverElectrode"@en ; rdfs:comment "electrode in the form of foil, mesh, wire, rod, tube, powder, pellets, or single crystal of silver"@en ; @@ -3459,17 +3479,6 @@ of other configurations are used."""@en . emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-19"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "part which insures insulation between the plate (electrode) edges and adjacent plates (electrodes) and the container side walls"@en . -:electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d a owl:Class ; - rdfs:label "FuelCell"@en ; - rdfs:comment "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - rdfs:subClassOf :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; - skos:prefLabel "FuelCell"@en ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q180253"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-05"@en ; - emmo:EMMO_6dd685dd_1895_46e4_b227_be9f7d643c25 "https://dbpedia.org/page/Fuel_cell"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Fuel_cell"@en . - :electrochemistry_bed5b5f9_b89d_45e3_a8c2_81b70ae21847 a owl:Class ; rdfs:label "SeriesParallelConnection"@en ; rdfs:comment "arrangement of cells or batteries wherein in series connected cells or batteries are connected in parallel."@en ; @@ -4518,15 +4527,20 @@ schema:Person a owl:Class ; skos:prefLabel "BimetallicOxideElectrode"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "an electrode consisting of two metal oxide active materials"@en . -:electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 a owl:Class ; - rdfs:label "GalvanostaticProcess"@en ; - rdfs:comment "a process in which the electric current is kept constant"@en ; - rdfs:subClassOf [ a owl:Restriction ; - owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; 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+ emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; + emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "material which reacts chemically to produce electric energy when the cell discharges", + "in secondary cells, the active material is restored to its original state during charge"@en . :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 a owl:Class ; rdfs:label "PotentiometricStrippingAnalysis"@en ; @@ -4601,20 +4615,15 @@ schema:Person a owl:Class ; "The electrode (or interfacial) reaction involves all the processes (chemical reaction, structural reorganization, adsorption) accompanying the charge transfer step."@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1351/goldbook.E01960"@en . -:electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 a owl:Class ; - rdfs:label "ActiveMaterial"@en ; - rdfs:comment "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; - rdfs:subClassOf :electrochemistry_b5ea31c9_bb10_4276_980e_c3eceb1efc82, - :electrochemistry_ebdb68e9_c4b5_4d57_a042_c0f51d446755 ; - skos:altLabel "ActiveElectrochemicalMaterial"@en, - "ElectrochemicallyActiveMaterial"@en ; - skos:prefLabel "ActiveMaterial"@en ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q120907375" ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-33", - "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-14"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "material which reacts chemically to produce electric energy when the cell discharges", - "in secondary cells, the active material is restored to its original state during charge"@en . +:electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 a owl:Class ; + rdfs:label "GalvanostaticProcess"@en ; + rdfs:comment "a process in which the electric current is kept constant"@en ; + rdfs:subClassOf [ a owl:Restriction ; + owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; + owl:someValuesFrom :electrochemistry_22725105_c941_4b14_a4a2_fcb627958607 ], + :electrochemistry_5548f188_df00_4c05_ae98_7846e92efe36 ; + skos:prefLabel "GalvanostaticProcess"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a process in which the electric current is kept constant"@en . :electrochemistry_8a1c9a7b_978c_4421_a9c1_d0b07b42aab9 a owl:Class ; rdfs:label "ChemicalReaction"@en ; @@ -4953,9 +4962,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "extremely resistant to many chemicals, impermeable to gases and liquids, and has good electrical conductivity, high hardness and strength, and biocompatibility"@en . + owl:annotatedTarget "electrode made of glassy carbon material with an intertwined graphitic ribbon structure, formed by pyrolysis of a resol precursor at temperatures up to 3000 °C"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -4976,28 +4985,22 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "A disc electrode that is embedded in the centre of a cylinder which rotates in solution around the longitudinal cylinder axis."@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "composite system in which the supplied electric energy mainly produces chemical reactions or, conversely, in which the energy released by chemical reactions is mainly delivered by the system as electric energy"@en . + owl:annotatedTarget "a system containing two electrodes that allow transport of electrons, separated by an electrolyte that allows movement of ions but blocks movement of electrons."@en . [] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "system that consists of at least two electron conductors (electrodes) in contact with ionic conductors (electrolytes)"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" . + owl:annotatedTarget "composite system in which the supplied electric energy mainly produces chemical reactions or, conversely, in which the energy released by chemical reactions is mainly delivered by the system as electric energy"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "glassy carbon combines glass-like mechanical characteristics with physical properties similar to graphite, owing to its “graphene ribbon” structure"@en . - -[] a owl:Axiom ; - dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "a system containing two electrodes that allow transport of electrons, separated by an electrolyte that allows movement of ions but blocks movement of electrons."@en . + owl:annotatedTarget "extremely resistant to many chemicals, impermeable to gases and liquids, and has good electrical conductivity, high hardness and strength, and biocompatibility"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5033,13 +5036,13 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "one of the most frequently used working electrodes"@en . + owl:annotatedTarget "glassy carbon combines glass-like mechanical characteristics with physical properties similar to graphite, owing to its “graphene ribbon” structure"@en . [] a owl:Axiom ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; - owl:annotatedTarget "in secondary cells, the active material is restored to its original state during charge"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedTarget "material that is oxidized or reduced at an electrode in an electrochemical cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5047,12 +5050,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; owl:annotatedTarget "material which reacts chemically to produce electric energy when the cell discharges" . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; - owl:annotatedTarget "material that is oxidized or reduced at an electrode in an electrochemical cell"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5061,9 +5058,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "electrode made of glassy carbon material with an intertwined graphitic ribbon structure, formed by pyrolysis of a resol precursor at temperatures up to 3000 °C"@en . + owl:annotatedTarget "one of the most frequently used working electrodes"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5083,18 +5080,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_83f2b1e9_cb67_4dbf_977f_ba54bbae374f ; owl:annotatedTarget "charge during which the electric current is maintained at a constant value regardless of the battery voltage or temperature"@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; - owl:annotatedTarget "Electrolyte solution in the anodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the anode is placed."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; owl:annotatedTarget "electrolyte on the anode side of an electrochemical cell that is divided into compartments"@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; + owl:annotatedTarget "Electrolyte solution in the anodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the anode is placed."@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5133,15 +5130,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_8d3bf304_78e4_4e99_abe1_6ab429e44ed1 ; - owl:annotatedTarget "a sealed cell may be equipped with a safety device to prevent a dangerously high internal pressure and is designed to operate during its life in its original sealed state"@en . + owl:annotatedTarget "cell which remains closed and does not release either gas or liquid when operated within the limits specified by the manufacturer"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_8d3bf304_78e4_4e99_abe1_6ab429e44ed1 ; - owl:annotatedTarget "cell which remains closed and does not release either gas or liquid when operated within the limits specified by the manufacturer"@en . + owl:annotatedTarget "a sealed cell may be equipped with a safety device to prevent a dangerously high internal pressure and is designed to operate during its life in its original sealed state"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5150,10 +5147,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "capacitor consisting of a metallic plate as first conductor, a very thin oxide film formed on the metal as the dielectric and an electrolyte as second conductor"@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_06d8e1ee_924a_4915_998d_33a69f41dadc ; - owl:annotatedTarget "operation during which an electrochemical cell supplies electric energy as the result of chemical changes within the cell"@en . + owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; + owl:annotatedTarget "two-step electrochemical measurement in which 1) material is accumulated at an electrode and 2) the material is removed by chemical reaction or electrochemically at constant current with measurement of electrode potential"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5161,6 +5158,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; owl:annotatedTarget "historically for the analysis of metal ions, mercury ions were added to the test solution to form a mercury amalgam when reduced. Alternatively, an HMDE or MFE was used and the oxidizing agent added after amalgam formation. However, the toxicity of mercury and its compounds have all but precluded the present-day use of mercury"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_06d8e1ee_924a_4915_998d_33a69f41dadc ; + owl:annotatedTarget "operation during which an electrochemical cell supplies electric energy as the result of chemical changes within the cell"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5179,12 +5182,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; owl:annotatedTarget "the time between changes in potential in step 2 is related to the concentration of analyte in the solution"@en . -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; - owl:annotatedTarget "two-step electrochemical measurement in which 1) material is accumulated at an electrode and 2) the material is removed by chemical reaction or electrochemically at constant current with measurement of electrode potential"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5211,15 +5208,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_9ee6e728_e8f5_4b36_a045_d63da69dfc85 ; - owl:annotatedTarget "overcharge is also the act of charging beyond a certain limit specified by the manufacturer"@en . + owl:annotatedTarget "continued charging of a fully charged secondary cell or battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_9ee6e728_e8f5_4b36_a045_d63da69dfc85 ; - owl:annotatedTarget "continued charging of a fully charged secondary cell or battery"@en . + owl:annotatedTarget "overcharge is also the act of charging beyond a certain limit specified by the manufacturer"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5227,6 +5224,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_9f466223_e20a_474d_ac4d_6d4b6131c275 ; owl:annotatedTarget "an electrode that holds its potential essentially constant by efficiently allowing electric current to pass"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_a0580fa9_5073_44af_b33e_7adbc83892d0 ; + owl:annotatedTarget "electrode reaction in which oxidation occurs at the anode"@en . + [] a owl:Axiom ; dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5242,14 +5245,14 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0580fa9_5073_44af_b33e_7adbc83892d0 ; - owl:annotatedTarget "electrode reaction in which oxidation occurs at the anode"@en . + owl:annotatedSource :electrochemistry_a0a619d7_da95_41f0_8bc3_9c19d636d543 ; + owl:annotatedTarget "electrode that serves only as a source or sink for electrons without playing a chemical role in the electrode reaction"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0a619d7_da95_41f0_8bc3_9c19d636d543 ; - owl:annotatedTarget "electrode that serves only as a source or sink for electrons without playing a chemical role in the electrode reaction"@en . + owl:annotatedSource :electrochemistry_a0fcb105_587f_45d8_a89a_46dc8f745069 ; + owl:annotatedTarget "partial or complete external covering of a cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5260,14 +5263,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0fcb105_587f_45d8_a89a_46dc8f745069 ; - owl:annotatedTarget "partial or complete external covering of a cell"@en . - -[] a owl:Axiom ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c ; - owl:annotatedTarget "plate in which the active material is applied as a paste to a conductive current collector"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedSource :electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e ; + owl:annotatedTarget "process inside an electrolytic cell used to coat a conductive object with a layer of a material"@en . [] a owl:Axiom ; dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; @@ -5278,8 +5275,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e ; - owl:annotatedTarget "process inside an electrolytic cell used to coat a conductive object with a layer of a material"@en . + owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; + owl:annotatedTarget "component of a cell which permits the flow of gas in one direction only"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5287,12 +5284,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; owl:annotatedTarget "a valve has a characteristic venting or opening and closing pressure"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; - owl:annotatedTarget "component of a cell which permits the flow of gas in one direction only"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5305,6 +5296,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a462859d_d8bd_48ea_8bde_1576f1248a1e ; owl:annotatedTarget "electrode in the form of foil, mesh, wire, rod, tube, powder, pellets, or single crystal of silver"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; + owl:annotatedTarget "a chemical reaction in an electrolyte involving a transfer of electrons between chemical components or between chemical components and an electrode"@en . + [] a owl:Axiom ; dcterms:source "Bockris, J. O'M. and Despić, . Aleksandar R. (2011, December 15). Electrochemical reaction. Encyclopedia Britannica. https://www.britannica.com/science/electrochemical-reaction" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5317,12 +5314,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; owl:annotatedTarget "the electrode reaction can also involve other chemical reactions including subreactions on a cell electrode"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; - owl:annotatedTarget "a chemical reaction in an electrolyte involving a transfer of electrons between chemical components or between chemical components and an electrode"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5355,15 +5346,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_ae56cce3_7a7c_4e53_bb58_31e0d642d47e ; - owl:annotatedTarget "this flame front may originate from a spark or an external naked flame igniting combustible electrolysis gas"@en . + owl:annotatedTarget "vent of special design which provides protection against the propagation of a flame front from or into the interior of a secondary cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_ae56cce3_7a7c_4e53_bb58_31e0d642d47e ; - owl:annotatedTarget "vent of special design which provides protection against the propagation of a flame front from or into the interior of a secondary cell"@en . + owl:annotatedTarget "this flame front may originate from a spark or an external naked flame igniting combustible electrolysis gas"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5395,6 +5386,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_b525a629_a679_464f_bc5b_b49d2fc82686 ; owl:annotatedTarget "an electrochemical cell for conductivity measurements"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; + owl:annotatedTarget "by convention, cell electrode at which an oxidation reaction occurs"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5419,12 +5416,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; owl:annotatedTarget "the concepts of “anode” and “cathode” are related only to the direction of electron flow, not to the polarity of the electrodes"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; - owl:annotatedTarget "by convention, cell electrode at which an oxidation reaction occurs"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5433,15 +5424,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_b79d4f9e_5727_4895_8d7f_5fc18d83eb90 ; - owl:annotatedTarget "in a galvanic cell, parasitic reactions may cause inefficiencies or loss of performance"@en . + owl:annotatedTarget "an unwanted side reaction"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_b79d4f9e_5727_4895_8d7f_5fc18d83eb90 ; - owl:annotatedTarget "an unwanted side reaction"@en . + owl:annotatedTarget "in a galvanic cell, parasitic reactions may cause inefficiencies or loss of performance"@en . [] a owl:Axiom ; dcterms:source "IEEE Standard Glossary of Stationary Battery Terminology (2016), https://doi.org/10.1109/IEEESTD.2016.7552407" ; @@ -5481,12 +5472,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_bbae1ef4_0a95_4e7d_9932_1bf939129eef ; owl:annotatedTarget "current-potential curve in a voltammetry experiment"@en . -[] a owl:Axiom ; - dcterms:source "https://en.wikipedia.org/wiki/Square_wave" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0e33278b_639f_412d_9abd_64c3790026ef ; - owl:annotatedTarget "Periodic potential where the amplitude alternates at a steady frequency between fixed minimum and maximum values, with the same duration at minimum and maximum."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5500,10 +5485,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "part which insures insulation between the plate (electrode) edges and adjacent plates (electrodes) and the container side walls"@en . [] a owl:Axiom ; + dcterms:source "https://en.wikipedia.org/wiki/Square_wave" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d ; - owl:annotatedTarget "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedSource :electrochemistry_0e33278b_639f_412d_9abd_64c3790026ef ; + owl:annotatedTarget "Periodic potential where the amplitude alternates at a steady frequency between fixed minimum and maximum values, with the same duration at minimum and maximum."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5535,12 +5520,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_c3f4b34a_0e2c_46f3_baab_4ebd2682d26f ; owl:annotatedTarget "An ionic liquid is an electrolyte composed of a salt that is liquid below 100 °C. Ionic liquids have found uses in electrochemical analysis, because their unconventional properties include a negligible vapor pressure, a high thermal and electrochemical stability, and exceptional dissolution properties for both organic and inorganic chemical species."@en . -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; - owl:annotatedTarget "Electron conductor in an electrochemical cell connected to the external circuit."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5553,6 +5532,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_c55ec02c_b727_4df1_97ce_91d7bb5d5e91 ; owl:annotatedTarget "unplanned escape of electrolyte, gas or other material from a cell or battery"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_c610d869_cc03_44f0_b40d_ca86e945b9c9 ; + owl:annotatedTarget "cell from which electrolyte cannot escape regardless of its orientation"@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5562,8 +5547,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_c610d869_cc03_44f0_b40d_ca86e945b9c9 ; - owl:annotatedTarget "cell from which electrolyte cannot escape regardless of its orientation"@en . + owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; + owl:annotatedTarget "electronically conductive part in electric contact with a medium of lower electronic conductivity and intended to perform one or more of the functions of emitting charge carriers to or receiving charge carriers from that medium or to establish an electric field in that medium"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5579,21 +5564,21 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; - owl:annotatedTarget "by convention, an oxidation reaction occurs during discharge"@en . + owl:annotatedTarget "for a device having two electrodes, that electrode having the lower electric potential"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; - owl:annotatedTarget "electronically conductive part in electric contact with a medium of lower electronic conductivity and intended to perform one or more of the functions of emitting charge carriers to or receiving charge carriers from that medium or to establish an electric field in that medium"@en . + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; + owl:annotatedTarget "by convention, an oxidation reaction occurs during discharge"@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; - owl:annotatedTarget "for a device having two electrodes, that electrode having the lower electric potential"@en . + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; + owl:annotatedTarget "Electron conductor in an electrochemical cell connected to the external circuit."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5604,8 +5589,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0f827b54_370d_4c63_99a6_80f13b24e55e ; - owl:annotatedTarget "evolution of gas resulting from electrolysis of the water in the electrolyte of a cell"@en . + owl:annotatedSource :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; + owl:annotatedTarget "set of operations that is carried out on a secondary cell or battery and is repeated regularly in the same sequence."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5622,14 +5607,14 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; - owl:annotatedTarget "set of operations that is carried out on a secondary cell or battery and is repeated regularly in the same sequence."@en . + owl:annotatedSource :electrochemistry_d5da9948_e95b_4f12_a2d2_10a48f390c52 ; + owl:annotatedTarget "arrangement of cells or batteries wherein parallel connected cells or batteries are connected in series."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_d5da9948_e95b_4f12_a2d2_10a48f390c52 ; - owl:annotatedTarget "arrangement of cells or batteries wherein parallel connected cells or batteries are connected in series."@en . + owl:annotatedSource :electrochemistry_0f827b54_370d_4c63_99a6_80f13b24e55e ; + owl:annotatedTarget "evolution of gas resulting from electrolysis of the water in the electrolyte of a cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5655,18 +5640,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_df78745e_f9db_4830_88f0_8ce074fcb8ff ; owl:annotatedTarget "liquid metal electrode used in polarography"@en . +[] a owl:Axiom ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; + owl:annotatedTarget "electrochemical cell in which chemical reactions occur spontaneously and chemical energy is converted into electrical energy."@en . + [] a owl:Axiom ; dcterms:references "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; owl:annotatedTarget "An electrochemical cell that spontaneously produces work."@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_113e0469_8ae0_407f_892d_4b988f8d8a08 ; - owl:annotatedTarget "electrochemical cell that has two half-cells separated by a wall permeable to ions, both containing the same electrolyte differing only in their temperatures."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5674,16 +5659,22 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "Electrochemical cell intended to produce electric energy."@en . [] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; - owl:annotatedTarget "electrochemical cell in which chemical reactions occur spontaneously and chemical energy is converted into electrical energy."@en . + owl:annotatedSource :electrochemistry_e2a1dae1_05e4_4bd1_a39d_0eb10db482bc ; + owl:annotatedTarget "method of separating and neutralizing ions by an electric current in an electrolytic cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e2a1dae1_05e4_4bd1_a39d_0eb10db482bc ; - owl:annotatedTarget "method of separating and neutralizing ions by an electric current in an electrolytic cell"@en . + owl:annotatedSource :electrochemistry_113e0469_8ae0_407f_892d_4b988f8d8a08 ; + owl:annotatedTarget "electrochemical cell that has two half-cells separated by a wall permeable to ions, both containing the same electrolyte differing only in their temperatures."@en . + +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; + owl:annotatedTarget "electrochemical cell intended to produce chemical reactions"@en . [] a owl:Axiom ; dcterms:references "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; @@ -5697,18 +5688,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; owl:annotatedTarget "Electrochemical cell in which electrical energy is converted into chemical energy."@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; - owl:annotatedTarget "electrochemical cell intended to produce chemical reactions"@en . - -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_1152ae6b_8b57_4d99_912e_40c6a29342fb ; - owl:annotatedTarget "mass m of electrochemically-transformed substance is proportional to the charge Q passed, m ∝ Q."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5721,6 +5700,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_ec1dce8b_bb46_41a9_b532_6bed381aa557 ; owl:annotatedTarget "secondary cell having a cover provided with an opening through which products of electrolysis and evaporation are allowed to escape freely from the cell to the atmosphere"@en . +[] a owl:Axiom ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_1152ae6b_8b57_4d99_912e_40c6a29342fb ; + owl:annotatedTarget "mass m of electrochemically-transformed substance is proportional to the charge Q passed, m ∝ Q."@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5739,12 +5724,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f0c24970_4c14_4207_bd78_5f2181a67085 ; owl:annotatedTarget "the process of forming a film or a bulk material using an electrochemical process where the electrons are supplied by an external power supply"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_1355816f_a2b5_4800_8001_fc888f5d6b1b ; - owl:annotatedTarget "instrument intended to measure the value of a voltage."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5757,6 +5736,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f47611a2_e081_47f0_b287_3fda5f706154 ; owl:annotatedTarget "chemical reaction which occurs in addition to the main process"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; + owl:annotatedTarget "electrode reaction in which reduction occurs at the cathode"@en . + +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_1355816f_a2b5_4800_8001_fc888f5d6b1b ; + owl:annotatedTarget "instrument intended to measure the value of a voltage."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5769,12 +5760,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; owl:annotatedTarget "electrode reaction, where the energy of electrons in the working electrode is higher than the LUMO orbital of the substrate"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; - owl:annotatedTarget "electrode reaction in which reduction occurs at the cathode"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5782,10 +5767,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "electrode that responds to one, or more than one, species in the solution being investigated, with no appreciable change of bulk solution composition during the measurement"@en . [] a owl:Axiom ; - dcterms:source "IUPAC. Compendium of Chemical Terminology, 2nd ed. (the \"Gold Book\"). Compiled by A. D. McNaught and A. Wilkinson. Blackwell Scientific Publications, Oxford (1997). Online version (2019-) created by S. J. Chalk. ISBN 0-9678550-9-8. https://doi.org/10.1351/goldbook." ; + dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_15325775_6d4c_4192_82f1_e4feca9de426 ; - owl:annotatedTarget "A membrane having ion-exchange groups:"@en . + owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; + owl:annotatedTarget "a material in which the mobile species are ions and free movement of electrons is blocked."@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5799,18 +5784,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; owl:annotatedTarget "liquid or solid substance containing mobile ions that render it conductive"@en . +[] a owl:Axiom ; + dcterms:source "IUPAC. Compendium of Chemical Terminology, 2nd ed. (the \"Gold Book\"). Compiled by A. D. McNaught and A. Wilkinson. Blackwell Scientific Publications, Oxford (1997). Online version (2019-) created by S. J. Chalk. ISBN 0-9678550-9-8. https://doi.org/10.1351/goldbook." ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_15325775_6d4c_4192_82f1_e4feca9de426 ; + owl:annotatedTarget "A membrane having ion-exchange groups:"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; owl:annotatedTarget "substance that provides ions on dissolution in a solvent or on melting"@en . -[] a owl:Axiom ; - dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; - owl:annotatedTarget "a material in which the mobile species are ions and free movement of electrons is blocked."@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5823,18 +5808,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_fb9bf7cb_dd4b_4391_99a1_628263dd6940 ; owl:annotatedTarget "measuring instrument to obtain the electrical charge passed in an experiment, or to produce a known amount of substance in a titration."@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; - owl:annotatedTarget "Electrolyte solution in the cathodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the cathode is placed."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; owl:annotatedTarget "electrolyte on the cathode side of an electrochemical cell that is divided into compartments."@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; + owl:annotatedTarget "Electrolyte solution in the cathodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the cathode is placed."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5931,18 +5916,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_2d32a81a_2148_41bd_84fb_467aa8de4a8f ; owl:annotatedTarget "foil, wire, disc, or mesh electrode made of platinum, which is the most commonly used metallic working electrode in electrochemistry"@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; - owl:annotatedTarget "An interfacial reaction that necessarily involves a charge-transfer step."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; owl:annotatedTarget "electrochemical reaction involving the transfer of electrons between electrolyte and electrode"@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; + owl:annotatedTarget "An interfacial reaction that necessarily involves a charge-transfer step."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5957,15 +5942,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_328c6e36_3706_4d92_abae_432fa3adb2a0 ; - owl:annotatedTarget "a cell baffle has a second function in protecting the plate pack from damage by objects inserted through the filling hole"@en . + owl:annotatedTarget "internal component used to reduce the amount of electrolyte loss due to electrolyte spray being carried in the gas and/or by electrolyte movement"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_328c6e36_3706_4d92_abae_432fa3adb2a0 ; - owl:annotatedTarget "internal component used to reduce the amount of electrolyte loss due to electrolyte spray being carried in the gas and/or by electrolyte movement"@en . + owl:annotatedTarget "a cell baffle has a second function in protecting the plate pack from damage by objects inserted through the filling hole"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5979,6 +5964,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_34bc54e3_de4c_41f8_8d3a_d77c951ee23a ; owl:annotatedTarget "needle-like or tree-like formation of crystalline growth formed during deposition of a material"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; + owl:annotatedTarget "by convention, cell electrode at which, a reduction reaction occurs"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5997,12 +5988,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; owl:annotatedTarget "the concepts of “anode” and “cathode” are related only to the direction of electron flow, not to the polarity of the electrodes"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; - owl:annotatedTarget "by convention, cell electrode at which, a reduction reaction occurs"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -6023,15 +6008,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_3f6c9e09_5f23_41cc_9f85_7de365cef089 ; - owl:annotatedTarget "electrolyte creep is sometimes indicated by the presence of a visible solid deposit or wet spots"@en . + owl:annotatedTarget "gradual and slow spreading of an electrolyte film on the external surface of a cell or battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_3f6c9e09_5f23_41cc_9f85_7de365cef089 ; - owl:annotatedTarget "gradual and slow spreading of an electrolyte film on the external surface of a cell or battery"@en . + owl:annotatedTarget "electrolyte creep is sometimes indicated by the presence of a visible solid deposit or wet spots"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -6041,9 +6026,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_04f28ce3_251d_429e_aa85_ab3eb45bbcd2 ; - owl:annotatedTarget "in lithium batteries thermal runaway may cause melting of lithium"@en . + owl:annotatedTarget "unstable condition arising during constant voltage charge in which the rate of heat dissipation capability, causing a continuous temperature increase with resulting further charge current increase, which can lead to the destruction of the battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -6077,9 +6062,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_04f28ce3_251d_429e_aa85_ab3eb45bbcd2 ; - owl:annotatedTarget "unstable condition arising during constant voltage charge in which the rate of heat dissipation capability, causing a continuous temperature increase with resulting further charge current increase, which can lead to the destruction of the battery"@en . + owl:annotatedTarget "in lithium batteries thermal runaway may cause melting of lithium"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; diff --git a/versions/0.6.0/context/context.json b/versions/0.6.0/context/context.json index ac1b0bb..2006ca7 100644 --- a/versions/0.6.0/context/context.json +++ b/versions/0.6.0/context/context.json @@ -1076,7 +1076,6 @@ "ButlerVolmerEquation": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d48ea516_5cac_4f86_bc88_21b6276c0938", "C": "https://w3id.org/emmo#EMMO_36a9bf69_483b_42fd_8a0c_7ac9206320bc", "CASRN": "https://w3id.org/emmo#EMMO_d2a47cd8_662f_438f_855a_b4378eb992ff", - "CCCVCycling": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e", "CPlusPlus": "https://w3id.org/emmo#EMMO_64aba1e5_24b7_4140_8eb4_676c35698e79", "CRate": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_e1fd84eb_acdb_4b2c_b90c_e899d552a3ee", "CSharp": "https://w3id.org/emmo#EMMO_268a8a97_3a6f_4022_93da_962a66827cdc", @@ -1285,7 +1284,7 @@ "CoatingThickness": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3b938708_e7e4_4ac0_a959_9c04306302e7", "Cobalt": "https://w3id.org/emmo/domain/chemical-substance#substance_8f857eb2_7cc8_4294_954d_e69f2842c084", "CobaltAtom": "https://w3id.org/emmo#EMMO_3fe9d899_f1f1_5657_b176_ac6afff2e93d", - "CobaltBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_838c115b_6bc9_4ce8_9f8d_86a6bf67742a", + "CobaltBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7b811780_7251_481b_a4d3_97d437955099", "CobaltHydroxide": "https://w3id.org/emmo/domain/chemical-substance#substance_29b1c15d_2632_40d7_88f7_43575b68b988", "CobaltIIAcetate": "https://w3id.org/emmo/domain/chemical-substance#substance_4310c690_9810_4a95_8d62_7e78e0b84437", "CobaltIIBistrifluoromethanesulfonylimide": "https://w3id.org/emmo/domain/chemical-substance#substance_f4dffee2_c642_4114_a748_5e93b3908380", @@ -1358,6 +1357,7 @@ "ConstantCurrentCharging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_83f2b1e9_cb67_4dbf_977f_ba54bbae374f", "ConstantCurrentChargingCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_37c38b7e_9ded_481a_85fd_a467f1ee2b9f", "ConstantCurrentConstantVoltageCharging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0cc8f231_0ce5_467e_9c76_29b2c80349ad", + "ConstantCurrentConstantVoltageCycling": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e", "ConstantCurrentDischarging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_53fe3f58_0802_41cf_af69_4784fc42cc30", "ConstantCurrentDischargingCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_08833ed2_6324_411a_b34b_fe64c44cd5ef", "ConstantPotentialPulses": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_84d37a37_88bd_47db_9425_31f73a81d38c", @@ -1590,7 +1590,7 @@ "DeviceTemperature": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_463950b9_fd8d_48de_a52d_b29cab026391", "DewPointTemperature": "https://w3id.org/emmo#EMMO_a383e332_a271_463f_9e44_559604547220", "Diameter": "https://w3id.org/emmo#EMMO_c1c8ac3c_8a1c_4777_8e0b_14c1f9f9b0c6", - "Dichloromethane": "https://w3id.org/emmo/domain/chemical-substance#substance_8385c3c4_5906_48f6_b6b6_4bb60dccc27a", + "Dichloromethane": "https://w3id.org/emmo/domain/chemical-substance#substance_a6feec60_5fe7_4687_b427_3bf2ed06008d", "DieCasting": "https://w3id.org/emmo#EMMO_a85d0b8a_588e_423f_b799_97b0890e9183", "DielectricAndImpedanceSpectroscopy": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#DielectricAndImpedanceSpectroscopy", "Dielectrometry": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Dielectrometry", @@ -1624,7 +1624,7 @@ "Dimethoxyethane": "https://w3id.org/emmo/domain/chemical-substance#substance_b6ecabf9_14a4_4808_a139_55329e70ad42", "Dimethoxymethane": "https://w3id.org/emmo/domain/chemical-substance#substance_21954b0b_c05c_42db_b276_3a931d8aabb1", "DimethylCarbonate": "https://w3id.org/emmo/domain/chemical-substance#substance_c4a7d7bd_497e_457e_b858_ff73254266d0", - "DimethylSulfoxide": "https://w3id.org/emmo/domain/chemical-substance#substance_b593b5dd_7957_4b85_856a_dd59775210b6", + "DimethylSulfoxide": "https://w3id.org/emmo/domain/chemical-substance#substance_ea68e1a4_6be8_4686_8701_ba88b40d00b7", "Dimethylformamide": "https://w3id.org/emmo/domain/chemical-substance#substance_769bdc09_f533_4fde_bb53_20339d5bfcb7", "Dimethylpropyleneurea": "https://w3id.org/emmo/domain/chemical-substance#substance_945c68da_3baf_4da6_b794_dca7aebc4ca7", "Dimethylsulfate": "https://w3id.org/emmo/domain/chemical-substance#substance_3c8fb431_7d9d_4a89_a494_708df34f44d3", @@ -1837,7 +1837,7 @@ "ElectronicModel": "https://w3id.org/emmo#EMMO_6eca09be_17e9_445e_abc9_000aa61b7a11", "ElectronvoltPerMetre": "https://w3id.org/emmo#ElectronvoltPerMetre", "Electroosmosis": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_5641910f_6e69_4ce4_be84_4b1bf14b8916", - "Electroplating": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e", + "Electroplating": "https://w3id.org/emmo#EMMO_30e3edb5_0977_4b9b_9aed_5a4d16c1c07c", "ElementalMaterial": "https://w3id.org/emmo#EMMO_a086af15_a7c3_404c_b4ce_c8e4466f1b4b", "ElementalSubstance": "https://w3id.org/emmo#EMMO_436b11bd_1756_4821_9f14_c9ed6b67552e", "ElementaryBoson": "https://w3id.org/emmo#EMMO_cafd0f10_ce85_48b9_9a36_2b0af141ce21", @@ -2192,11 +2192,12 @@ "ISQBaseQuantity": "https://w3id.org/emmo#EMMO_1a4c1a97_88a7_4d8e_b2f9_2ca58e92dde4", "ISQDerivedQuantity": "https://w3id.org/emmo#EMMO_2946d40b_24a1_47fa_8176_e3f79bb45064", "ISQDimensionlessQuantity": "https://w3id.org/emmo#EMMO_a66427d1_9932_4363_9ec5_7d91f2bfda1e", - "IUPACName": "https://w3id.org/emmo#EMMO_16a3bd5c_75f0_42b3_b000_cb0d018f840e", + "IUPACName": "https://w3id.org/emmo#EMMO_f652e7d2_0b33_4d10_8d0f_2f70089982ba", "IUPACNomencalture": "https://w3id.org/emmo#EMMO_91a0635a_a89a_46de_8928_04a777d145c7", "Icon": "https://w3id.org/emmo#EMMO_d7788d1a_020d_4c78_85a1_13563fcec168", "Illuminance": "https://w3id.org/emmo#EMMO_b51fbd00_a857_4132_9711_0ef70e7bdd20", "IlluminanceTimeUnit": "https://w3id.org/emmo#EMMO_e467cc3f_676c_432e_b70e_19237d1bcc78", + "ImaginaryElectricImpedance": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626", "Impedimetry": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Impedimetry", "InChI": "https://w3id.org/emmo#EMMO_d74ed682_894f_46c5_87cb_167f60926965", "IncreasingPotentialPulses": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_77be01ef_49bd_4f2e_bec8_eec0894b8562", @@ -2288,7 +2289,7 @@ "IridiumSymbol": "https://w3id.org/emmo#EMMO_b8aab013_b729_51f1_bc14_5302e7f97cbe", "Iron": "https://w3id.org/emmo/domain/chemical-substance#substance_89fd13e8_8061_41da_83f4_634144116425", "IronAtom": "https://w3id.org/emmo#EMMO_a4839f08_1080_53bf_9cb3_101e20c2656b", - "IronBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_cc4e178c_bc1f_4502_b6c2_33f304ef6bab", + "IronBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_5e1136d3_df00_40f7_a4bc_8259341053a1", "IronDisulfide": "https://w3id.org/emmo/domain/chemical-substance#substance_c728b6b9_449a_45ff_b5ae_6b7968708f0d", "IronDisulfideElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d2726dd5_69f0_4cb1_bd3c_4c48813e57e7", "IronIIIHydroxide": "https://w3id.org/emmo/domain/chemical-substance#substance_323a2e39_d7d5_4802_884a_9aa41a280986", @@ -2556,6 +2557,7 @@ "LossFactor": "https://w3id.org/emmo#EMMO_c3796906_8063_47d4_92af_890ae08f25fa", "LowPressureCasting": "https://w3id.org/emmo#EMMO_8b2fd84c_8f51_4731_9bd7_830545e78b23", "LowerCriticalMagneticFluxDensity": "https://w3id.org/emmo#EMMO_fd4a6307_f9f7_4b54_b044_caa04e620232", + "LowerCurrentLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea", "LowerFrequencyLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_b66d6553_6136_4754_902a_707e414210c2", "LowerVoltageLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_534dd59c_904c_45d9_8550_ae9d2eb6bbc9", "Lumen": "https://w3id.org/emmo#Lumen", @@ -2608,7 +2610,7 @@ "MagnesiumTriflate": "https://w3id.org/emmo/domain/chemical-substance#substance_df24fad8_7ef0_4330_a3f2_c4d65d9a3be8", "MagnesiumTrifluoromethanesulfonyloxalatoborate": "https://w3id.org/emmo/domain/chemical-substance#substance_2b7473ba_9156_489a_880f_3a2f746cd104", "MagneticDipoleMoment": "https://w3id.org/emmo#EMMO_81e767f1_59b1_4d7a_bf69_17f322241831", - "MagneticDipoleMomentUnit": "https://w3id.org/emmo#EMMO_5073dc80_aec2_4a3b_8057_fababfcbfe11", + "MagneticDipoleMomentUnit": "https://w3id.org/emmo#EMMO_1c2226a9_22f0_40c8_8928_5a01d398f96e", "MagneticFieldStrength": "https://w3id.org/emmo#EMMO_b4895f75_41c8_4fd9_b6d6_4d5f7c99c423", "MagneticFieldStrengthUnit": "https://w3id.org/emmo#EMMO_e6b83139_ba92_4fbd_a8b2_c8dde55844a1", "MagneticFlux": "https://w3id.org/emmo#EMMO_3b931698_937e_49be_ab1b_36fa52d91181", @@ -2676,7 +2678,7 @@ "MassExcess": "https://w3id.org/emmo#EMMO_7dd84949_0afa_4313_9b89_7bb0dd2e7771", "MassFlow": "https://w3id.org/emmo#EMMO_6d61ee3c_c5b6_4452_bc11_e9c33af992a7", "MassFluxUnit": "https://w3id.org/emmo#EMMO_e35d4936_b2e3_4cd6_a437_f1c864b3d450", - "MassFraction": "https://w3id.org/emmo/disciplines/units/coherentsiunits#EMMO_089f13b1_ceb3_4d2a_8795_b4a2d92916da", + "MassFraction": "https://w3id.org/emmo#EMMO_7c055d65_2929_40e1_af4f_4bf10995ad50", "MassFractionOfDryMatter": "https://w3id.org/emmo#EMMO_8f171308_f902_42c5_ac1d_d5259022e9c1", "MassFractionOfWater": "https://w3id.org/emmo#EMMO_cac16ce6_2cef_405d_ac63_0f918db4875e", "MassFractionUnit": "https://w3id.org/emmo#EMMO_18448443_dcf1_49b8_a321_cf46e2c393e1", @@ -3027,6 +3029,7 @@ "NobeliumAtom": "https://w3id.org/emmo#EMMO_49eb0790_50c2_5691_a8bf_dfa6f4a9f6c7", "NobeliumSymbol": "https://w3id.org/emmo#EMMO_c1bb775c_0888_5b88_9cce_c49bae1d298b", "NobleGasElementalSubstance": "https://w3id.org/emmo/domain/chemical-substance#substance_cac14194_2d5f_4fe6_b794_a9319f6d76ee", + "NominalCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100", "NominalProperty": "https://w3id.org/emmo#EMMO_909415d1_7c43_4d5e_bbeb_7e1910159f66", "NominalVoltage": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_639b844a_e801_436b_985d_28926129ead6", "NonActivePower": "https://w3id.org/emmo#EMMO_83318add_d05e_40fc_93ea_c6cd605df437", @@ -3061,6 +3064,7 @@ "NumberOfFiniteVolumeCellsInX": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_e73586eb_8475_4879_a43e_087c702ea6bf", "NumberOfFiniteVolumeCellsInY": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_c2a85d02_c6b4_42df_b5ed_a9904ec34a5c", "NumberOfFiniteVolumeCellsInZ": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a5e00e3a_736c_4200_8d04_ed222fe07037", + "NumberOfIterations": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_88dd2bce_fb17_4705_905d_892681812290", "NumberOfTurnsInAWinding": "https://w3id.org/emmo#EMMO_eefaa0ef_e7d4_4633_bf79_655bb55f4a49", "Numeral": "https://w3id.org/emmo#EMMO_74b05aed_66bf_43c8_aa2c_752a9ca8be03", "Numerical": "https://w3id.org/emmo#EMMO_4ce76d7f_03f8_45b6_9003_90052a79bfaa", @@ -3211,7 +3215,7 @@ "Permittivity": "https://w3id.org/emmo#EMMO_0ee5779e_d798_4ee5_9bfe_c392d5bea112", "PermittivityUnit": "https://w3id.org/emmo#EMMO_5f89cb0c_3171_47ee_b2ab_027a07c34c4b", "Persistence": "https://w3id.org/emmo#EMMO_e04884d9_eda6_487e_93d5_7722d7eda96b", - "Person": "http://xmlns.com/foaf/0.1/Person", + "Person": "https://schema.org/Person", "Perspective": "https://w3id.org/emmo#EMMO_49267eba_5548_4163_8f36_518d65b583f9", "Peta": "https://w3id.org/emmo#EMMO_d7c74480_a568_4470_acff_f18b499cc850", "PetaPrefixedUnit": "https://w3id.org/emmo#EMMO_43a6b269_da31_4bb6_a537_c97df4fff32a", @@ -3298,7 +3302,7 @@ "Porosity": "https://w3id.org/emmo#EMMO_3a6578ac_aee0_43b9_9bc6_1eb208c8c9a9", "PorousElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3663991d_9319_4f7a_922b_f0e428b58801", "PorousSeparator": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_58413d4e_2885_459e_ac06_8d45e661cf91", - "PositionVector": "https://w3id.org/emmo#EMMO_4312cae4_03ba_457e_b35d_0671a7db350c", + "PositionVector": "https://w3id.org/emmo#EMMO_44da6d75_54a4_4aa8_bd3a_156f6e9abb8e", "PositiveElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_aff732a9_238a_4734_977c_b2ba202af126", "PositiveTerminal": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_522f0c0b_cf33_4328_af71_12e38dae6798", "Positron": "https://w3id.org/emmo#EMMO_26a38b26_38ea_4acf_b212_db9e34c71b7a", @@ -3483,7 +3487,7 @@ "R54215": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_fc9e7ba3_5084_4c2a_b488_c6a96af99232", "R616": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_dc019f3f_e5f3_4eeb_bab9_a845a02223a0", "R621": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_15ec346a_6d3c_4161_95e1_9cf889965f85", - "R626": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_68c1c36e_1548_4247_bae2_fe7102a2c4ff", + "R626": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6b275583_433f_46f7_aafd_ebc9409257cc", "R712": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_bb2faf17_b819_4876_b17f_fa82917cf85d", "R716": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_34cb7ea7_2436_46e0_806e_a3c7835ae228", "R721": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3279f575_1c62_4bf2_a6e8_de4c7ff36f8e", @@ -3535,6 +3539,7 @@ "ReactivePower": "https://w3id.org/emmo#EMMO_d8030875_6d89_4645_9728_bbc3b8690609", "ReactorTimeConstant": "https://w3id.org/emmo#EMMO_b03dfad7_eab8_4949_9d10_dd4fd12faaef", "Real": "https://w3id.org/emmo#EMMO_18d180e4_5e3e_42f7_820c_e08951223486", + "RealElectricImpedance": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f", "ReciprocalAmountPerVolumeUnit": "https://w3id.org/emmo#EMMO_aef218f9_6ded_4db9_9263_e78eed55e5d6", "ReciprocalCentiMetre": "https://w3id.org/emmo#ReciprocalCentiMetre", "ReciprocalCubicCentiMetre": "https://w3id.org/emmo#ReciprocalCubicCentiMetre", @@ -3637,6 +3642,7 @@ "ResponseTimeAtAnISE": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_1a104474_c326_4a29_ac26_26a05ac8f72c", "RestEnergy": "https://w3id.org/emmo#EMMO_5117c5fe_f661_46f8_83c3_b48947f1532a", "RestMass": "https://w3id.org/emmo#EMMO_3c947caf_4070_4c79_a3a3_e53274ac9944", + "Resting": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b", "RestingTime": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_2678a656_4a27_4706_8dde_b0a93e9b92fa", "ReversibleHydrogenElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0d9ba00d_04bc_4bdc_85af_3380694f6f68", "RevolutionPerMinute": "https://w3id.org/emmo#RevolutionPerMinute", @@ -3790,7 +3796,7 @@ "SiemensSquareMetrePerMole": "https://w3id.org/emmo#SiemensSquareMetrePerMole", "Sievert": "https://w3id.org/emmo#Sievert", "Sign": "https://w3id.org/emmo#EMMO_b21a56ed_f969_4612_a6ec_cb7766f7f31d", - "Signal": "https://w3id.org/emmo/domain/chameo#Signal", + "Signal": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Signal", "SignalReferencePotential": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_68059d94_4c21_4065_b329_07faeebc7e87", "Silicon": "https://w3id.org/emmo/domain/chemical-substance#substance_68c0876b_cb62_41cd_846d_95cc9d9a8733", "SiliconAtom": "https://w3id.org/emmo#EMMO_798b0c96_82ca_5ce8_8d5f_f9f72668cf5d", @@ -4318,6 +4324,7 @@ "UpQuark": "https://w3id.org/emmo#EMMO_0a3f04a6_ba3a_49d9_99da_08b0e26f51f0", "UpQuarkType": "https://w3id.org/emmo#EMMO_fc47b76f_ad01_4cd0_8fc6_55532000e7c8", "UpperCriticalMagneticFluxDensity": "https://w3id.org/emmo#EMMO_6bfe6ad2_96ba_4478_81e5_d8881c550757", + "UpperCurrentLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45", "UpperFrequencyLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_666f0b69_9c74_49a3_80b3_96a188332462", "UpperVoltageLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6dcd5baf_58cd_43f5_a692_51508e036c88", "UraniumAtom": "https://w3id.org/emmo#EMMO_b233f8c0_37d8_51ae_9264_560e6649e246", diff --git a/versions/0.6.0/electrochemicalquantities.ttl b/versions/0.6.0/electrochemicalquantities.ttl index 882a543..96cb275 100644 --- a/versions/0.6.0/electrochemicalquantities.ttl +++ b/versions/0.6.0/electrochemicalquantities.ttl @@ -24,8 +24,6 @@ emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f a owl:AnnotationProperty . emmo:EMMO_5c78b424_087b_4e31_8c91_6422f1be1e86 owl:equivalentClass :electrochemistry_9c657fdc_b9d3_4964_907c_f9a6e8c5f52b . -emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 :electrochemistry_097ea615_c209_4edd_a1a1_5eea71d98fe8 "acimp/ohms"@en . - emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry_37b24a94_cae0_4d7a_9519_9f7692dec607 ; skos:altLabel "MassDiffusivity"@en ; emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q604008"@en ; @@ -101,6 +99,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "D40ParticleSize"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 40% of the sample's particles fall."@en . +:electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626 a owl:Class ; + rdfs:label "ImaginaryElectricImpedance"@en ; + rdfs:comment "the imaginary part of the complex electric impedance"@en ; + rdfs:subClassOf emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 ; + skos:prefLabel "ImaginaryElectricImpedance"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the imaginary part of the complex electric impedance"@en . + :electrochemistry_02d2d1d1_241c_429b_b4e7_31f2c3dc4835 a owl:Class ; rdfs:label "D95ParticleSize"@en ; rdfs:comment "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 95% of the sample's particles fall."@en ; @@ -381,6 +386,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "D50ParticleSize"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 50% of the sample's particles fall."@en . +:electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45 a owl:Class ; + rdfs:label "UpperCurrentLimit"@en ; + rdfs:comment "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en ; + rdfs:subClassOf :electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 ; + skos:prefLabel "UpperCurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + :electrochemistry_3e54f9e3_a31d_4821_9bfb_ef953a42c35b a owl:Class ; rdfs:label "MaximumPulseDischargingCurrent"@en ; rdfs:comment "the maximum current approved for pulse discharge of an electrochemical device"@en ; @@ -608,6 +620,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "ChargingCurrent"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electric current applied to an electrochemical device during a charging process"@en . +:electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea a owl:Class ; + rdfs:label "LowerCurrentLimit"@en ; + rdfs:comment "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en ; + rdfs:subClassOf :electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 ; + skos:prefLabel "LowerCurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + :electrochemistry_7f073272_8925_4344_995c_a5a6dd1fcde6 a owl:Class ; rdfs:label "ChargingConstantCurrentPercentage"@en ; rdfs:comment "the percentage of the total charge capacity that is obtained during a constant current charge process"@en ; @@ -705,6 +724,20 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "DischargingSpecificCapacity"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "quotient of the capacity of a cell or battery [ or electrode or active material ] obtained during a discharge process by its mass."@en . +:electrochemistry_88dd2bce_fb17_4705_905d_892681812290 a owl:Class ; + rdfs:label "NumberOfIterations"@en ; + rdfs:comment "the number of times an iterative process should occur"@en ; + rdfs:subClassOf emmo:EMMO_ba882f34_0d71_4e4f_9d92_0c076c633a2c ; + skos:prefLabel "NumberOfIterations"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the number of times an iterative process should occur"@en . + +:electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100 a owl:Class ; + rdfs:label "NominalCapacity"@en ; + rdfs:comment "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en ; + rdfs:subClassOf :electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 ; + skos:prefLabel "NominalCapacity"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en . + :electrochemistry_8e943e12_ecc0_4093_899e_7226be6be7f2 a owl:Class ; rdfs:label "D90ParticleSize"@en ; rdfs:comment "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 90% of the sample's particles fall."@en ; @@ -820,6 +853,15 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the celsius temperature of the ambient environment"@en ; :electrochemistry_1b717a20_17e3_4480_8c60_c4ae94058f05 "Environmental_Temperature (C)"@en . +:electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f a owl:Class ; + rdfs:label "RealElectricImpedance"@en ; + rdfs:comment "the imaginary part of the complex electric impedance"@en ; + rdfs:subClassOf emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 ; + skos:altLabel "ACResistance"@en ; + skos:prefLabel "RealElectricImpedance"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q1048490"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the imaginary part of the complex electric impedance"@en . + :electrochemistry_ae108db7_8765_4329_9908_059277dee586 a owl:Class ; rdfs:label "StepCapacity"@en ; rdfs:comment "the amount of charge that has passed through an electrochemical device within the time interval of a given testing step"@en ; @@ -1084,8 +1126,8 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry ; dcterms:license "https://creativecommons.org/licenses/by/4.0/legalcode" ; owl:imports ; - owl:versionIRI ; - owl:versionInfo "0.17.0-beta" . + owl:versionIRI ; + owl:versionInfo "0.18.0-beta" . a owl:NamedIndividual, foaf:Person ; @@ -1866,6 +1908,8 @@ In either case, the magnitude of the catalytic current depends on the applied po emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electric potential of an ion-selective electrode (ISE) and activity of an analyte ion at which the potential of the ISE is independent of temperature"@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1351/goldbook.I03304"@en . +emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 :electrochemistry_097ea615_c209_4edd_a1a1_5eea71d98fe8 "acimp/ohms"@en . + emmo:EMMO_e218c625_6a39_47a9_8d08_a2ef41c152a9 rdfs:subClassOf :electrochemistry_02eb0465_4f94_453c_8c1f_5ddf80134634 ; skos:altLabel "GravimetricEnergyDensity"@en ; :electrochemistry_811aafc3_0c6d_470e_b67e_ff5c82992609 "CmpEng(mWh/g)"@en . @@ -1997,14 +2041,6 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog skos:prefLabel "TemperatureLimit"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the temperature of a system"@en . -:electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 a owl:Class ; - rdfs:label "RatedCapacity"@en ; - rdfs:comment "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en ; - rdfs:subClassOf :electrochemistry_791c1915_a791_4450_acd8_7f94764743b5 ; - skos:prefLabel "RatedCapacity"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-03-15"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en . - :electrochemistry_9ed7210c_c4fa_467b_822d_ba12f885bdf4 a owl:Class ; rdfs:label "ConcentrationOverpotential"@en ; rdfs:comment "The concentration overpotential of an electrode reaction at a given electrode current density (c.d.) is basically the difference in equilibrium potentials across the diffusion layer. More precisely, it is the potential of a reference electrode (of the same electrode reaction as the working electrode ) with the interfacial concentrations which establish themselves at c.d., relative to the potential of a similar reference electrode with the concentrations of the bulk solution. From such a measured potential difference, with c.d. flowing, one needs to subtract the ohmic potential drop prevailing between the two electrodes."@en, @@ -2110,6 +2146,14 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog skos:prefLabel "NumberOfFiniteVolumeCells"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "number of discrete finite volume cells in a grid or sub-grid"@en . +:electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 a owl:Class ; + rdfs:label "RatedCapacity"@en ; + rdfs:comment "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en ; + rdfs:subClassOf :electrochemistry_791c1915_a791_4450_acd8_7f94764743b5 ; + skos:prefLabel "RatedCapacity"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-03-15"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en . + :electrochemistry_cc519a19_b8d5_4e3f_b893_3a884888ad79 a owl:Class ; rdfs:label "MaximumTemperature"@en ; rdfs:comment "the maximum allowable temperature"@en ; @@ -2186,14 +2230,6 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa :electrochemistry_a07dd85b_d0df_4d5d_8b0c_14d20ea3fe45 "current"@en ; :electrochemistry_ea9f4dba_8ca2_419e_9cdf_ce54e9ebbd46 "Current (A)"@en . -:electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 a owl:Class ; - rdfs:label "CurrentLimit"@en ; - rdfs:comment "limit on the electric current of an electrical system"@en ; - rdfs:subClassOf emmo:EMMO_c995ae70_3b84_4ebb_bcfc_69e6a281bb88, - :electrochemistry_b395a244_3a75_4737_be38_981bfa1277fe ; - skos:prefLabel "CurrentLimit"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the electric current of an electrical system"@en . - :electrochemistry_900e357f_2ee3_425a_a0b6_322661117787 a owl:Class ; rdfs:label "ElectrochemicalProperty"@en ; rdfs:subClassOf emmo:EMMO_909415d1_7c43_4d5e_bbeb_7e1910159f66 ; @@ -2292,6 +2328,14 @@ foaf:Person a owl:Class ; emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Faradaic_current"@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://goldbook.iupac.org/terms/view/F02321"@en . +:electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 a owl:Class ; + rdfs:label "CurrentLimit"@en ; + rdfs:comment "limit on the electric current of an electrical system"@en ; + rdfs:subClassOf emmo:EMMO_c995ae70_3b84_4ebb_bcfc_69e6a281bb88, + :electrochemistry_b395a244_3a75_4737_be38_981bfa1277fe ; + skos:prefLabel "CurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the electric current of an electrical system"@en . + :electrochemistry_1cd1d777_e67b_47eb_81f1_edac35d9f2c6 a owl:Class ; rdfs:label "Overpotential"@en ; rdfs:comment "difference between the electrode potential with current flow, and the electrode potential without current flow, i.e. the equilibrium potential"@en, diff --git a/versions/0.6.0/electrochemistry-inferred.ttl b/versions/0.6.0/electrochemistry-inferred.ttl index f4fa0f9..c704a22 100644 --- a/versions/0.6.0/electrochemistry-inferred.ttl +++ b/versions/0.6.0/electrochemistry-inferred.ttl @@ -7,7 +7,7 @@ @base . rdf:type owl:Ontology ; - owl:versionIRI ; + owl:versionIRI ; ""@en , "CHAMEO is a domain ontology designed to model the common aspects across the different characterisation techniques and methodologies."@en , """Defines physical quantities in the International System of Quantities (ISQ). ISQ was made an official ISO standard in 2009 and is defined in the ISO/IEC 80000 standard. @@ -146,12 +146,12 @@ The symbolic module includes symbols, symbolic constructs and formal languages." "https://w3id.org/emmo/domain/characterisation-methodology/chameo" ; "2024-04-12" , "2024-06-23"^^xsd:date , - "2024-07-03"^^xsd:date ; + "2024-07-05"^^xsd:date ; "https://creativecommons.org/licenses/by/4.0/legalcode" , "https://creativecommons.org/licenses/by/4.0/legalcode"@en ; "2024-04-12" , "2024-06-23"^^xsd:date , - "2024-07-03"^^xsd:date ; + "2024-07-05"^^xsd:date ; "EMMC ASBL" , "EMMC ASBL"@en , """EMMC ASBL @@ -241,11 +241,11 @@ We kindly acknowledge NIST for reusing their content, including the selection of "You can contact EMMO Authors via emmo@emmc.eu"@en ; owl:backwardCompatibleWith "" , " " , - "0.16.0-beta" ; - owl:priorVersion "0.16.0-beta" , + "0.17.0-beta" ; + owl:priorVersion "0.17.0-beta" , "0.5.0-beta" , "1.0.0-beta2" ; - owl:versionInfo "0.17.0-beta" , + owl:versionInfo "0.18.0-beta" , "0.6.0-beta" , "1.0.0-beta3" , "1.0.0-beta7" ; @@ -2333,7 +2333,7 @@ While the EMMO FOL introduces the quantum causality relation C(x,y) as primitive rdf:type owl:ObjectProperty ; rdfs:subPropertyOf ; rdfs:domain ; - rdfs:range ; + rdfs:range ; "hasSolvent"@en . @@ -2364,7 +2364,7 @@ While the EMMO FOL introduces the quantum causality relation C(x,y) as primitive rdf:type owl:ObjectProperty ; rdfs:subPropertyOf ; rdfs:domain ; - rdfs:range ; + rdfs:range ; "hasSolute"@en . @@ -34532,7 +34532,7 @@ Wikipedia"""@en ; , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "ZincElectrode"@en ; "an electrode in which the main active material is zinc metal"@en ; @@ -34555,7 +34555,7 @@ Wikipedia"""@en ; rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "LithiumElectrode"@en ; "an electrode in which the active material is lithium metal" . @@ -44391,164 +44391,11 @@ Wear is defined as the progressive removal of the material from a solid surface "InChI=1S/Pb" . -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0139937b_2724_4864_84fb_f14bcfb83538 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0bdf0bb9_41fc_455d_af11_a249e24acdf6 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0f2f65a7_5cc4_4c86_a4d0_676771c646f1 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_250fa43e_1f26_4ed8_b787_91a2325a8e7b - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_25f6ff4c_53ad_4837_97c4_aa6f06099bb5 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_2a540939_3908_4f85_92f9_c46da7d4e9cb - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_2a87ca10_fc6a_4d61_b48c_d9790a566ee3 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_3899a9c9_9b34_443e_8ce6_0257589bb38a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_3ac62305_acd6_4312_9e31_4f824bd2530d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_4126ee09_b9c6_4694_bf33_0d8970e05f72 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_4c62d334_a124_40b3_9fd1_fe713d01a6af - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_5088ad54_b37d_4ee1_a086_d6c17e644f9a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_5cee19d2_f916_4264_a8ed_efed13a808d2 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_68c0876b_cb62_41cd_846d_95cc9d9a8733 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_68f9b85e_340f_46ec_96da_ebb6bd62f5fd - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_73d4606c_7460_4a5c_9413_793bdf35753e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_7dc738d6_74f2_489e_ae84_a6dbdf627f2e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_848003a2_71ee_4967_8039_354c907ec7f4 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_97439fbb_155f_433d_9edd_d510cd491f24 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_9bd78e1c_a4dc_41b6_8013_adb51df1ffdc - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_9da78aea_d436_40e2_a68f_c3dee32b825e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_aa8e9cc4_5f66_4307_b1c8_26fac7653a90 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_acdb232f_8041_4e11_8a11_5db2d2baae4d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_b01771a9_218a_4b01_b20f_4021cfa0b7d5 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_b3815a7f_f64a_48f6_b0ce_d0032578c699 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c109ca45_08c7_4436_a818_a9c575785e2f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c28a0967_ed23_48cc_a14e_a651d75a19db - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c5582dae_ccff_4fbe_adaa_078091054640 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c728b6b9_449a_45ff_b5ae_6b7968708f0d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_cd17ca33_ae3d_4738_8930_547673bf6c1f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_cdd18f0c_e7b3_4d09_b3dd_c09fe4b1adba - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_d53259a7_0d9c_48b9_a6c1_4418169df303 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_d673ceb2_3045_4e2e_8cad_56f5169b542f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_db74b6b7_09fc_40db_a7d5_6eb86b69192a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_dc5fb846_1824_40f8_9834_81f118aa1c2d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_dcdbdbed_2e20_40d1_a7a5_5761de7f0618 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_e1e6ff98_0725_4d27_ab21_2ca5a95371f0 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_e8fafdc8_6cd3_4dd0_9630_10ca8e3f1827 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_f3e7979a_e3ef_450a_8762_7d8778afe478 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_f7525766_90cf_43e9_8932_7cb3b14f676f - rdf:type owl:Class . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626 + rdf:type owl:Class ; + rdfs:subClassOf ; + "ImaginaryElectricImpedance"@en ; + "the imaginary part of the complex electric impedance"@en . ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_01260656_ac32_472e_9513_a607366538ec @@ -44872,11 +44719,11 @@ Wear is defined as the progressive removal of the material from a solid surface rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCLCOElectrode"@en ; @@ -45639,7 +45486,7 @@ and t* through mathematical models, provided that the long-time potential- deter , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LFPElectrode"@en ; @@ -46241,7 +46088,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "PtElectrode"@en ; "PlatinumElectrode"@en ; @@ -46343,7 +46190,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SiliconOxideGraphiteElectrode"@en ; @@ -46477,7 +46324,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "FTOElectrode"@en ; @@ -46500,7 +46347,7 @@ Aluminum foil"""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "NiOOHElectrode"@en , "NickelOxyhydroxideElectrode"@en ; @@ -46544,6 +46391,14 @@ Aluminum foil"""@en . "a coin case with a nominal diameter of 7.9 mm and a height of 1.65 mm"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b + rdf:type owl:Class ; + rdfs:subClassOf , + ; + "Resting"@en ; + "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 rdf:type owl:Class ; rdfs:subClassOf ; @@ -46811,6 +46666,13 @@ Aluminum foil"""@en . "A material relation in electrochemistry."@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45 + rdf:type owl:Class ; + rdfs:subClassOf ; + "UpperCurrentLimit"@en ; + "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3e54f9e3_a31d_4821_9bfb_ef953a42c35b rdf:type owl:Class ; rdfs:subClassOf , @@ -46981,7 +46843,7 @@ Aluminum foil"""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNMOElectrode"@en ; @@ -47201,11 +47063,11 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCLMOElectrode"@en ; @@ -47294,7 +47156,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumNickelPhosphateElectrode"@en ; @@ -47549,7 +47411,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumIronPhosphateElectrode"@en ; @@ -47904,7 +47766,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "CarbonMonofluorideElectrode"@en ; "electrode in which the active material is carbon monofluoride"@en ; @@ -48131,7 +47993,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "HardCarbonElectrode"@en ; "electrode in which the active material is hard carbon"@en . @@ -48291,7 +48153,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "SAE"@en ; "SolidAmalgamElectrode"@en ; @@ -48426,7 +48288,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LTOElectrode"@en ; @@ -48518,20 +48380,13 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ] . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "system that consists of at least two electron conductors (electrodes) in contact with ionic conductors (electrolytes)"@en ; - "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6fec8cc1_4e6c_428e_8343_6cf3c286a185 rdf:type owl:Class ; rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "AuElectrode"@en ; "GoldElectrode"@en ; @@ -48691,7 +48546,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NiOElectrode"@en ; @@ -48721,7 +48576,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "TiO2Electrode"@en ; @@ -48915,13 +48770,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ] . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "in secondary cells, the active material is restored to its original state during charge"@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - [ rdf:type owl:Axiom ; owl:annotatedSource ; owl:annotatedProperty ; @@ -48965,6 +48813,13 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s "an electrode in which the primary active material consists of caesium or caesium compounds"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea + rdf:type owl:Class ; + rdfs:subClassOf ; + "LowerCurrentLimit"@en ; + "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7f073272_8925_4344_995c_a5a6dd1fcde6 rdf:type owl:Class ; rdfs:subClassOf ; @@ -49118,7 +48973,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "LiquidGalliumElectrode"@en ; "a liquid electrode with an active material of gallium"@en . @@ -49188,7 +49043,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "ZnOElectrode"@en ; @@ -49446,6 +49301,13 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "an electrode in which the primary active material consists of sulfur or sulfur compounds"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_88dd2bce_fb17_4705_905d_892681812290 + rdf:type owl:Class ; + rdfs:subClassOf ; + "NumberOfIterations"@en ; + "the number of times an iterative process should occur"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8968eb7a_9a65_4286_a596_c31b998df329 rdf:type owl:Class ; rdfs:subClassOf ; @@ -49504,6 +49366,13 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "substance that increases chemical reaction speed, and which is conserved after the reaction"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100 + rdf:type owl:Class ; + rdfs:subClassOf ; + "NominalCapacity"@en ; + "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8b40856f_1ca2_4137_9616_7fb624671909 rdf:type owl:Class ; rdfs:subClassOf , @@ -50109,7 +49978,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumCobaltPhosphateElectrode"@en ; @@ -50298,13 +50167,6 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; "plate in which the active material is applied as a paste to a conductive current collector"@en . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "plate in which the active material is applied as a paste to a conductive current collector"@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a24f8581_a5a4_41a4_bb45_d0fdd5c0d810 rdf:type owl:Class ; @@ -50397,7 +50259,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "SilverOxideElectrode"@en ; "an electrode in which the primary active material consists of manganese dioxide or vmanganese dioxide compounds"@en ; @@ -50427,7 +50289,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "AgElectrode"@en ; "SilverElectrode"@en ; @@ -50662,7 +50524,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "CupricOxideElectrode"@en ; "CopperOxideElectrode"@en ; @@ -50751,6 +50613,15 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "Environmental_Temperature (C)"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f + rdf:type owl:Class ; + rdfs:subClassOf ; + "ACResistance"@en ; + "RealElectricImpedance"@en ; + "https://www.wikidata.org/wiki/Q1048490"@en ; + "the imaginary part of the complex electric impedance"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abfadc99_6e43_4d37_9b04_7fc5b0f327ae rdf:type owl:Class ; rdfs:subClassOf , @@ -50782,7 +50653,8 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e rdf:type owl:Class ; rdfs:subClassOf ; - "CCCVCycling"@en ; + "CCCVCycling"@en ; + "ConstantCurrentConstantVoltageCycling"@en ; "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en . @@ -51030,7 +50902,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCElectrode"@en ; @@ -51360,11 +51232,11 @@ of other configurations are used."""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNMOLFPElectrode"@en ; @@ -51466,13 +51338,6 @@ of other configurations are used."""@en . "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; "https://en.wikipedia.org/wiki/Fuel_cell"@en . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_bea04148_10d9_4eda_9cd5_8f609d7e9ff8 rdf:type owl:Class ; @@ -51568,7 +51433,7 @@ of other configurations are used."""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LMOElectrode"@en ; @@ -51751,11 +51616,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "ITO"@en ; @@ -51809,7 +51674,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "GraphiteElectrode"@en ; "electrode in which the active material is graphite"@en . @@ -51928,7 +51793,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "MnO2Electrode"@en ; "ManganeseDioxideElectrode"@en ; @@ -51943,7 +51808,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNOElectrode"@en ; @@ -51963,7 +51828,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "IrO2Electrode"@en ; @@ -51977,7 +51842,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumManganesePhosphateElectrode"@en ; @@ -52146,7 +52011,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "IronDisulfideElectrode"@en ; "an electrode in which the primary active material consists of iron disulfide or iron disulfide compounds."@en ; @@ -52509,7 +52374,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "HgElectrode"@en ; "MercuryElectrode"@en ; @@ -52785,11 +52650,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SiliconGraphiteElectrode"@en ; @@ -52802,7 +52667,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumManganeseOxideElectrode"@en ; @@ -53004,7 +52869,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumCobaltOxideElectrode"@en ; @@ -53096,7 +52961,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NCAElectrode"@en ; @@ -53315,7 +53180,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "PbOElectrode"@en ; @@ -53401,7 +53266,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumChromiumOxideElectrode"@en ; @@ -53621,7 +53486,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LCOElectrode"@en ; @@ -53672,11 +53537,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LMOLFPElectrode"@en ; @@ -53808,10 +53673,10 @@ In either case, the magnitude of the catalytic current depends on the applied po "The universe is considered as a causally self-connected object, encompassing all other objects. For this reason is unique."@en . -[ owl:qualifiedCardinality "3"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "3"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "4"^^xsd:nonNegativeInteger @@ -53835,10 +53700,10 @@ In either case, the magnitude of the catalytic current depends on the applied po [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:minQualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:minQualifiedCardinality "2"^^xsd:nonNegativeInteger +[ owl:minQualifiedCardinality "1"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger @@ -53850,7 +53715,7 @@ In either case, the magnitude of the catalytic current depends on the applied po [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:minQualifiedCardinality "2"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger diff --git a/versions/0.6.0/electrochemistry.ttl b/versions/0.6.0/electrochemistry.ttl index baa1206..d442e3c 100644 --- a/versions/0.6.0/electrochemistry.ttl +++ b/versions/0.6.0/electrochemistry.ttl @@ -1,6 +1,6 @@ @prefix : . @prefix bibo: . -@prefix chemsub: . +@prefix chemsub: . @prefix dcterms: . @prefix emmo: . @prefix foaf: . @@ -54,9 +54,9 @@ schema:name a owl:AnnotationProperty . dcterms:created "2022-11-25"^^xsd:date ; dcterms:creator , ; - dcterms:issued "2024-07-03"^^xsd:date ; + dcterms:issued "2024-07-05"^^xsd:date ; dcterms:license "https://creativecommons.org/licenses/by/4.0/legalcode" ; - dcterms:modified "2024-07-03"^^xsd:date ; + dcterms:modified "2024-07-05"^^xsd:date ; dcterms:publisher "EMMO" ; dcterms:source , , @@ -67,13 +67,13 @@ schema:name a owl:AnnotationProperty . bibo:status "unstable" ; vann:preferredNamespacePrefix "echem" ; vann:preferredNamespaceUri "https://w3id.org/emmo/domain/electrochemistry" ; - owl:backwardCompatibleWith "0.16.0-beta" ; + owl:backwardCompatibleWith "0.17.0-beta" ; owl:imports , , - ; - owl:priorVersion "0.16.0-beta" ; - owl:versionIRI ; - owl:versionInfo "0.17.0-beta" ; + ; + owl:priorVersion "0.17.0-beta" ; + owl:versionIRI ; + owl:versionInfo "0.18.0-beta" ; foaf:logo "https://raw.githubusercontent.com/emmo-repo/domain-electrochemistry/gh-pages/assets/img/fig/png/domain-electrochemistry-logo.png" . :electrochemistry_027d437e_3bbf_4eda_940b_e509f8d2b993 a owl:Class ; @@ -535,6 +535,14 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "R716" ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a coin case with a nominal diameter of 7.9 mm and a height of 1.65 mm"@en . +:electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b a owl:Class ; + rdfs:label "Resting"@en ; + rdfs:comment "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en ; + rdfs:subClassOf , + :electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 ; + skos:prefLabel "Resting"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en . + :electrochemistry_36444184_1100_4271_869f_7f2d983aaecb a owl:Class ; rdfs:label "P45173115" ; rdfs:comment "a prismatic case with a nominal length of 45 mm, width of 173 mm, and height of 115 mm"@en ; @@ -1564,6 +1572,15 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "TinBasedElectrode"@en ; emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "an electrode in which the primary active material consists of tin or tin compounds"@en . +:electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c a owl:Class ; + rdfs:label "PastedPlate"@en ; + rdfs:comment "plate in which the active material is applied as a paste to a conductive current collector"@en ; + rdfs:subClassOf :electrochemistry_92147e31_d015_4889_a092_04fbab033f15 ; + skos:altLabel "PastedElectrode"@en ; + skos:prefLabel "PastedPlate"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "plate in which the active material is applied as a paste to a conductive current collector"@en . + :electrochemistry_a277e420_2483_44d5_a2bc_4e421dea231a a owl:Class ; rdfs:label "R926" ; rdfs:comment "a coin case with a nominal diameter of 9.5 mm and a height of 2.6 mm"@en ; @@ -1658,10 +1675,11 @@ schema:name a owl:AnnotationProperty . emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a coin case with a nominal diameter of 11.6 mm and a height of 4.2 mm"@en . :electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e a owl:Class ; - rdfs:label "CCCVCycling"@en ; + rdfs:label "ConstantCurrentConstantVoltageCycling"@en ; rdfs:comment "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en ; rdfs:subClassOf :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; - skos:prefLabel "CCCVCycling"@en ; + skos:altLabel "CCCVCycling"@en ; + skos:prefLabel "ConstantCurrentConstantVoltageCycling"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en . :electrochemistry_ad9cdad6_66e8_471e_a7c6_b79f37c20814 a owl:Class ; @@ -1783,6 +1801,17 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "P20100141" ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a prismatic case with a nominal length of 20 mm, width of 100 mm, and height of 141 mm"@en . +:electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d a owl:Class ; + rdfs:label "FuelCell"@en ; + rdfs:comment "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; + rdfs:subClassOf :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; + skos:prefLabel "FuelCell"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q180253"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-05"@en ; + emmo:EMMO_6dd685dd_1895_46e4_b227_be9f7d643c25 "https://dbpedia.org/page/Fuel_cell"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; + emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Fuel_cell"@en . + :electrochemistry_bea04148_10d9_4eda_9cd5_8f609d7e9ff8 a owl:Class ; rdfs:label "CelsiusTemperatureMeasurement"@en ; rdfs:comment "measurement of temperature"@en ; @@ -3335,15 +3364,6 @@ schema:name a owl:AnnotationProperty . "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-26"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "interface between an electrolyte and an electrode where an electrode reaction takes place."@en . -:electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c a owl:Class ; - rdfs:label "PastedPlate"@en ; - rdfs:comment "plate in which the active material is applied as a paste to a conductive current collector"@en ; - rdfs:subClassOf :electrochemistry_92147e31_d015_4889_a092_04fbab033f15 ; - skos:altLabel "PastedElectrode"@en ; - skos:prefLabel "PastedPlate"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "plate in which the active material is applied as a paste to a conductive current collector"@en . - :electrochemistry_a462859d_d8bd_48ea_8bde_1576f1248a1e a owl:Class ; rdfs:label "SilverElectrode"@en ; rdfs:comment "electrode in the form of foil, mesh, wire, rod, tube, powder, pellets, or single crystal of silver"@en ; @@ -3459,17 +3479,6 @@ of other configurations are used."""@en . emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-19"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "part which insures insulation between the plate (electrode) edges and adjacent plates (electrodes) and the container side walls"@en . -:electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d a owl:Class ; - rdfs:label "FuelCell"@en ; - rdfs:comment "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - rdfs:subClassOf :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; - skos:prefLabel "FuelCell"@en ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q180253"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-05"@en ; - emmo:EMMO_6dd685dd_1895_46e4_b227_be9f7d643c25 "https://dbpedia.org/page/Fuel_cell"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Fuel_cell"@en . - :electrochemistry_bed5b5f9_b89d_45e3_a8c2_81b70ae21847 a owl:Class ; rdfs:label "SeriesParallelConnection"@en ; rdfs:comment "arrangement of cells or batteries wherein in series connected cells or batteries are connected in parallel."@en ; @@ -4518,15 +4527,20 @@ schema:Person a owl:Class ; skos:prefLabel "BimetallicOxideElectrode"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "an electrode consisting of two metal oxide active materials"@en . -:electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 a owl:Class ; - rdfs:label "GalvanostaticProcess"@en ; - rdfs:comment "a process in which the electric current is kept constant"@en ; - rdfs:subClassOf [ a owl:Restriction ; - owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; - owl:someValuesFrom :electrochemistry_22725105_c941_4b14_a4a2_fcb627958607 ], - :electrochemistry_5548f188_df00_4c05_ae98_7846e92efe36 ; - skos:prefLabel "GalvanostaticProcess"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a process in which the electric current is kept constant"@en . +:electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 a owl:Class ; + rdfs:label "ActiveMaterial"@en ; + rdfs:comment "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; + rdfs:subClassOf :electrochemistry_b5ea31c9_bb10_4276_980e_c3eceb1efc82, + :electrochemistry_ebdb68e9_c4b5_4d57_a042_c0f51d446755 ; + skos:altLabel "ActiveElectrochemicalMaterial"@en, + "ElectrochemicallyActiveMaterial"@en ; + skos:prefLabel "ActiveMaterial"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q120907375" ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-33", + "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-14"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; + emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "material which reacts chemically to produce electric energy when the cell discharges", + "in secondary cells, the active material is restored to its original state during charge"@en . :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 a owl:Class ; rdfs:label "PotentiometricStrippingAnalysis"@en ; @@ -4601,20 +4615,15 @@ schema:Person a owl:Class ; "The electrode (or interfacial) reaction involves all the processes (chemical reaction, structural reorganization, adsorption) accompanying the charge transfer step."@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1351/goldbook.E01960"@en . -:electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 a owl:Class ; - rdfs:label "ActiveMaterial"@en ; - rdfs:comment "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; - rdfs:subClassOf :electrochemistry_b5ea31c9_bb10_4276_980e_c3eceb1efc82, - :electrochemistry_ebdb68e9_c4b5_4d57_a042_c0f51d446755 ; - skos:altLabel "ActiveElectrochemicalMaterial"@en, - "ElectrochemicallyActiveMaterial"@en ; - skos:prefLabel "ActiveMaterial"@en ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q120907375" ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-33", - "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-14"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "material which reacts chemically to produce electric energy when the cell discharges", - "in secondary cells, the active material is restored to its original state during charge"@en . +:electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 a owl:Class ; + rdfs:label "GalvanostaticProcess"@en ; + rdfs:comment "a process in which the electric current is kept constant"@en ; + rdfs:subClassOf [ a owl:Restriction ; + owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; + owl:someValuesFrom :electrochemistry_22725105_c941_4b14_a4a2_fcb627958607 ], + :electrochemistry_5548f188_df00_4c05_ae98_7846e92efe36 ; + skos:prefLabel "GalvanostaticProcess"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a process in which the electric current is kept constant"@en . :electrochemistry_8a1c9a7b_978c_4421_a9c1_d0b07b42aab9 a owl:Class ; rdfs:label "ChemicalReaction"@en ; @@ -4953,9 +4962,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "extremely resistant to many chemicals, impermeable to gases and liquids, and has good electrical conductivity, high hardness and strength, and biocompatibility"@en . + owl:annotatedTarget "electrode made of glassy carbon material with an intertwined graphitic ribbon structure, formed by pyrolysis of a resol precursor at temperatures up to 3000 °C"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -4976,28 +4985,22 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "A disc electrode that is embedded in the centre of a cylinder which rotates in solution around the longitudinal cylinder axis."@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "composite system in which the supplied electric energy mainly produces chemical reactions or, conversely, in which the energy released by chemical reactions is mainly delivered by the system as electric energy"@en . + owl:annotatedTarget "a system containing two electrodes that allow transport of electrons, separated by an electrolyte that allows movement of ions but blocks movement of electrons."@en . [] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "system that consists of at least two electron conductors (electrodes) in contact with ionic conductors (electrolytes)"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" . + owl:annotatedTarget "composite system in which the supplied electric energy mainly produces chemical reactions or, conversely, in which the energy released by chemical reactions is mainly delivered by the system as electric energy"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "glassy carbon combines glass-like mechanical characteristics with physical properties similar to graphite, owing to its “graphene ribbon” structure"@en . - -[] a owl:Axiom ; - dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "a system containing two electrodes that allow transport of electrons, separated by an electrolyte that allows movement of ions but blocks movement of electrons."@en . + owl:annotatedTarget "extremely resistant to many chemicals, impermeable to gases and liquids, and has good electrical conductivity, high hardness and strength, and biocompatibility"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5033,13 +5036,13 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "one of the most frequently used working electrodes"@en . + owl:annotatedTarget "glassy carbon combines glass-like mechanical characteristics with physical properties similar to graphite, owing to its “graphene ribbon” structure"@en . [] a owl:Axiom ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; - owl:annotatedTarget "in secondary cells, the active material is restored to its original state during charge"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedTarget "material that is oxidized or reduced at an electrode in an electrochemical cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5047,12 +5050,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; owl:annotatedTarget "material which reacts chemically to produce electric energy when the cell discharges" . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; - owl:annotatedTarget "material that is oxidized or reduced at an electrode in an electrochemical cell"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5061,9 +5058,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "electrode made of glassy carbon material with an intertwined graphitic ribbon structure, formed by pyrolysis of a resol precursor at temperatures up to 3000 °C"@en . + owl:annotatedTarget "one of the most frequently used working electrodes"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5083,18 +5080,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_83f2b1e9_cb67_4dbf_977f_ba54bbae374f ; owl:annotatedTarget "charge during which the electric current is maintained at a constant value regardless of the battery voltage or temperature"@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; - owl:annotatedTarget "Electrolyte solution in the anodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the anode is placed."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; owl:annotatedTarget "electrolyte on the anode side of an electrochemical cell that is divided into compartments"@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; + owl:annotatedTarget "Electrolyte solution in the anodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the anode is placed."@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5133,15 +5130,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_8d3bf304_78e4_4e99_abe1_6ab429e44ed1 ; - owl:annotatedTarget "a sealed cell may be equipped with a safety device to prevent a dangerously high internal pressure and is designed to operate during its life in its original sealed state"@en . + owl:annotatedTarget "cell which remains closed and does not release either gas or liquid when operated within the limits specified by the manufacturer"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_8d3bf304_78e4_4e99_abe1_6ab429e44ed1 ; - owl:annotatedTarget "cell which remains closed and does not release either gas or liquid when operated within the limits specified by the manufacturer"@en . + owl:annotatedTarget "a sealed cell may be equipped with a safety device to prevent a dangerously high internal pressure and is designed to operate during its life in its original sealed state"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5150,10 +5147,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "capacitor consisting of a metallic plate as first conductor, a very thin oxide film formed on the metal as the dielectric and an electrolyte as second conductor"@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_06d8e1ee_924a_4915_998d_33a69f41dadc ; - owl:annotatedTarget "operation during which an electrochemical cell supplies electric energy as the result of chemical changes within the cell"@en . + owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; + owl:annotatedTarget "two-step electrochemical measurement in which 1) material is accumulated at an electrode and 2) the material is removed by chemical reaction or electrochemically at constant current with measurement of electrode potential"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5161,6 +5158,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; owl:annotatedTarget "historically for the analysis of metal ions, mercury ions were added to the test solution to form a mercury amalgam when reduced. Alternatively, an HMDE or MFE was used and the oxidizing agent added after amalgam formation. However, the toxicity of mercury and its compounds have all but precluded the present-day use of mercury"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_06d8e1ee_924a_4915_998d_33a69f41dadc ; + owl:annotatedTarget "operation during which an electrochemical cell supplies electric energy as the result of chemical changes within the cell"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5179,12 +5182,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; owl:annotatedTarget "the time between changes in potential in step 2 is related to the concentration of analyte in the solution"@en . -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; - owl:annotatedTarget "two-step electrochemical measurement in which 1) material is accumulated at an electrode and 2) the material is removed by chemical reaction or electrochemically at constant current with measurement of electrode potential"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5211,15 +5208,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_9ee6e728_e8f5_4b36_a045_d63da69dfc85 ; - owl:annotatedTarget "overcharge is also the act of charging beyond a certain limit specified by the manufacturer"@en . + owl:annotatedTarget "continued charging of a fully charged secondary cell or battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_9ee6e728_e8f5_4b36_a045_d63da69dfc85 ; - owl:annotatedTarget "continued charging of a fully charged secondary cell or battery"@en . + owl:annotatedTarget "overcharge is also the act of charging beyond a certain limit specified by the manufacturer"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5227,6 +5224,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_9f466223_e20a_474d_ac4d_6d4b6131c275 ; owl:annotatedTarget "an electrode that holds its potential essentially constant by efficiently allowing electric current to pass"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_a0580fa9_5073_44af_b33e_7adbc83892d0 ; + owl:annotatedTarget "electrode reaction in which oxidation occurs at the anode"@en . + [] a owl:Axiom ; dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5242,14 +5245,14 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0580fa9_5073_44af_b33e_7adbc83892d0 ; - owl:annotatedTarget "electrode reaction in which oxidation occurs at the anode"@en . + owl:annotatedSource :electrochemistry_a0a619d7_da95_41f0_8bc3_9c19d636d543 ; + owl:annotatedTarget "electrode that serves only as a source or sink for electrons without playing a chemical role in the electrode reaction"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0a619d7_da95_41f0_8bc3_9c19d636d543 ; - owl:annotatedTarget "electrode that serves only as a source or sink for electrons without playing a chemical role in the electrode reaction"@en . + owl:annotatedSource :electrochemistry_a0fcb105_587f_45d8_a89a_46dc8f745069 ; + owl:annotatedTarget "partial or complete external covering of a cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5260,14 +5263,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0fcb105_587f_45d8_a89a_46dc8f745069 ; - owl:annotatedTarget "partial or complete external covering of a cell"@en . - -[] a owl:Axiom ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c ; - owl:annotatedTarget "plate in which the active material is applied as a paste to a conductive current collector"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedSource :electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e ; + owl:annotatedTarget "process inside an electrolytic cell used to coat a conductive object with a layer of a material"@en . [] a owl:Axiom ; dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; @@ -5278,8 +5275,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e ; - owl:annotatedTarget "process inside an electrolytic cell used to coat a conductive object with a layer of a material"@en . + owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; + owl:annotatedTarget "component of a cell which permits the flow of gas in one direction only"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5287,12 +5284,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; owl:annotatedTarget "a valve has a characteristic venting or opening and closing pressure"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; - owl:annotatedTarget "component of a cell which permits the flow of gas in one direction only"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5305,6 +5296,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a462859d_d8bd_48ea_8bde_1576f1248a1e ; owl:annotatedTarget "electrode in the form of foil, mesh, wire, rod, tube, powder, pellets, or single crystal of silver"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; + owl:annotatedTarget "a chemical reaction in an electrolyte involving a transfer of electrons between chemical components or between chemical components and an electrode"@en . + [] a owl:Axiom ; dcterms:source "Bockris, J. O'M. and Despić, . Aleksandar R. (2011, December 15). Electrochemical reaction. Encyclopedia Britannica. https://www.britannica.com/science/electrochemical-reaction" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5317,12 +5314,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; owl:annotatedTarget "the electrode reaction can also involve other chemical reactions including subreactions on a cell electrode"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; - owl:annotatedTarget "a chemical reaction in an electrolyte involving a transfer of electrons between chemical components or between chemical components and an electrode"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5355,15 +5346,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_ae56cce3_7a7c_4e53_bb58_31e0d642d47e ; - owl:annotatedTarget "this flame front may originate from a spark or an external naked flame igniting combustible electrolysis gas"@en . + owl:annotatedTarget "vent of special design which provides protection against the propagation of a flame front from or into the interior of a secondary cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_ae56cce3_7a7c_4e53_bb58_31e0d642d47e ; - owl:annotatedTarget "vent of special design which provides protection against the propagation of a flame front from or into the interior of a secondary cell"@en . + owl:annotatedTarget "this flame front may originate from a spark or an external naked flame igniting combustible electrolysis gas"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5395,6 +5386,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_b525a629_a679_464f_bc5b_b49d2fc82686 ; owl:annotatedTarget "an electrochemical cell for conductivity measurements"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; + owl:annotatedTarget "by convention, cell electrode at which an oxidation reaction occurs"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5419,12 +5416,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; owl:annotatedTarget "the concepts of “anode” and “cathode” are related only to the direction of electron flow, not to the polarity of the electrodes"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; - owl:annotatedTarget "by convention, cell electrode at which an oxidation reaction occurs"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5433,15 +5424,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_b79d4f9e_5727_4895_8d7f_5fc18d83eb90 ; - owl:annotatedTarget "in a galvanic cell, parasitic reactions may cause inefficiencies or loss of performance"@en . + owl:annotatedTarget "an unwanted side reaction"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_b79d4f9e_5727_4895_8d7f_5fc18d83eb90 ; - owl:annotatedTarget "an unwanted side reaction"@en . + owl:annotatedTarget "in a galvanic cell, parasitic reactions may cause inefficiencies or loss of performance"@en . [] a owl:Axiom ; dcterms:source "IEEE Standard Glossary of Stationary Battery Terminology (2016), https://doi.org/10.1109/IEEESTD.2016.7552407" ; @@ -5481,12 +5472,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_bbae1ef4_0a95_4e7d_9932_1bf939129eef ; owl:annotatedTarget "current-potential curve in a voltammetry experiment"@en . -[] a owl:Axiom ; - dcterms:source "https://en.wikipedia.org/wiki/Square_wave" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0e33278b_639f_412d_9abd_64c3790026ef ; - owl:annotatedTarget "Periodic potential where the amplitude alternates at a steady frequency between fixed minimum and maximum values, with the same duration at minimum and maximum."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5500,10 +5485,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "part which insures insulation between the plate (electrode) edges and adjacent plates (electrodes) and the container side walls"@en . [] a owl:Axiom ; + dcterms:source "https://en.wikipedia.org/wiki/Square_wave" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d ; - owl:annotatedTarget "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedSource :electrochemistry_0e33278b_639f_412d_9abd_64c3790026ef ; + owl:annotatedTarget "Periodic potential where the amplitude alternates at a steady frequency between fixed minimum and maximum values, with the same duration at minimum and maximum."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5535,12 +5520,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_c3f4b34a_0e2c_46f3_baab_4ebd2682d26f ; owl:annotatedTarget "An ionic liquid is an electrolyte composed of a salt that is liquid below 100 °C. Ionic liquids have found uses in electrochemical analysis, because their unconventional properties include a negligible vapor pressure, a high thermal and electrochemical stability, and exceptional dissolution properties for both organic and inorganic chemical species."@en . -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; - owl:annotatedTarget "Electron conductor in an electrochemical cell connected to the external circuit."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5553,6 +5532,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_c55ec02c_b727_4df1_97ce_91d7bb5d5e91 ; owl:annotatedTarget "unplanned escape of electrolyte, gas or other material from a cell or battery"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_c610d869_cc03_44f0_b40d_ca86e945b9c9 ; + owl:annotatedTarget "cell from which electrolyte cannot escape regardless of its orientation"@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5562,8 +5547,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_c610d869_cc03_44f0_b40d_ca86e945b9c9 ; - owl:annotatedTarget "cell from which electrolyte cannot escape regardless of its orientation"@en . + owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; + owl:annotatedTarget "electronically conductive part in electric contact with a medium of lower electronic conductivity and intended to perform one or more of the functions of emitting charge carriers to or receiving charge carriers from that medium or to establish an electric field in that medium"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5579,21 +5564,21 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; - owl:annotatedTarget "by convention, an oxidation reaction occurs during discharge"@en . + owl:annotatedTarget "for a device having two electrodes, that electrode having the lower electric potential"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; - owl:annotatedTarget "electronically conductive part in electric contact with a medium of lower electronic conductivity and intended to perform one or more of the functions of emitting charge carriers to or receiving charge carriers from that medium or to establish an electric field in that medium"@en . + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; + owl:annotatedTarget "by convention, an oxidation reaction occurs during discharge"@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; - owl:annotatedTarget "for a device having two electrodes, that electrode having the lower electric potential"@en . + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; + owl:annotatedTarget "Electron conductor in an electrochemical cell connected to the external circuit."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5604,8 +5589,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0f827b54_370d_4c63_99a6_80f13b24e55e ; - owl:annotatedTarget "evolution of gas resulting from electrolysis of the water in the electrolyte of a cell"@en . + owl:annotatedSource :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; + owl:annotatedTarget "set of operations that is carried out on a secondary cell or battery and is repeated regularly in the same sequence."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5622,14 +5607,14 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; - owl:annotatedTarget "set of operations that is carried out on a secondary cell or battery and is repeated regularly in the same sequence."@en . + owl:annotatedSource :electrochemistry_d5da9948_e95b_4f12_a2d2_10a48f390c52 ; + owl:annotatedTarget "arrangement of cells or batteries wherein parallel connected cells or batteries are connected in series."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_d5da9948_e95b_4f12_a2d2_10a48f390c52 ; - owl:annotatedTarget "arrangement of cells or batteries wherein parallel connected cells or batteries are connected in series."@en . + owl:annotatedSource :electrochemistry_0f827b54_370d_4c63_99a6_80f13b24e55e ; + owl:annotatedTarget "evolution of gas resulting from electrolysis of the water in the electrolyte of a cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5655,18 +5640,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_df78745e_f9db_4830_88f0_8ce074fcb8ff ; owl:annotatedTarget "liquid metal electrode used in polarography"@en . +[] a owl:Axiom ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; + owl:annotatedTarget "electrochemical cell in which chemical reactions occur spontaneously and chemical energy is converted into electrical energy."@en . + [] a owl:Axiom ; dcterms:references "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; owl:annotatedTarget "An electrochemical cell that spontaneously produces work."@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_113e0469_8ae0_407f_892d_4b988f8d8a08 ; - owl:annotatedTarget "electrochemical cell that has two half-cells separated by a wall permeable to ions, both containing the same electrolyte differing only in their temperatures."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5674,16 +5659,22 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "Electrochemical cell intended to produce electric energy."@en . [] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; - owl:annotatedTarget "electrochemical cell in which chemical reactions occur spontaneously and chemical energy is converted into electrical energy."@en . + owl:annotatedSource :electrochemistry_e2a1dae1_05e4_4bd1_a39d_0eb10db482bc ; + owl:annotatedTarget "method of separating and neutralizing ions by an electric current in an electrolytic cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e2a1dae1_05e4_4bd1_a39d_0eb10db482bc ; - owl:annotatedTarget "method of separating and neutralizing ions by an electric current in an electrolytic cell"@en . + owl:annotatedSource :electrochemistry_113e0469_8ae0_407f_892d_4b988f8d8a08 ; + owl:annotatedTarget "electrochemical cell that has two half-cells separated by a wall permeable to ions, both containing the same electrolyte differing only in their temperatures."@en . + +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; + owl:annotatedTarget "electrochemical cell intended to produce chemical reactions"@en . [] a owl:Axiom ; dcterms:references "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; @@ -5697,18 +5688,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; owl:annotatedTarget "Electrochemical cell in which electrical energy is converted into chemical energy."@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; - owl:annotatedTarget "electrochemical cell intended to produce chemical reactions"@en . - -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_1152ae6b_8b57_4d99_912e_40c6a29342fb ; - owl:annotatedTarget "mass m of electrochemically-transformed substance is proportional to the charge Q passed, m ∝ Q."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5721,6 +5700,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_ec1dce8b_bb46_41a9_b532_6bed381aa557 ; owl:annotatedTarget "secondary cell having a cover provided with an opening through which products of electrolysis and evaporation are allowed to escape freely from the cell to the atmosphere"@en . +[] a owl:Axiom ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_1152ae6b_8b57_4d99_912e_40c6a29342fb ; + owl:annotatedTarget "mass m of electrochemically-transformed substance is proportional to the charge Q passed, m ∝ Q."@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5739,12 +5724,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f0c24970_4c14_4207_bd78_5f2181a67085 ; owl:annotatedTarget "the process of forming a film or a bulk material using an electrochemical process where the electrons are supplied by an external power supply"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_1355816f_a2b5_4800_8001_fc888f5d6b1b ; - owl:annotatedTarget "instrument intended to measure the value of a voltage."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5757,6 +5736,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f47611a2_e081_47f0_b287_3fda5f706154 ; owl:annotatedTarget "chemical reaction which occurs in addition to the main process"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; + owl:annotatedTarget "electrode reaction in which reduction occurs at the cathode"@en . + +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_1355816f_a2b5_4800_8001_fc888f5d6b1b ; + owl:annotatedTarget "instrument intended to measure the value of a voltage."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5769,12 +5760,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; owl:annotatedTarget "electrode reaction, where the energy of electrons in the working electrode is higher than the LUMO orbital of the substrate"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; - owl:annotatedTarget "electrode reaction in which reduction occurs at the cathode"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5782,10 +5767,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "electrode that responds to one, or more than one, species in the solution being investigated, with no appreciable change of bulk solution composition during the measurement"@en . [] a owl:Axiom ; - dcterms:source "IUPAC. Compendium of Chemical Terminology, 2nd ed. (the \"Gold Book\"). Compiled by A. D. McNaught and A. Wilkinson. Blackwell Scientific Publications, Oxford (1997). Online version (2019-) created by S. J. Chalk. ISBN 0-9678550-9-8. https://doi.org/10.1351/goldbook." ; + dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_15325775_6d4c_4192_82f1_e4feca9de426 ; - owl:annotatedTarget "A membrane having ion-exchange groups:"@en . + owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; + owl:annotatedTarget "a material in which the mobile species are ions and free movement of electrons is blocked."@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5799,18 +5784,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; owl:annotatedTarget "liquid or solid substance containing mobile ions that render it conductive"@en . +[] a owl:Axiom ; + dcterms:source "IUPAC. Compendium of Chemical Terminology, 2nd ed. (the \"Gold Book\"). Compiled by A. D. McNaught and A. Wilkinson. Blackwell Scientific Publications, Oxford (1997). Online version (2019-) created by S. J. Chalk. ISBN 0-9678550-9-8. https://doi.org/10.1351/goldbook." ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_15325775_6d4c_4192_82f1_e4feca9de426 ; + owl:annotatedTarget "A membrane having ion-exchange groups:"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; owl:annotatedTarget "substance that provides ions on dissolution in a solvent or on melting"@en . -[] a owl:Axiom ; - dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; - owl:annotatedTarget "a material in which the mobile species are ions and free movement of electrons is blocked."@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5823,18 +5808,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_fb9bf7cb_dd4b_4391_99a1_628263dd6940 ; owl:annotatedTarget "measuring instrument to obtain the electrical charge passed in an experiment, or to produce a known amount of substance in a titration."@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; - owl:annotatedTarget "Electrolyte solution in the cathodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the cathode is placed."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; owl:annotatedTarget "electrolyte on the cathode side of an electrochemical cell that is divided into compartments."@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; + owl:annotatedTarget "Electrolyte solution in the cathodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the cathode is placed."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5931,18 +5916,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_2d32a81a_2148_41bd_84fb_467aa8de4a8f ; owl:annotatedTarget "foil, wire, disc, or mesh electrode made of platinum, which is the most commonly used metallic working electrode in electrochemistry"@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; - owl:annotatedTarget "An interfacial reaction that necessarily involves a charge-transfer step."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; owl:annotatedTarget "electrochemical reaction involving the transfer of electrons between electrolyte and electrode"@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; + owl:annotatedTarget "An interfacial reaction that necessarily involves a charge-transfer step."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5957,15 +5942,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_328c6e36_3706_4d92_abae_432fa3adb2a0 ; - owl:annotatedTarget "a cell baffle has a second function in protecting the plate pack from damage by objects inserted through the filling hole"@en . + owl:annotatedTarget "internal component used to reduce the amount of electrolyte loss due to electrolyte spray being carried in the gas and/or by electrolyte movement"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_328c6e36_3706_4d92_abae_432fa3adb2a0 ; - owl:annotatedTarget "internal component used to reduce the amount of electrolyte loss due to electrolyte spray being carried in the gas and/or by electrolyte movement"@en . + owl:annotatedTarget "a cell baffle has a second function in protecting the plate pack from damage by objects inserted through the filling hole"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5979,6 +5964,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_34bc54e3_de4c_41f8_8d3a_d77c951ee23a ; owl:annotatedTarget "needle-like or tree-like formation of crystalline growth formed during deposition of a material"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; + owl:annotatedTarget "by convention, cell electrode at which, a reduction reaction occurs"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5997,12 +5988,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; owl:annotatedTarget "the concepts of “anode” and “cathode” are related only to the direction of electron flow, not to the polarity of the electrodes"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; - owl:annotatedTarget "by convention, cell electrode at which, a reduction reaction occurs"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -6023,15 +6008,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_3f6c9e09_5f23_41cc_9f85_7de365cef089 ; - owl:annotatedTarget "electrolyte creep is sometimes indicated by the presence of a visible solid deposit or wet spots"@en . + owl:annotatedTarget "gradual and slow spreading of an electrolyte film on the external surface of a cell or battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_3f6c9e09_5f23_41cc_9f85_7de365cef089 ; - owl:annotatedTarget "gradual and slow spreading of an electrolyte film on the external surface of a cell or battery"@en . + owl:annotatedTarget "electrolyte creep is sometimes indicated by the presence of a visible solid deposit or wet spots"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -6041,9 +6026,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_04f28ce3_251d_429e_aa85_ab3eb45bbcd2 ; - owl:annotatedTarget "in lithium batteries thermal runaway may cause melting of lithium"@en . + owl:annotatedTarget "unstable condition arising during constant voltage charge in which the rate of heat dissipation capability, causing a continuous temperature increase with resulting further charge current increase, which can lead to the destruction of the battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -6077,9 +6062,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_04f28ce3_251d_429e_aa85_ab3eb45bbcd2 ; - owl:annotatedTarget "unstable condition arising during constant voltage charge in which the rate of heat dissipation capability, causing a continuous temperature increase with resulting further charge current increase, which can lead to the destruction of the battery"@en . + owl:annotatedTarget "in lithium batteries thermal runaway may cause melting of lithium"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; diff --git a/versions/v0.10.0-beta/context/context.json b/versions/v0.10.0-beta/context/context.json index ac1b0bb..2006ca7 100644 --- a/versions/v0.10.0-beta/context/context.json +++ b/versions/v0.10.0-beta/context/context.json @@ -1076,7 +1076,6 @@ "ButlerVolmerEquation": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d48ea516_5cac_4f86_bc88_21b6276c0938", "C": "https://w3id.org/emmo#EMMO_36a9bf69_483b_42fd_8a0c_7ac9206320bc", "CASRN": "https://w3id.org/emmo#EMMO_d2a47cd8_662f_438f_855a_b4378eb992ff", - "CCCVCycling": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e", "CPlusPlus": "https://w3id.org/emmo#EMMO_64aba1e5_24b7_4140_8eb4_676c35698e79", "CRate": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_e1fd84eb_acdb_4b2c_b90c_e899d552a3ee", "CSharp": "https://w3id.org/emmo#EMMO_268a8a97_3a6f_4022_93da_962a66827cdc", @@ -1285,7 +1284,7 @@ "CoatingThickness": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3b938708_e7e4_4ac0_a959_9c04306302e7", "Cobalt": "https://w3id.org/emmo/domain/chemical-substance#substance_8f857eb2_7cc8_4294_954d_e69f2842c084", "CobaltAtom": "https://w3id.org/emmo#EMMO_3fe9d899_f1f1_5657_b176_ac6afff2e93d", - "CobaltBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_838c115b_6bc9_4ce8_9f8d_86a6bf67742a", + "CobaltBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7b811780_7251_481b_a4d3_97d437955099", "CobaltHydroxide": "https://w3id.org/emmo/domain/chemical-substance#substance_29b1c15d_2632_40d7_88f7_43575b68b988", "CobaltIIAcetate": "https://w3id.org/emmo/domain/chemical-substance#substance_4310c690_9810_4a95_8d62_7e78e0b84437", "CobaltIIBistrifluoromethanesulfonylimide": "https://w3id.org/emmo/domain/chemical-substance#substance_f4dffee2_c642_4114_a748_5e93b3908380", @@ -1358,6 +1357,7 @@ "ConstantCurrentCharging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_83f2b1e9_cb67_4dbf_977f_ba54bbae374f", "ConstantCurrentChargingCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_37c38b7e_9ded_481a_85fd_a467f1ee2b9f", "ConstantCurrentConstantVoltageCharging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0cc8f231_0ce5_467e_9c76_29b2c80349ad", + "ConstantCurrentConstantVoltageCycling": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e", "ConstantCurrentDischarging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_53fe3f58_0802_41cf_af69_4784fc42cc30", "ConstantCurrentDischargingCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_08833ed2_6324_411a_b34b_fe64c44cd5ef", "ConstantPotentialPulses": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_84d37a37_88bd_47db_9425_31f73a81d38c", @@ -1590,7 +1590,7 @@ "DeviceTemperature": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_463950b9_fd8d_48de_a52d_b29cab026391", "DewPointTemperature": "https://w3id.org/emmo#EMMO_a383e332_a271_463f_9e44_559604547220", "Diameter": "https://w3id.org/emmo#EMMO_c1c8ac3c_8a1c_4777_8e0b_14c1f9f9b0c6", - "Dichloromethane": "https://w3id.org/emmo/domain/chemical-substance#substance_8385c3c4_5906_48f6_b6b6_4bb60dccc27a", + "Dichloromethane": "https://w3id.org/emmo/domain/chemical-substance#substance_a6feec60_5fe7_4687_b427_3bf2ed06008d", "DieCasting": "https://w3id.org/emmo#EMMO_a85d0b8a_588e_423f_b799_97b0890e9183", "DielectricAndImpedanceSpectroscopy": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#DielectricAndImpedanceSpectroscopy", "Dielectrometry": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Dielectrometry", @@ -1624,7 +1624,7 @@ "Dimethoxyethane": "https://w3id.org/emmo/domain/chemical-substance#substance_b6ecabf9_14a4_4808_a139_55329e70ad42", "Dimethoxymethane": "https://w3id.org/emmo/domain/chemical-substance#substance_21954b0b_c05c_42db_b276_3a931d8aabb1", "DimethylCarbonate": "https://w3id.org/emmo/domain/chemical-substance#substance_c4a7d7bd_497e_457e_b858_ff73254266d0", - "DimethylSulfoxide": "https://w3id.org/emmo/domain/chemical-substance#substance_b593b5dd_7957_4b85_856a_dd59775210b6", + "DimethylSulfoxide": "https://w3id.org/emmo/domain/chemical-substance#substance_ea68e1a4_6be8_4686_8701_ba88b40d00b7", "Dimethylformamide": "https://w3id.org/emmo/domain/chemical-substance#substance_769bdc09_f533_4fde_bb53_20339d5bfcb7", "Dimethylpropyleneurea": "https://w3id.org/emmo/domain/chemical-substance#substance_945c68da_3baf_4da6_b794_dca7aebc4ca7", "Dimethylsulfate": "https://w3id.org/emmo/domain/chemical-substance#substance_3c8fb431_7d9d_4a89_a494_708df34f44d3", @@ -1837,7 +1837,7 @@ "ElectronicModel": "https://w3id.org/emmo#EMMO_6eca09be_17e9_445e_abc9_000aa61b7a11", "ElectronvoltPerMetre": "https://w3id.org/emmo#ElectronvoltPerMetre", "Electroosmosis": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_5641910f_6e69_4ce4_be84_4b1bf14b8916", - "Electroplating": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e", + "Electroplating": "https://w3id.org/emmo#EMMO_30e3edb5_0977_4b9b_9aed_5a4d16c1c07c", "ElementalMaterial": "https://w3id.org/emmo#EMMO_a086af15_a7c3_404c_b4ce_c8e4466f1b4b", "ElementalSubstance": "https://w3id.org/emmo#EMMO_436b11bd_1756_4821_9f14_c9ed6b67552e", "ElementaryBoson": "https://w3id.org/emmo#EMMO_cafd0f10_ce85_48b9_9a36_2b0af141ce21", @@ -2192,11 +2192,12 @@ "ISQBaseQuantity": "https://w3id.org/emmo#EMMO_1a4c1a97_88a7_4d8e_b2f9_2ca58e92dde4", "ISQDerivedQuantity": "https://w3id.org/emmo#EMMO_2946d40b_24a1_47fa_8176_e3f79bb45064", "ISQDimensionlessQuantity": "https://w3id.org/emmo#EMMO_a66427d1_9932_4363_9ec5_7d91f2bfda1e", - "IUPACName": "https://w3id.org/emmo#EMMO_16a3bd5c_75f0_42b3_b000_cb0d018f840e", + "IUPACName": "https://w3id.org/emmo#EMMO_f652e7d2_0b33_4d10_8d0f_2f70089982ba", "IUPACNomencalture": "https://w3id.org/emmo#EMMO_91a0635a_a89a_46de_8928_04a777d145c7", "Icon": "https://w3id.org/emmo#EMMO_d7788d1a_020d_4c78_85a1_13563fcec168", "Illuminance": "https://w3id.org/emmo#EMMO_b51fbd00_a857_4132_9711_0ef70e7bdd20", "IlluminanceTimeUnit": "https://w3id.org/emmo#EMMO_e467cc3f_676c_432e_b70e_19237d1bcc78", + "ImaginaryElectricImpedance": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626", "Impedimetry": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Impedimetry", "InChI": "https://w3id.org/emmo#EMMO_d74ed682_894f_46c5_87cb_167f60926965", "IncreasingPotentialPulses": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_77be01ef_49bd_4f2e_bec8_eec0894b8562", @@ -2288,7 +2289,7 @@ "IridiumSymbol": "https://w3id.org/emmo#EMMO_b8aab013_b729_51f1_bc14_5302e7f97cbe", "Iron": "https://w3id.org/emmo/domain/chemical-substance#substance_89fd13e8_8061_41da_83f4_634144116425", "IronAtom": "https://w3id.org/emmo#EMMO_a4839f08_1080_53bf_9cb3_101e20c2656b", - "IronBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_cc4e178c_bc1f_4502_b6c2_33f304ef6bab", + "IronBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_5e1136d3_df00_40f7_a4bc_8259341053a1", "IronDisulfide": "https://w3id.org/emmo/domain/chemical-substance#substance_c728b6b9_449a_45ff_b5ae_6b7968708f0d", "IronDisulfideElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d2726dd5_69f0_4cb1_bd3c_4c48813e57e7", "IronIIIHydroxide": "https://w3id.org/emmo/domain/chemical-substance#substance_323a2e39_d7d5_4802_884a_9aa41a280986", @@ -2556,6 +2557,7 @@ "LossFactor": "https://w3id.org/emmo#EMMO_c3796906_8063_47d4_92af_890ae08f25fa", "LowPressureCasting": "https://w3id.org/emmo#EMMO_8b2fd84c_8f51_4731_9bd7_830545e78b23", "LowerCriticalMagneticFluxDensity": "https://w3id.org/emmo#EMMO_fd4a6307_f9f7_4b54_b044_caa04e620232", + "LowerCurrentLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea", "LowerFrequencyLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_b66d6553_6136_4754_902a_707e414210c2", "LowerVoltageLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_534dd59c_904c_45d9_8550_ae9d2eb6bbc9", "Lumen": "https://w3id.org/emmo#Lumen", @@ -2608,7 +2610,7 @@ "MagnesiumTriflate": "https://w3id.org/emmo/domain/chemical-substance#substance_df24fad8_7ef0_4330_a3f2_c4d65d9a3be8", "MagnesiumTrifluoromethanesulfonyloxalatoborate": "https://w3id.org/emmo/domain/chemical-substance#substance_2b7473ba_9156_489a_880f_3a2f746cd104", "MagneticDipoleMoment": "https://w3id.org/emmo#EMMO_81e767f1_59b1_4d7a_bf69_17f322241831", - "MagneticDipoleMomentUnit": "https://w3id.org/emmo#EMMO_5073dc80_aec2_4a3b_8057_fababfcbfe11", + "MagneticDipoleMomentUnit": "https://w3id.org/emmo#EMMO_1c2226a9_22f0_40c8_8928_5a01d398f96e", "MagneticFieldStrength": "https://w3id.org/emmo#EMMO_b4895f75_41c8_4fd9_b6d6_4d5f7c99c423", "MagneticFieldStrengthUnit": "https://w3id.org/emmo#EMMO_e6b83139_ba92_4fbd_a8b2_c8dde55844a1", "MagneticFlux": "https://w3id.org/emmo#EMMO_3b931698_937e_49be_ab1b_36fa52d91181", @@ -2676,7 +2678,7 @@ "MassExcess": "https://w3id.org/emmo#EMMO_7dd84949_0afa_4313_9b89_7bb0dd2e7771", "MassFlow": "https://w3id.org/emmo#EMMO_6d61ee3c_c5b6_4452_bc11_e9c33af992a7", "MassFluxUnit": "https://w3id.org/emmo#EMMO_e35d4936_b2e3_4cd6_a437_f1c864b3d450", - "MassFraction": "https://w3id.org/emmo/disciplines/units/coherentsiunits#EMMO_089f13b1_ceb3_4d2a_8795_b4a2d92916da", + "MassFraction": "https://w3id.org/emmo#EMMO_7c055d65_2929_40e1_af4f_4bf10995ad50", "MassFractionOfDryMatter": "https://w3id.org/emmo#EMMO_8f171308_f902_42c5_ac1d_d5259022e9c1", "MassFractionOfWater": "https://w3id.org/emmo#EMMO_cac16ce6_2cef_405d_ac63_0f918db4875e", "MassFractionUnit": "https://w3id.org/emmo#EMMO_18448443_dcf1_49b8_a321_cf46e2c393e1", @@ -3027,6 +3029,7 @@ "NobeliumAtom": "https://w3id.org/emmo#EMMO_49eb0790_50c2_5691_a8bf_dfa6f4a9f6c7", "NobeliumSymbol": "https://w3id.org/emmo#EMMO_c1bb775c_0888_5b88_9cce_c49bae1d298b", "NobleGasElementalSubstance": "https://w3id.org/emmo/domain/chemical-substance#substance_cac14194_2d5f_4fe6_b794_a9319f6d76ee", + "NominalCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100", "NominalProperty": "https://w3id.org/emmo#EMMO_909415d1_7c43_4d5e_bbeb_7e1910159f66", "NominalVoltage": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_639b844a_e801_436b_985d_28926129ead6", "NonActivePower": "https://w3id.org/emmo#EMMO_83318add_d05e_40fc_93ea_c6cd605df437", @@ -3061,6 +3064,7 @@ "NumberOfFiniteVolumeCellsInX": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_e73586eb_8475_4879_a43e_087c702ea6bf", "NumberOfFiniteVolumeCellsInY": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_c2a85d02_c6b4_42df_b5ed_a9904ec34a5c", "NumberOfFiniteVolumeCellsInZ": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a5e00e3a_736c_4200_8d04_ed222fe07037", + "NumberOfIterations": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_88dd2bce_fb17_4705_905d_892681812290", "NumberOfTurnsInAWinding": "https://w3id.org/emmo#EMMO_eefaa0ef_e7d4_4633_bf79_655bb55f4a49", "Numeral": "https://w3id.org/emmo#EMMO_74b05aed_66bf_43c8_aa2c_752a9ca8be03", "Numerical": "https://w3id.org/emmo#EMMO_4ce76d7f_03f8_45b6_9003_90052a79bfaa", @@ -3211,7 +3215,7 @@ "Permittivity": "https://w3id.org/emmo#EMMO_0ee5779e_d798_4ee5_9bfe_c392d5bea112", "PermittivityUnit": "https://w3id.org/emmo#EMMO_5f89cb0c_3171_47ee_b2ab_027a07c34c4b", "Persistence": "https://w3id.org/emmo#EMMO_e04884d9_eda6_487e_93d5_7722d7eda96b", - "Person": "http://xmlns.com/foaf/0.1/Person", + "Person": "https://schema.org/Person", "Perspective": "https://w3id.org/emmo#EMMO_49267eba_5548_4163_8f36_518d65b583f9", "Peta": "https://w3id.org/emmo#EMMO_d7c74480_a568_4470_acff_f18b499cc850", "PetaPrefixedUnit": "https://w3id.org/emmo#EMMO_43a6b269_da31_4bb6_a537_c97df4fff32a", @@ -3298,7 +3302,7 @@ "Porosity": "https://w3id.org/emmo#EMMO_3a6578ac_aee0_43b9_9bc6_1eb208c8c9a9", "PorousElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3663991d_9319_4f7a_922b_f0e428b58801", "PorousSeparator": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_58413d4e_2885_459e_ac06_8d45e661cf91", - "PositionVector": "https://w3id.org/emmo#EMMO_4312cae4_03ba_457e_b35d_0671a7db350c", + "PositionVector": "https://w3id.org/emmo#EMMO_44da6d75_54a4_4aa8_bd3a_156f6e9abb8e", "PositiveElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_aff732a9_238a_4734_977c_b2ba202af126", "PositiveTerminal": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_522f0c0b_cf33_4328_af71_12e38dae6798", "Positron": "https://w3id.org/emmo#EMMO_26a38b26_38ea_4acf_b212_db9e34c71b7a", @@ -3483,7 +3487,7 @@ "R54215": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_fc9e7ba3_5084_4c2a_b488_c6a96af99232", "R616": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_dc019f3f_e5f3_4eeb_bab9_a845a02223a0", "R621": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_15ec346a_6d3c_4161_95e1_9cf889965f85", - "R626": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_68c1c36e_1548_4247_bae2_fe7102a2c4ff", + "R626": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6b275583_433f_46f7_aafd_ebc9409257cc", "R712": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_bb2faf17_b819_4876_b17f_fa82917cf85d", "R716": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_34cb7ea7_2436_46e0_806e_a3c7835ae228", "R721": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3279f575_1c62_4bf2_a6e8_de4c7ff36f8e", @@ -3535,6 +3539,7 @@ "ReactivePower": "https://w3id.org/emmo#EMMO_d8030875_6d89_4645_9728_bbc3b8690609", "ReactorTimeConstant": "https://w3id.org/emmo#EMMO_b03dfad7_eab8_4949_9d10_dd4fd12faaef", "Real": "https://w3id.org/emmo#EMMO_18d180e4_5e3e_42f7_820c_e08951223486", + "RealElectricImpedance": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f", "ReciprocalAmountPerVolumeUnit": "https://w3id.org/emmo#EMMO_aef218f9_6ded_4db9_9263_e78eed55e5d6", "ReciprocalCentiMetre": "https://w3id.org/emmo#ReciprocalCentiMetre", "ReciprocalCubicCentiMetre": "https://w3id.org/emmo#ReciprocalCubicCentiMetre", @@ -3637,6 +3642,7 @@ "ResponseTimeAtAnISE": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_1a104474_c326_4a29_ac26_26a05ac8f72c", "RestEnergy": "https://w3id.org/emmo#EMMO_5117c5fe_f661_46f8_83c3_b48947f1532a", "RestMass": "https://w3id.org/emmo#EMMO_3c947caf_4070_4c79_a3a3_e53274ac9944", + "Resting": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b", "RestingTime": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_2678a656_4a27_4706_8dde_b0a93e9b92fa", "ReversibleHydrogenElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0d9ba00d_04bc_4bdc_85af_3380694f6f68", "RevolutionPerMinute": "https://w3id.org/emmo#RevolutionPerMinute", @@ -3790,7 +3796,7 @@ "SiemensSquareMetrePerMole": "https://w3id.org/emmo#SiemensSquareMetrePerMole", "Sievert": "https://w3id.org/emmo#Sievert", "Sign": "https://w3id.org/emmo#EMMO_b21a56ed_f969_4612_a6ec_cb7766f7f31d", - "Signal": "https://w3id.org/emmo/domain/chameo#Signal", + "Signal": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Signal", "SignalReferencePotential": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_68059d94_4c21_4065_b329_07faeebc7e87", "Silicon": "https://w3id.org/emmo/domain/chemical-substance#substance_68c0876b_cb62_41cd_846d_95cc9d9a8733", "SiliconAtom": "https://w3id.org/emmo#EMMO_798b0c96_82ca_5ce8_8d5f_f9f72668cf5d", @@ -4318,6 +4324,7 @@ "UpQuark": "https://w3id.org/emmo#EMMO_0a3f04a6_ba3a_49d9_99da_08b0e26f51f0", "UpQuarkType": "https://w3id.org/emmo#EMMO_fc47b76f_ad01_4cd0_8fc6_55532000e7c8", "UpperCriticalMagneticFluxDensity": "https://w3id.org/emmo#EMMO_6bfe6ad2_96ba_4478_81e5_d8881c550757", + "UpperCurrentLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45", "UpperFrequencyLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_666f0b69_9c74_49a3_80b3_96a188332462", "UpperVoltageLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6dcd5baf_58cd_43f5_a692_51508e036c88", "UraniumAtom": "https://w3id.org/emmo#EMMO_b233f8c0_37d8_51ae_9264_560e6649e246", diff --git a/versions/v0.10.0-beta/electrochemicalquantities.ttl b/versions/v0.10.0-beta/electrochemicalquantities.ttl index 882a543..96cb275 100644 --- a/versions/v0.10.0-beta/electrochemicalquantities.ttl +++ b/versions/v0.10.0-beta/electrochemicalquantities.ttl @@ -24,8 +24,6 @@ emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f a owl:AnnotationProperty . emmo:EMMO_5c78b424_087b_4e31_8c91_6422f1be1e86 owl:equivalentClass :electrochemistry_9c657fdc_b9d3_4964_907c_f9a6e8c5f52b . -emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 :electrochemistry_097ea615_c209_4edd_a1a1_5eea71d98fe8 "acimp/ohms"@en . - emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry_37b24a94_cae0_4d7a_9519_9f7692dec607 ; skos:altLabel "MassDiffusivity"@en ; emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q604008"@en ; @@ -101,6 +99,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "D40ParticleSize"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 40% of the sample's particles fall."@en . +:electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626 a owl:Class ; + rdfs:label "ImaginaryElectricImpedance"@en ; + rdfs:comment "the imaginary part of the complex electric impedance"@en ; + rdfs:subClassOf emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 ; + skos:prefLabel "ImaginaryElectricImpedance"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the imaginary part of the complex electric impedance"@en . + :electrochemistry_02d2d1d1_241c_429b_b4e7_31f2c3dc4835 a owl:Class ; rdfs:label "D95ParticleSize"@en ; rdfs:comment "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 95% of the sample's particles fall."@en ; @@ -381,6 +386,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "D50ParticleSize"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 50% of the sample's particles fall."@en . +:electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45 a owl:Class ; + rdfs:label "UpperCurrentLimit"@en ; + rdfs:comment "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en ; + rdfs:subClassOf :electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 ; + skos:prefLabel "UpperCurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + :electrochemistry_3e54f9e3_a31d_4821_9bfb_ef953a42c35b a owl:Class ; rdfs:label "MaximumPulseDischargingCurrent"@en ; rdfs:comment "the maximum current approved for pulse discharge of an electrochemical device"@en ; @@ -608,6 +620,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "ChargingCurrent"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electric current applied to an electrochemical device during a charging process"@en . +:electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea a owl:Class ; + rdfs:label "LowerCurrentLimit"@en ; + rdfs:comment "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en ; + rdfs:subClassOf :electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 ; + skos:prefLabel "LowerCurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + :electrochemistry_7f073272_8925_4344_995c_a5a6dd1fcde6 a owl:Class ; rdfs:label "ChargingConstantCurrentPercentage"@en ; rdfs:comment "the percentage of the total charge capacity that is obtained during a constant current charge process"@en ; @@ -705,6 +724,20 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "DischargingSpecificCapacity"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "quotient of the capacity of a cell or battery [ or electrode or active material ] obtained during a discharge process by its mass."@en . +:electrochemistry_88dd2bce_fb17_4705_905d_892681812290 a owl:Class ; + rdfs:label "NumberOfIterations"@en ; + rdfs:comment "the number of times an iterative process should occur"@en ; + rdfs:subClassOf emmo:EMMO_ba882f34_0d71_4e4f_9d92_0c076c633a2c ; + skos:prefLabel "NumberOfIterations"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the number of times an iterative process should occur"@en . + +:electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100 a owl:Class ; + rdfs:label "NominalCapacity"@en ; + rdfs:comment "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en ; + rdfs:subClassOf :electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 ; + skos:prefLabel "NominalCapacity"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en . + :electrochemistry_8e943e12_ecc0_4093_899e_7226be6be7f2 a owl:Class ; rdfs:label "D90ParticleSize"@en ; rdfs:comment "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 90% of the sample's particles fall."@en ; @@ -820,6 +853,15 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the celsius temperature of the ambient environment"@en ; :electrochemistry_1b717a20_17e3_4480_8c60_c4ae94058f05 "Environmental_Temperature (C)"@en . +:electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f a owl:Class ; + rdfs:label "RealElectricImpedance"@en ; + rdfs:comment "the imaginary part of the complex electric impedance"@en ; + rdfs:subClassOf emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 ; + skos:altLabel "ACResistance"@en ; + skos:prefLabel "RealElectricImpedance"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q1048490"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the imaginary part of the complex electric impedance"@en . + :electrochemistry_ae108db7_8765_4329_9908_059277dee586 a owl:Class ; rdfs:label "StepCapacity"@en ; rdfs:comment "the amount of charge that has passed through an electrochemical device within the time interval of a given testing step"@en ; @@ -1084,8 +1126,8 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry ; dcterms:license "https://creativecommons.org/licenses/by/4.0/legalcode" ; owl:imports ; - owl:versionIRI ; - owl:versionInfo "0.17.0-beta" . + owl:versionIRI ; + owl:versionInfo "0.18.0-beta" . a owl:NamedIndividual, foaf:Person ; @@ -1866,6 +1908,8 @@ In either case, the magnitude of the catalytic current depends on the applied po emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electric potential of an ion-selective electrode (ISE) and activity of an analyte ion at which the potential of the ISE is independent of temperature"@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1351/goldbook.I03304"@en . +emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 :electrochemistry_097ea615_c209_4edd_a1a1_5eea71d98fe8 "acimp/ohms"@en . + emmo:EMMO_e218c625_6a39_47a9_8d08_a2ef41c152a9 rdfs:subClassOf :electrochemistry_02eb0465_4f94_453c_8c1f_5ddf80134634 ; skos:altLabel "GravimetricEnergyDensity"@en ; :electrochemistry_811aafc3_0c6d_470e_b67e_ff5c82992609 "CmpEng(mWh/g)"@en . @@ -1997,14 +2041,6 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog skos:prefLabel "TemperatureLimit"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the temperature of a system"@en . -:electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 a owl:Class ; - rdfs:label "RatedCapacity"@en ; - rdfs:comment "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en ; - rdfs:subClassOf :electrochemistry_791c1915_a791_4450_acd8_7f94764743b5 ; - skos:prefLabel "RatedCapacity"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-03-15"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en . - :electrochemistry_9ed7210c_c4fa_467b_822d_ba12f885bdf4 a owl:Class ; rdfs:label "ConcentrationOverpotential"@en ; rdfs:comment "The concentration overpotential of an electrode reaction at a given electrode current density (c.d.) is basically the difference in equilibrium potentials across the diffusion layer. More precisely, it is the potential of a reference electrode (of the same electrode reaction as the working electrode ) with the interfacial concentrations which establish themselves at c.d., relative to the potential of a similar reference electrode with the concentrations of the bulk solution. From such a measured potential difference, with c.d. flowing, one needs to subtract the ohmic potential drop prevailing between the two electrodes."@en, @@ -2110,6 +2146,14 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog skos:prefLabel "NumberOfFiniteVolumeCells"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "number of discrete finite volume cells in a grid or sub-grid"@en . +:electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 a owl:Class ; + rdfs:label "RatedCapacity"@en ; + rdfs:comment "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en ; + rdfs:subClassOf :electrochemistry_791c1915_a791_4450_acd8_7f94764743b5 ; + skos:prefLabel "RatedCapacity"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-03-15"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en . + :electrochemistry_cc519a19_b8d5_4e3f_b893_3a884888ad79 a owl:Class ; rdfs:label "MaximumTemperature"@en ; rdfs:comment "the maximum allowable temperature"@en ; @@ -2186,14 +2230,6 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa :electrochemistry_a07dd85b_d0df_4d5d_8b0c_14d20ea3fe45 "current"@en ; :electrochemistry_ea9f4dba_8ca2_419e_9cdf_ce54e9ebbd46 "Current (A)"@en . -:electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 a owl:Class ; - rdfs:label "CurrentLimit"@en ; - rdfs:comment "limit on the electric current of an electrical system"@en ; - rdfs:subClassOf emmo:EMMO_c995ae70_3b84_4ebb_bcfc_69e6a281bb88, - :electrochemistry_b395a244_3a75_4737_be38_981bfa1277fe ; - skos:prefLabel "CurrentLimit"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the electric current of an electrical system"@en . - :electrochemistry_900e357f_2ee3_425a_a0b6_322661117787 a owl:Class ; rdfs:label "ElectrochemicalProperty"@en ; rdfs:subClassOf emmo:EMMO_909415d1_7c43_4d5e_bbeb_7e1910159f66 ; @@ -2292,6 +2328,14 @@ foaf:Person a owl:Class ; emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Faradaic_current"@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://goldbook.iupac.org/terms/view/F02321"@en . +:electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 a owl:Class ; + rdfs:label "CurrentLimit"@en ; + rdfs:comment "limit on the electric current of an electrical system"@en ; + rdfs:subClassOf emmo:EMMO_c995ae70_3b84_4ebb_bcfc_69e6a281bb88, + :electrochemistry_b395a244_3a75_4737_be38_981bfa1277fe ; + skos:prefLabel "CurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the electric current of an electrical system"@en . + :electrochemistry_1cd1d777_e67b_47eb_81f1_edac35d9f2c6 a owl:Class ; rdfs:label "Overpotential"@en ; rdfs:comment "difference between the electrode potential with current flow, and the electrode potential without current flow, i.e. the equilibrium potential"@en, diff --git a/versions/v0.10.0-beta/electrochemistry-inferred.ttl b/versions/v0.10.0-beta/electrochemistry-inferred.ttl index f4fa0f9..c704a22 100644 --- a/versions/v0.10.0-beta/electrochemistry-inferred.ttl +++ b/versions/v0.10.0-beta/electrochemistry-inferred.ttl @@ -7,7 +7,7 @@ @base . rdf:type owl:Ontology ; - owl:versionIRI ; + owl:versionIRI ; ""@en , "CHAMEO is a domain ontology designed to model the common aspects across the different characterisation techniques and methodologies."@en , """Defines physical quantities in the International System of Quantities (ISQ). ISQ was made an official ISO standard in 2009 and is defined in the ISO/IEC 80000 standard. @@ -146,12 +146,12 @@ The symbolic module includes symbols, symbolic constructs and formal languages." "https://w3id.org/emmo/domain/characterisation-methodology/chameo" ; "2024-04-12" , "2024-06-23"^^xsd:date , - "2024-07-03"^^xsd:date ; + "2024-07-05"^^xsd:date ; "https://creativecommons.org/licenses/by/4.0/legalcode" , "https://creativecommons.org/licenses/by/4.0/legalcode"@en ; "2024-04-12" , "2024-06-23"^^xsd:date , - "2024-07-03"^^xsd:date ; + "2024-07-05"^^xsd:date ; "EMMC ASBL" , "EMMC ASBL"@en , """EMMC ASBL @@ -241,11 +241,11 @@ We kindly acknowledge NIST for reusing their content, including the selection of "You can contact EMMO Authors via emmo@emmc.eu"@en ; owl:backwardCompatibleWith "" , " " , - "0.16.0-beta" ; - owl:priorVersion "0.16.0-beta" , + "0.17.0-beta" ; + owl:priorVersion "0.17.0-beta" , "0.5.0-beta" , "1.0.0-beta2" ; - owl:versionInfo "0.17.0-beta" , + owl:versionInfo "0.18.0-beta" , "0.6.0-beta" , "1.0.0-beta3" , "1.0.0-beta7" ; @@ -2333,7 +2333,7 @@ While the EMMO FOL introduces the quantum causality relation C(x,y) as primitive rdf:type owl:ObjectProperty ; rdfs:subPropertyOf ; rdfs:domain ; - rdfs:range ; + rdfs:range ; "hasSolvent"@en . @@ -2364,7 +2364,7 @@ While the EMMO FOL introduces the quantum causality relation C(x,y) as primitive rdf:type owl:ObjectProperty ; rdfs:subPropertyOf ; rdfs:domain ; - rdfs:range ; + rdfs:range ; "hasSolute"@en . @@ -34532,7 +34532,7 @@ Wikipedia"""@en ; , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "ZincElectrode"@en ; "an electrode in which the main active material is zinc metal"@en ; @@ -34555,7 +34555,7 @@ Wikipedia"""@en ; rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "LithiumElectrode"@en ; "an electrode in which the active material is lithium metal" . @@ -44391,164 +44391,11 @@ Wear is defined as the progressive removal of the material from a solid surface "InChI=1S/Pb" . -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0139937b_2724_4864_84fb_f14bcfb83538 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0bdf0bb9_41fc_455d_af11_a249e24acdf6 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0f2f65a7_5cc4_4c86_a4d0_676771c646f1 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_250fa43e_1f26_4ed8_b787_91a2325a8e7b - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_25f6ff4c_53ad_4837_97c4_aa6f06099bb5 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_2a540939_3908_4f85_92f9_c46da7d4e9cb - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_2a87ca10_fc6a_4d61_b48c_d9790a566ee3 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_3899a9c9_9b34_443e_8ce6_0257589bb38a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_3ac62305_acd6_4312_9e31_4f824bd2530d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_4126ee09_b9c6_4694_bf33_0d8970e05f72 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_4c62d334_a124_40b3_9fd1_fe713d01a6af - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_5088ad54_b37d_4ee1_a086_d6c17e644f9a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_5cee19d2_f916_4264_a8ed_efed13a808d2 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_68c0876b_cb62_41cd_846d_95cc9d9a8733 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_68f9b85e_340f_46ec_96da_ebb6bd62f5fd - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_73d4606c_7460_4a5c_9413_793bdf35753e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_7dc738d6_74f2_489e_ae84_a6dbdf627f2e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_848003a2_71ee_4967_8039_354c907ec7f4 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_97439fbb_155f_433d_9edd_d510cd491f24 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_9bd78e1c_a4dc_41b6_8013_adb51df1ffdc - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_9da78aea_d436_40e2_a68f_c3dee32b825e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_aa8e9cc4_5f66_4307_b1c8_26fac7653a90 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_acdb232f_8041_4e11_8a11_5db2d2baae4d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_b01771a9_218a_4b01_b20f_4021cfa0b7d5 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_b3815a7f_f64a_48f6_b0ce_d0032578c699 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c109ca45_08c7_4436_a818_a9c575785e2f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c28a0967_ed23_48cc_a14e_a651d75a19db - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c5582dae_ccff_4fbe_adaa_078091054640 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c728b6b9_449a_45ff_b5ae_6b7968708f0d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_cd17ca33_ae3d_4738_8930_547673bf6c1f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_cdd18f0c_e7b3_4d09_b3dd_c09fe4b1adba - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_d53259a7_0d9c_48b9_a6c1_4418169df303 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_d673ceb2_3045_4e2e_8cad_56f5169b542f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_db74b6b7_09fc_40db_a7d5_6eb86b69192a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_dc5fb846_1824_40f8_9834_81f118aa1c2d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_dcdbdbed_2e20_40d1_a7a5_5761de7f0618 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_e1e6ff98_0725_4d27_ab21_2ca5a95371f0 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_e8fafdc8_6cd3_4dd0_9630_10ca8e3f1827 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_f3e7979a_e3ef_450a_8762_7d8778afe478 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_f7525766_90cf_43e9_8932_7cb3b14f676f - rdf:type owl:Class . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626 + rdf:type owl:Class ; + rdfs:subClassOf ; + "ImaginaryElectricImpedance"@en ; + "the imaginary part of the complex electric impedance"@en . ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_01260656_ac32_472e_9513_a607366538ec @@ -44872,11 +44719,11 @@ Wear is defined as the progressive removal of the material from a solid surface rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCLCOElectrode"@en ; @@ -45639,7 +45486,7 @@ and t* through mathematical models, provided that the long-time potential- deter , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LFPElectrode"@en ; @@ -46241,7 +46088,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "PtElectrode"@en ; "PlatinumElectrode"@en ; @@ -46343,7 +46190,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SiliconOxideGraphiteElectrode"@en ; @@ -46477,7 +46324,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "FTOElectrode"@en ; @@ -46500,7 +46347,7 @@ Aluminum foil"""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "NiOOHElectrode"@en , "NickelOxyhydroxideElectrode"@en ; @@ -46544,6 +46391,14 @@ Aluminum foil"""@en . "a coin case with a nominal diameter of 7.9 mm and a height of 1.65 mm"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b + rdf:type owl:Class ; + rdfs:subClassOf , + ; + "Resting"@en ; + "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 rdf:type owl:Class ; rdfs:subClassOf ; @@ -46811,6 +46666,13 @@ Aluminum foil"""@en . "A material relation in electrochemistry."@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45 + rdf:type owl:Class ; + rdfs:subClassOf ; + "UpperCurrentLimit"@en ; + "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3e54f9e3_a31d_4821_9bfb_ef953a42c35b rdf:type owl:Class ; rdfs:subClassOf , @@ -46981,7 +46843,7 @@ Aluminum foil"""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNMOElectrode"@en ; @@ -47201,11 +47063,11 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCLMOElectrode"@en ; @@ -47294,7 +47156,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumNickelPhosphateElectrode"@en ; @@ -47549,7 +47411,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumIronPhosphateElectrode"@en ; @@ -47904,7 +47766,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "CarbonMonofluorideElectrode"@en ; "electrode in which the active material is carbon monofluoride"@en ; @@ -48131,7 +47993,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "HardCarbonElectrode"@en ; "electrode in which the active material is hard carbon"@en . @@ -48291,7 +48153,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "SAE"@en ; "SolidAmalgamElectrode"@en ; @@ -48426,7 +48288,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LTOElectrode"@en ; @@ -48518,20 +48380,13 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ] . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "system that consists of at least two electron conductors (electrodes) in contact with ionic conductors (electrolytes)"@en ; - "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6fec8cc1_4e6c_428e_8343_6cf3c286a185 rdf:type owl:Class ; rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "AuElectrode"@en ; "GoldElectrode"@en ; @@ -48691,7 +48546,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NiOElectrode"@en ; @@ -48721,7 +48576,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "TiO2Electrode"@en ; @@ -48915,13 +48770,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ] . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "in secondary cells, the active material is restored to its original state during charge"@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - [ rdf:type owl:Axiom ; owl:annotatedSource ; owl:annotatedProperty ; @@ -48965,6 +48813,13 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s "an electrode in which the primary active material consists of caesium or caesium compounds"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea + rdf:type owl:Class ; + rdfs:subClassOf ; + "LowerCurrentLimit"@en ; + "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7f073272_8925_4344_995c_a5a6dd1fcde6 rdf:type owl:Class ; rdfs:subClassOf ; @@ -49118,7 +48973,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "LiquidGalliumElectrode"@en ; "a liquid electrode with an active material of gallium"@en . @@ -49188,7 +49043,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "ZnOElectrode"@en ; @@ -49446,6 +49301,13 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "an electrode in which the primary active material consists of sulfur or sulfur compounds"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_88dd2bce_fb17_4705_905d_892681812290 + rdf:type owl:Class ; + rdfs:subClassOf ; + "NumberOfIterations"@en ; + "the number of times an iterative process should occur"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8968eb7a_9a65_4286_a596_c31b998df329 rdf:type owl:Class ; rdfs:subClassOf ; @@ -49504,6 +49366,13 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "substance that increases chemical reaction speed, and which is conserved after the reaction"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100 + rdf:type owl:Class ; + rdfs:subClassOf ; + "NominalCapacity"@en ; + "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8b40856f_1ca2_4137_9616_7fb624671909 rdf:type owl:Class ; rdfs:subClassOf , @@ -50109,7 +49978,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumCobaltPhosphateElectrode"@en ; @@ -50298,13 +50167,6 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; "plate in which the active material is applied as a paste to a conductive current collector"@en . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "plate in which the active material is applied as a paste to a conductive current collector"@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a24f8581_a5a4_41a4_bb45_d0fdd5c0d810 rdf:type owl:Class ; @@ -50397,7 +50259,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "SilverOxideElectrode"@en ; "an electrode in which the primary active material consists of manganese dioxide or vmanganese dioxide compounds"@en ; @@ -50427,7 +50289,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "AgElectrode"@en ; "SilverElectrode"@en ; @@ -50662,7 +50524,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "CupricOxideElectrode"@en ; "CopperOxideElectrode"@en ; @@ -50751,6 +50613,15 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "Environmental_Temperature (C)"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f + rdf:type owl:Class ; + rdfs:subClassOf ; + "ACResistance"@en ; + "RealElectricImpedance"@en ; + "https://www.wikidata.org/wiki/Q1048490"@en ; + "the imaginary part of the complex electric impedance"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abfadc99_6e43_4d37_9b04_7fc5b0f327ae rdf:type owl:Class ; rdfs:subClassOf , @@ -50782,7 +50653,8 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e rdf:type owl:Class ; rdfs:subClassOf ; - "CCCVCycling"@en ; + "CCCVCycling"@en ; + "ConstantCurrentConstantVoltageCycling"@en ; "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en . @@ -51030,7 +50902,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCElectrode"@en ; @@ -51360,11 +51232,11 @@ of other configurations are used."""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNMOLFPElectrode"@en ; @@ -51466,13 +51338,6 @@ of other configurations are used."""@en . "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; "https://en.wikipedia.org/wiki/Fuel_cell"@en . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_bea04148_10d9_4eda_9cd5_8f609d7e9ff8 rdf:type owl:Class ; @@ -51568,7 +51433,7 @@ of other configurations are used."""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LMOElectrode"@en ; @@ -51751,11 +51616,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "ITO"@en ; @@ -51809,7 +51674,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "GraphiteElectrode"@en ; "electrode in which the active material is graphite"@en . @@ -51928,7 +51793,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "MnO2Electrode"@en ; "ManganeseDioxideElectrode"@en ; @@ -51943,7 +51808,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNOElectrode"@en ; @@ -51963,7 +51828,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "IrO2Electrode"@en ; @@ -51977,7 +51842,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumManganesePhosphateElectrode"@en ; @@ -52146,7 +52011,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "IronDisulfideElectrode"@en ; "an electrode in which the primary active material consists of iron disulfide or iron disulfide compounds."@en ; @@ -52509,7 +52374,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "HgElectrode"@en ; "MercuryElectrode"@en ; @@ -52785,11 +52650,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SiliconGraphiteElectrode"@en ; @@ -52802,7 +52667,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumManganeseOxideElectrode"@en ; @@ -53004,7 +52869,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumCobaltOxideElectrode"@en ; @@ -53096,7 +52961,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NCAElectrode"@en ; @@ -53315,7 +53180,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "PbOElectrode"@en ; @@ -53401,7 +53266,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumChromiumOxideElectrode"@en ; @@ -53621,7 +53486,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LCOElectrode"@en ; @@ -53672,11 +53537,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LMOLFPElectrode"@en ; @@ -53808,10 +53673,10 @@ In either case, the magnitude of the catalytic current depends on the applied po "The universe is considered as a causally self-connected object, encompassing all other objects. For this reason is unique."@en . -[ owl:qualifiedCardinality "3"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "3"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "4"^^xsd:nonNegativeInteger @@ -53835,10 +53700,10 @@ In either case, the magnitude of the catalytic current depends on the applied po [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:minQualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:minQualifiedCardinality "2"^^xsd:nonNegativeInteger +[ owl:minQualifiedCardinality "1"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger @@ -53850,7 +53715,7 @@ In either case, the magnitude of the catalytic current depends on the applied po [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:minQualifiedCardinality "2"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger diff --git a/versions/v0.10.0-beta/electrochemistry.ttl b/versions/v0.10.0-beta/electrochemistry.ttl index baa1206..d442e3c 100644 --- a/versions/v0.10.0-beta/electrochemistry.ttl +++ b/versions/v0.10.0-beta/electrochemistry.ttl @@ -1,6 +1,6 @@ @prefix : . @prefix bibo: . -@prefix chemsub: . +@prefix chemsub: . @prefix dcterms: . @prefix emmo: . @prefix foaf: . @@ -54,9 +54,9 @@ schema:name a owl:AnnotationProperty . dcterms:created "2022-11-25"^^xsd:date ; dcterms:creator , ; - dcterms:issued "2024-07-03"^^xsd:date ; + dcterms:issued "2024-07-05"^^xsd:date ; dcterms:license "https://creativecommons.org/licenses/by/4.0/legalcode" ; - dcterms:modified "2024-07-03"^^xsd:date ; + dcterms:modified "2024-07-05"^^xsd:date ; dcterms:publisher "EMMO" ; dcterms:source , , @@ -67,13 +67,13 @@ schema:name a owl:AnnotationProperty . bibo:status "unstable" ; vann:preferredNamespacePrefix "echem" ; vann:preferredNamespaceUri "https://w3id.org/emmo/domain/electrochemistry" ; - owl:backwardCompatibleWith "0.16.0-beta" ; + owl:backwardCompatibleWith "0.17.0-beta" ; owl:imports , , - ; - owl:priorVersion "0.16.0-beta" ; - owl:versionIRI ; - owl:versionInfo "0.17.0-beta" ; + ; + owl:priorVersion "0.17.0-beta" ; + owl:versionIRI ; + owl:versionInfo "0.18.0-beta" ; foaf:logo "https://raw.githubusercontent.com/emmo-repo/domain-electrochemistry/gh-pages/assets/img/fig/png/domain-electrochemistry-logo.png" . :electrochemistry_027d437e_3bbf_4eda_940b_e509f8d2b993 a owl:Class ; @@ -535,6 +535,14 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "R716" ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a coin case with a nominal diameter of 7.9 mm and a height of 1.65 mm"@en . +:electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b a owl:Class ; + rdfs:label "Resting"@en ; + rdfs:comment "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en ; + rdfs:subClassOf , + :electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 ; + skos:prefLabel "Resting"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en . + :electrochemistry_36444184_1100_4271_869f_7f2d983aaecb a owl:Class ; rdfs:label "P45173115" ; rdfs:comment "a prismatic case with a nominal length of 45 mm, width of 173 mm, and height of 115 mm"@en ; @@ -1564,6 +1572,15 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "TinBasedElectrode"@en ; emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "an electrode in which the primary active material consists of tin or tin compounds"@en . +:electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c a owl:Class ; + rdfs:label "PastedPlate"@en ; + rdfs:comment "plate in which the active material is applied as a paste to a conductive current collector"@en ; + rdfs:subClassOf :electrochemistry_92147e31_d015_4889_a092_04fbab033f15 ; + skos:altLabel "PastedElectrode"@en ; + skos:prefLabel "PastedPlate"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "plate in which the active material is applied as a paste to a conductive current collector"@en . + :electrochemistry_a277e420_2483_44d5_a2bc_4e421dea231a a owl:Class ; rdfs:label "R926" ; rdfs:comment "a coin case with a nominal diameter of 9.5 mm and a height of 2.6 mm"@en ; @@ -1658,10 +1675,11 @@ schema:name a owl:AnnotationProperty . emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a coin case with a nominal diameter of 11.6 mm and a height of 4.2 mm"@en . :electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e a owl:Class ; - rdfs:label "CCCVCycling"@en ; + rdfs:label "ConstantCurrentConstantVoltageCycling"@en ; rdfs:comment "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en ; rdfs:subClassOf :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; - skos:prefLabel "CCCVCycling"@en ; + skos:altLabel "CCCVCycling"@en ; + skos:prefLabel "ConstantCurrentConstantVoltageCycling"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en . :electrochemistry_ad9cdad6_66e8_471e_a7c6_b79f37c20814 a owl:Class ; @@ -1783,6 +1801,17 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "P20100141" ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a prismatic case with a nominal length of 20 mm, width of 100 mm, and height of 141 mm"@en . +:electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d a owl:Class ; + rdfs:label "FuelCell"@en ; + rdfs:comment "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; + rdfs:subClassOf :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; + skos:prefLabel "FuelCell"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q180253"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-05"@en ; + emmo:EMMO_6dd685dd_1895_46e4_b227_be9f7d643c25 "https://dbpedia.org/page/Fuel_cell"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; + emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Fuel_cell"@en . + :electrochemistry_bea04148_10d9_4eda_9cd5_8f609d7e9ff8 a owl:Class ; rdfs:label "CelsiusTemperatureMeasurement"@en ; rdfs:comment "measurement of temperature"@en ; @@ -3335,15 +3364,6 @@ schema:name a owl:AnnotationProperty . "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-26"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "interface between an electrolyte and an electrode where an electrode reaction takes place."@en . -:electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c a owl:Class ; - rdfs:label "PastedPlate"@en ; - rdfs:comment "plate in which the active material is applied as a paste to a conductive current collector"@en ; - rdfs:subClassOf :electrochemistry_92147e31_d015_4889_a092_04fbab033f15 ; - skos:altLabel "PastedElectrode"@en ; - skos:prefLabel "PastedPlate"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "plate in which the active material is applied as a paste to a conductive current collector"@en . - :electrochemistry_a462859d_d8bd_48ea_8bde_1576f1248a1e a owl:Class ; rdfs:label "SilverElectrode"@en ; rdfs:comment "electrode in the form of foil, mesh, wire, rod, tube, powder, pellets, or single crystal of silver"@en ; @@ -3459,17 +3479,6 @@ of other configurations are used."""@en . emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-19"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "part which insures insulation between the plate (electrode) edges and adjacent plates (electrodes) and the container side walls"@en . -:electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d a owl:Class ; - rdfs:label "FuelCell"@en ; - rdfs:comment "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - rdfs:subClassOf :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; - skos:prefLabel "FuelCell"@en ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q180253"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-05"@en ; - emmo:EMMO_6dd685dd_1895_46e4_b227_be9f7d643c25 "https://dbpedia.org/page/Fuel_cell"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Fuel_cell"@en . - :electrochemistry_bed5b5f9_b89d_45e3_a8c2_81b70ae21847 a owl:Class ; rdfs:label "SeriesParallelConnection"@en ; rdfs:comment "arrangement of cells or batteries wherein in series connected cells or batteries are connected in parallel."@en ; @@ -4518,15 +4527,20 @@ schema:Person a owl:Class ; skos:prefLabel "BimetallicOxideElectrode"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "an electrode consisting of two metal oxide active materials"@en . -:electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 a owl:Class ; - rdfs:label "GalvanostaticProcess"@en ; - rdfs:comment "a process in which the electric current is kept constant"@en ; - rdfs:subClassOf [ a owl:Restriction ; - owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; - owl:someValuesFrom :electrochemistry_22725105_c941_4b14_a4a2_fcb627958607 ], - :electrochemistry_5548f188_df00_4c05_ae98_7846e92efe36 ; - skos:prefLabel "GalvanostaticProcess"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a process in which the electric current is kept constant"@en . +:electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 a owl:Class ; + rdfs:label "ActiveMaterial"@en ; + rdfs:comment "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; + rdfs:subClassOf :electrochemistry_b5ea31c9_bb10_4276_980e_c3eceb1efc82, + :electrochemistry_ebdb68e9_c4b5_4d57_a042_c0f51d446755 ; + skos:altLabel "ActiveElectrochemicalMaterial"@en, + "ElectrochemicallyActiveMaterial"@en ; + skos:prefLabel "ActiveMaterial"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q120907375" ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-33", + "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-14"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; + emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "material which reacts chemically to produce electric energy when the cell discharges", + "in secondary cells, the active material is restored to its original state during charge"@en . :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 a owl:Class ; rdfs:label "PotentiometricStrippingAnalysis"@en ; @@ -4601,20 +4615,15 @@ schema:Person a owl:Class ; "The electrode (or interfacial) reaction involves all the processes (chemical reaction, structural reorganization, adsorption) accompanying the charge transfer step."@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1351/goldbook.E01960"@en . -:electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 a owl:Class ; - rdfs:label "ActiveMaterial"@en ; - rdfs:comment "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; - rdfs:subClassOf :electrochemistry_b5ea31c9_bb10_4276_980e_c3eceb1efc82, - :electrochemistry_ebdb68e9_c4b5_4d57_a042_c0f51d446755 ; - skos:altLabel "ActiveElectrochemicalMaterial"@en, - "ElectrochemicallyActiveMaterial"@en ; - skos:prefLabel "ActiveMaterial"@en ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q120907375" ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-33", - "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-14"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "material which reacts chemically to produce electric energy when the cell discharges", - "in secondary cells, the active material is restored to its original state during charge"@en . +:electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 a owl:Class ; + rdfs:label "GalvanostaticProcess"@en ; + rdfs:comment "a process in which the electric current is kept constant"@en ; + rdfs:subClassOf [ a owl:Restriction ; + owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; + owl:someValuesFrom :electrochemistry_22725105_c941_4b14_a4a2_fcb627958607 ], + :electrochemistry_5548f188_df00_4c05_ae98_7846e92efe36 ; + skos:prefLabel "GalvanostaticProcess"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a process in which the electric current is kept constant"@en . :electrochemistry_8a1c9a7b_978c_4421_a9c1_d0b07b42aab9 a owl:Class ; rdfs:label "ChemicalReaction"@en ; @@ -4953,9 +4962,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "extremely resistant to many chemicals, impermeable to gases and liquids, and has good electrical conductivity, high hardness and strength, and biocompatibility"@en . + owl:annotatedTarget "electrode made of glassy carbon material with an intertwined graphitic ribbon structure, formed by pyrolysis of a resol precursor at temperatures up to 3000 °C"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -4976,28 +4985,22 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "A disc electrode that is embedded in the centre of a cylinder which rotates in solution around the longitudinal cylinder axis."@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "composite system in which the supplied electric energy mainly produces chemical reactions or, conversely, in which the energy released by chemical reactions is mainly delivered by the system as electric energy"@en . + owl:annotatedTarget "a system containing two electrodes that allow transport of electrons, separated by an electrolyte that allows movement of ions but blocks movement of electrons."@en . [] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "system that consists of at least two electron conductors (electrodes) in contact with ionic conductors (electrolytes)"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" . + owl:annotatedTarget "composite system in which the supplied electric energy mainly produces chemical reactions or, conversely, in which the energy released by chemical reactions is mainly delivered by the system as electric energy"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "glassy carbon combines glass-like mechanical characteristics with physical properties similar to graphite, owing to its “graphene ribbon” structure"@en . - -[] a owl:Axiom ; - dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "a system containing two electrodes that allow transport of electrons, separated by an electrolyte that allows movement of ions but blocks movement of electrons."@en . + owl:annotatedTarget "extremely resistant to many chemicals, impermeable to gases and liquids, and has good electrical conductivity, high hardness and strength, and biocompatibility"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5033,13 +5036,13 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "one of the most frequently used working electrodes"@en . + owl:annotatedTarget "glassy carbon combines glass-like mechanical characteristics with physical properties similar to graphite, owing to its “graphene ribbon” structure"@en . [] a owl:Axiom ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; - owl:annotatedTarget "in secondary cells, the active material is restored to its original state during charge"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedTarget "material that is oxidized or reduced at an electrode in an electrochemical cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5047,12 +5050,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; owl:annotatedTarget "material which reacts chemically to produce electric energy when the cell discharges" . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; - owl:annotatedTarget "material that is oxidized or reduced at an electrode in an electrochemical cell"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5061,9 +5058,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "electrode made of glassy carbon material with an intertwined graphitic ribbon structure, formed by pyrolysis of a resol precursor at temperatures up to 3000 °C"@en . + owl:annotatedTarget "one of the most frequently used working electrodes"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5083,18 +5080,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_83f2b1e9_cb67_4dbf_977f_ba54bbae374f ; owl:annotatedTarget "charge during which the electric current is maintained at a constant value regardless of the battery voltage or temperature"@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; - owl:annotatedTarget "Electrolyte solution in the anodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the anode is placed."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; owl:annotatedTarget "electrolyte on the anode side of an electrochemical cell that is divided into compartments"@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; + owl:annotatedTarget "Electrolyte solution in the anodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the anode is placed."@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5133,15 +5130,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_8d3bf304_78e4_4e99_abe1_6ab429e44ed1 ; - owl:annotatedTarget "a sealed cell may be equipped with a safety device to prevent a dangerously high internal pressure and is designed to operate during its life in its original sealed state"@en . + owl:annotatedTarget "cell which remains closed and does not release either gas or liquid when operated within the limits specified by the manufacturer"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_8d3bf304_78e4_4e99_abe1_6ab429e44ed1 ; - owl:annotatedTarget "cell which remains closed and does not release either gas or liquid when operated within the limits specified by the manufacturer"@en . + owl:annotatedTarget "a sealed cell may be equipped with a safety device to prevent a dangerously high internal pressure and is designed to operate during its life in its original sealed state"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5150,10 +5147,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "capacitor consisting of a metallic plate as first conductor, a very thin oxide film formed on the metal as the dielectric and an electrolyte as second conductor"@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_06d8e1ee_924a_4915_998d_33a69f41dadc ; - owl:annotatedTarget "operation during which an electrochemical cell supplies electric energy as the result of chemical changes within the cell"@en . + owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; + owl:annotatedTarget "two-step electrochemical measurement in which 1) material is accumulated at an electrode and 2) the material is removed by chemical reaction or electrochemically at constant current with measurement of electrode potential"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5161,6 +5158,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; owl:annotatedTarget "historically for the analysis of metal ions, mercury ions were added to the test solution to form a mercury amalgam when reduced. Alternatively, an HMDE or MFE was used and the oxidizing agent added after amalgam formation. However, the toxicity of mercury and its compounds have all but precluded the present-day use of mercury"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_06d8e1ee_924a_4915_998d_33a69f41dadc ; + owl:annotatedTarget "operation during which an electrochemical cell supplies electric energy as the result of chemical changes within the cell"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5179,12 +5182,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; owl:annotatedTarget "the time between changes in potential in step 2 is related to the concentration of analyte in the solution"@en . -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; - owl:annotatedTarget "two-step electrochemical measurement in which 1) material is accumulated at an electrode and 2) the material is removed by chemical reaction or electrochemically at constant current with measurement of electrode potential"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5211,15 +5208,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_9ee6e728_e8f5_4b36_a045_d63da69dfc85 ; - owl:annotatedTarget "overcharge is also the act of charging beyond a certain limit specified by the manufacturer"@en . + owl:annotatedTarget "continued charging of a fully charged secondary cell or battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_9ee6e728_e8f5_4b36_a045_d63da69dfc85 ; - owl:annotatedTarget "continued charging of a fully charged secondary cell or battery"@en . + owl:annotatedTarget "overcharge is also the act of charging beyond a certain limit specified by the manufacturer"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5227,6 +5224,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_9f466223_e20a_474d_ac4d_6d4b6131c275 ; owl:annotatedTarget "an electrode that holds its potential essentially constant by efficiently allowing electric current to pass"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_a0580fa9_5073_44af_b33e_7adbc83892d0 ; + owl:annotatedTarget "electrode reaction in which oxidation occurs at the anode"@en . + [] a owl:Axiom ; dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5242,14 +5245,14 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0580fa9_5073_44af_b33e_7adbc83892d0 ; - owl:annotatedTarget "electrode reaction in which oxidation occurs at the anode"@en . + owl:annotatedSource :electrochemistry_a0a619d7_da95_41f0_8bc3_9c19d636d543 ; + owl:annotatedTarget "electrode that serves only as a source or sink for electrons without playing a chemical role in the electrode reaction"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0a619d7_da95_41f0_8bc3_9c19d636d543 ; - owl:annotatedTarget "electrode that serves only as a source or sink for electrons without playing a chemical role in the electrode reaction"@en . + owl:annotatedSource :electrochemistry_a0fcb105_587f_45d8_a89a_46dc8f745069 ; + owl:annotatedTarget "partial or complete external covering of a cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5260,14 +5263,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0fcb105_587f_45d8_a89a_46dc8f745069 ; - owl:annotatedTarget "partial or complete external covering of a cell"@en . - -[] a owl:Axiom ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c ; - owl:annotatedTarget "plate in which the active material is applied as a paste to a conductive current collector"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedSource :electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e ; + owl:annotatedTarget "process inside an electrolytic cell used to coat a conductive object with a layer of a material"@en . [] a owl:Axiom ; dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; @@ -5278,8 +5275,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e ; - owl:annotatedTarget "process inside an electrolytic cell used to coat a conductive object with a layer of a material"@en . + owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; + owl:annotatedTarget "component of a cell which permits the flow of gas in one direction only"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5287,12 +5284,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; owl:annotatedTarget "a valve has a characteristic venting or opening and closing pressure"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; - owl:annotatedTarget "component of a cell which permits the flow of gas in one direction only"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5305,6 +5296,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a462859d_d8bd_48ea_8bde_1576f1248a1e ; owl:annotatedTarget "electrode in the form of foil, mesh, wire, rod, tube, powder, pellets, or single crystal of silver"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; + owl:annotatedTarget "a chemical reaction in an electrolyte involving a transfer of electrons between chemical components or between chemical components and an electrode"@en . + [] a owl:Axiom ; dcterms:source "Bockris, J. O'M. and Despić, . Aleksandar R. (2011, December 15). Electrochemical reaction. Encyclopedia Britannica. https://www.britannica.com/science/electrochemical-reaction" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5317,12 +5314,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; owl:annotatedTarget "the electrode reaction can also involve other chemical reactions including subreactions on a cell electrode"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; - owl:annotatedTarget "a chemical reaction in an electrolyte involving a transfer of electrons between chemical components or between chemical components and an electrode"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5355,15 +5346,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_ae56cce3_7a7c_4e53_bb58_31e0d642d47e ; - owl:annotatedTarget "this flame front may originate from a spark or an external naked flame igniting combustible electrolysis gas"@en . + owl:annotatedTarget "vent of special design which provides protection against the propagation of a flame front from or into the interior of a secondary cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_ae56cce3_7a7c_4e53_bb58_31e0d642d47e ; - owl:annotatedTarget "vent of special design which provides protection against the propagation of a flame front from or into the interior of a secondary cell"@en . + owl:annotatedTarget "this flame front may originate from a spark or an external naked flame igniting combustible electrolysis gas"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5395,6 +5386,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_b525a629_a679_464f_bc5b_b49d2fc82686 ; owl:annotatedTarget "an electrochemical cell for conductivity measurements"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; + owl:annotatedTarget "by convention, cell electrode at which an oxidation reaction occurs"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5419,12 +5416,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; owl:annotatedTarget "the concepts of “anode” and “cathode” are related only to the direction of electron flow, not to the polarity of the electrodes"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; - owl:annotatedTarget "by convention, cell electrode at which an oxidation reaction occurs"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5433,15 +5424,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_b79d4f9e_5727_4895_8d7f_5fc18d83eb90 ; - owl:annotatedTarget "in a galvanic cell, parasitic reactions may cause inefficiencies or loss of performance"@en . + owl:annotatedTarget "an unwanted side reaction"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_b79d4f9e_5727_4895_8d7f_5fc18d83eb90 ; - owl:annotatedTarget "an unwanted side reaction"@en . + owl:annotatedTarget "in a galvanic cell, parasitic reactions may cause inefficiencies or loss of performance"@en . [] a owl:Axiom ; dcterms:source "IEEE Standard Glossary of Stationary Battery Terminology (2016), https://doi.org/10.1109/IEEESTD.2016.7552407" ; @@ -5481,12 +5472,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_bbae1ef4_0a95_4e7d_9932_1bf939129eef ; owl:annotatedTarget "current-potential curve in a voltammetry experiment"@en . -[] a owl:Axiom ; - dcterms:source "https://en.wikipedia.org/wiki/Square_wave" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0e33278b_639f_412d_9abd_64c3790026ef ; - owl:annotatedTarget "Periodic potential where the amplitude alternates at a steady frequency between fixed minimum and maximum values, with the same duration at minimum and maximum."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5500,10 +5485,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "part which insures insulation between the plate (electrode) edges and adjacent plates (electrodes) and the container side walls"@en . [] a owl:Axiom ; + dcterms:source "https://en.wikipedia.org/wiki/Square_wave" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d ; - owl:annotatedTarget "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedSource :electrochemistry_0e33278b_639f_412d_9abd_64c3790026ef ; + owl:annotatedTarget "Periodic potential where the amplitude alternates at a steady frequency between fixed minimum and maximum values, with the same duration at minimum and maximum."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5535,12 +5520,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_c3f4b34a_0e2c_46f3_baab_4ebd2682d26f ; owl:annotatedTarget "An ionic liquid is an electrolyte composed of a salt that is liquid below 100 °C. Ionic liquids have found uses in electrochemical analysis, because their unconventional properties include a negligible vapor pressure, a high thermal and electrochemical stability, and exceptional dissolution properties for both organic and inorganic chemical species."@en . -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; - owl:annotatedTarget "Electron conductor in an electrochemical cell connected to the external circuit."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5553,6 +5532,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_c55ec02c_b727_4df1_97ce_91d7bb5d5e91 ; owl:annotatedTarget "unplanned escape of electrolyte, gas or other material from a cell or battery"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_c610d869_cc03_44f0_b40d_ca86e945b9c9 ; + owl:annotatedTarget "cell from which electrolyte cannot escape regardless of its orientation"@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5562,8 +5547,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_c610d869_cc03_44f0_b40d_ca86e945b9c9 ; - owl:annotatedTarget "cell from which electrolyte cannot escape regardless of its orientation"@en . + owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; + owl:annotatedTarget "electronically conductive part in electric contact with a medium of lower electronic conductivity and intended to perform one or more of the functions of emitting charge carriers to or receiving charge carriers from that medium or to establish an electric field in that medium"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5579,21 +5564,21 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; - owl:annotatedTarget "by convention, an oxidation reaction occurs during discharge"@en . + owl:annotatedTarget "for a device having two electrodes, that electrode having the lower electric potential"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; - owl:annotatedTarget "electronically conductive part in electric contact with a medium of lower electronic conductivity and intended to perform one or more of the functions of emitting charge carriers to or receiving charge carriers from that medium or to establish an electric field in that medium"@en . + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; + owl:annotatedTarget "by convention, an oxidation reaction occurs during discharge"@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; - owl:annotatedTarget "for a device having two electrodes, that electrode having the lower electric potential"@en . + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; + owl:annotatedTarget "Electron conductor in an electrochemical cell connected to the external circuit."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5604,8 +5589,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0f827b54_370d_4c63_99a6_80f13b24e55e ; - owl:annotatedTarget "evolution of gas resulting from electrolysis of the water in the electrolyte of a cell"@en . + owl:annotatedSource :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; + owl:annotatedTarget "set of operations that is carried out on a secondary cell or battery and is repeated regularly in the same sequence."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5622,14 +5607,14 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; - owl:annotatedTarget "set of operations that is carried out on a secondary cell or battery and is repeated regularly in the same sequence."@en . + owl:annotatedSource :electrochemistry_d5da9948_e95b_4f12_a2d2_10a48f390c52 ; + owl:annotatedTarget "arrangement of cells or batteries wherein parallel connected cells or batteries are connected in series."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_d5da9948_e95b_4f12_a2d2_10a48f390c52 ; - owl:annotatedTarget "arrangement of cells or batteries wherein parallel connected cells or batteries are connected in series."@en . + owl:annotatedSource :electrochemistry_0f827b54_370d_4c63_99a6_80f13b24e55e ; + owl:annotatedTarget "evolution of gas resulting from electrolysis of the water in the electrolyte of a cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5655,18 +5640,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_df78745e_f9db_4830_88f0_8ce074fcb8ff ; owl:annotatedTarget "liquid metal electrode used in polarography"@en . +[] a owl:Axiom ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; + owl:annotatedTarget "electrochemical cell in which chemical reactions occur spontaneously and chemical energy is converted into electrical energy."@en . + [] a owl:Axiom ; dcterms:references "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; owl:annotatedTarget "An electrochemical cell that spontaneously produces work."@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_113e0469_8ae0_407f_892d_4b988f8d8a08 ; - owl:annotatedTarget "electrochemical cell that has two half-cells separated by a wall permeable to ions, both containing the same electrolyte differing only in their temperatures."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5674,16 +5659,22 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "Electrochemical cell intended to produce electric energy."@en . [] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; - owl:annotatedTarget "electrochemical cell in which chemical reactions occur spontaneously and chemical energy is converted into electrical energy."@en . + owl:annotatedSource :electrochemistry_e2a1dae1_05e4_4bd1_a39d_0eb10db482bc ; + owl:annotatedTarget "method of separating and neutralizing ions by an electric current in an electrolytic cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e2a1dae1_05e4_4bd1_a39d_0eb10db482bc ; - owl:annotatedTarget "method of separating and neutralizing ions by an electric current in an electrolytic cell"@en . + owl:annotatedSource :electrochemistry_113e0469_8ae0_407f_892d_4b988f8d8a08 ; + owl:annotatedTarget "electrochemical cell that has two half-cells separated by a wall permeable to ions, both containing the same electrolyte differing only in their temperatures."@en . + +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; + owl:annotatedTarget "electrochemical cell intended to produce chemical reactions"@en . [] a owl:Axiom ; dcterms:references "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; @@ -5697,18 +5688,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; owl:annotatedTarget "Electrochemical cell in which electrical energy is converted into chemical energy."@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; - owl:annotatedTarget "electrochemical cell intended to produce chemical reactions"@en . - -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_1152ae6b_8b57_4d99_912e_40c6a29342fb ; - owl:annotatedTarget "mass m of electrochemically-transformed substance is proportional to the charge Q passed, m ∝ Q."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5721,6 +5700,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_ec1dce8b_bb46_41a9_b532_6bed381aa557 ; owl:annotatedTarget "secondary cell having a cover provided with an opening through which products of electrolysis and evaporation are allowed to escape freely from the cell to the atmosphere"@en . +[] a owl:Axiom ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_1152ae6b_8b57_4d99_912e_40c6a29342fb ; + owl:annotatedTarget "mass m of electrochemically-transformed substance is proportional to the charge Q passed, m ∝ Q."@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5739,12 +5724,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f0c24970_4c14_4207_bd78_5f2181a67085 ; owl:annotatedTarget "the process of forming a film or a bulk material using an electrochemical process where the electrons are supplied by an external power supply"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_1355816f_a2b5_4800_8001_fc888f5d6b1b ; - owl:annotatedTarget "instrument intended to measure the value of a voltage."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5757,6 +5736,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f47611a2_e081_47f0_b287_3fda5f706154 ; owl:annotatedTarget "chemical reaction which occurs in addition to the main process"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; + owl:annotatedTarget "electrode reaction in which reduction occurs at the cathode"@en . + +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_1355816f_a2b5_4800_8001_fc888f5d6b1b ; + owl:annotatedTarget "instrument intended to measure the value of a voltage."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5769,12 +5760,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; owl:annotatedTarget "electrode reaction, where the energy of electrons in the working electrode is higher than the LUMO orbital of the substrate"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; - owl:annotatedTarget "electrode reaction in which reduction occurs at the cathode"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5782,10 +5767,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "electrode that responds to one, or more than one, species in the solution being investigated, with no appreciable change of bulk solution composition during the measurement"@en . [] a owl:Axiom ; - dcterms:source "IUPAC. Compendium of Chemical Terminology, 2nd ed. (the \"Gold Book\"). Compiled by A. D. McNaught and A. Wilkinson. Blackwell Scientific Publications, Oxford (1997). Online version (2019-) created by S. J. Chalk. ISBN 0-9678550-9-8. https://doi.org/10.1351/goldbook." ; + dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_15325775_6d4c_4192_82f1_e4feca9de426 ; - owl:annotatedTarget "A membrane having ion-exchange groups:"@en . + owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; + owl:annotatedTarget "a material in which the mobile species are ions and free movement of electrons is blocked."@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5799,18 +5784,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; owl:annotatedTarget "liquid or solid substance containing mobile ions that render it conductive"@en . +[] a owl:Axiom ; + dcterms:source "IUPAC. Compendium of Chemical Terminology, 2nd ed. (the \"Gold Book\"). Compiled by A. D. McNaught and A. Wilkinson. Blackwell Scientific Publications, Oxford (1997). Online version (2019-) created by S. J. Chalk. ISBN 0-9678550-9-8. https://doi.org/10.1351/goldbook." ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_15325775_6d4c_4192_82f1_e4feca9de426 ; + owl:annotatedTarget "A membrane having ion-exchange groups:"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; owl:annotatedTarget "substance that provides ions on dissolution in a solvent or on melting"@en . -[] a owl:Axiom ; - dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; - owl:annotatedTarget "a material in which the mobile species are ions and free movement of electrons is blocked."@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5823,18 +5808,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_fb9bf7cb_dd4b_4391_99a1_628263dd6940 ; owl:annotatedTarget "measuring instrument to obtain the electrical charge passed in an experiment, or to produce a known amount of substance in a titration."@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; - owl:annotatedTarget "Electrolyte solution in the cathodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the cathode is placed."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; owl:annotatedTarget "electrolyte on the cathode side of an electrochemical cell that is divided into compartments."@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; + owl:annotatedTarget "Electrolyte solution in the cathodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the cathode is placed."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5931,18 +5916,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_2d32a81a_2148_41bd_84fb_467aa8de4a8f ; owl:annotatedTarget "foil, wire, disc, or mesh electrode made of platinum, which is the most commonly used metallic working electrode in electrochemistry"@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; - owl:annotatedTarget "An interfacial reaction that necessarily involves a charge-transfer step."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; owl:annotatedTarget "electrochemical reaction involving the transfer of electrons between electrolyte and electrode"@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; + owl:annotatedTarget "An interfacial reaction that necessarily involves a charge-transfer step."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5957,15 +5942,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_328c6e36_3706_4d92_abae_432fa3adb2a0 ; - owl:annotatedTarget "a cell baffle has a second function in protecting the plate pack from damage by objects inserted through the filling hole"@en . + owl:annotatedTarget "internal component used to reduce the amount of electrolyte loss due to electrolyte spray being carried in the gas and/or by electrolyte movement"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_328c6e36_3706_4d92_abae_432fa3adb2a0 ; - owl:annotatedTarget "internal component used to reduce the amount of electrolyte loss due to electrolyte spray being carried in the gas and/or by electrolyte movement"@en . + owl:annotatedTarget "a cell baffle has a second function in protecting the plate pack from damage by objects inserted through the filling hole"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5979,6 +5964,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_34bc54e3_de4c_41f8_8d3a_d77c951ee23a ; owl:annotatedTarget "needle-like or tree-like formation of crystalline growth formed during deposition of a material"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; + owl:annotatedTarget "by convention, cell electrode at which, a reduction reaction occurs"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5997,12 +5988,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; owl:annotatedTarget "the concepts of “anode” and “cathode” are related only to the direction of electron flow, not to the polarity of the electrodes"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; - owl:annotatedTarget "by convention, cell electrode at which, a reduction reaction occurs"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -6023,15 +6008,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_3f6c9e09_5f23_41cc_9f85_7de365cef089 ; - owl:annotatedTarget "electrolyte creep is sometimes indicated by the presence of a visible solid deposit or wet spots"@en . + owl:annotatedTarget "gradual and slow spreading of an electrolyte film on the external surface of a cell or battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_3f6c9e09_5f23_41cc_9f85_7de365cef089 ; - owl:annotatedTarget "gradual and slow spreading of an electrolyte film on the external surface of a cell or battery"@en . + owl:annotatedTarget "electrolyte creep is sometimes indicated by the presence of a visible solid deposit or wet spots"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -6041,9 +6026,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_04f28ce3_251d_429e_aa85_ab3eb45bbcd2 ; - owl:annotatedTarget "in lithium batteries thermal runaway may cause melting of lithium"@en . + owl:annotatedTarget "unstable condition arising during constant voltage charge in which the rate of heat dissipation capability, causing a continuous temperature increase with resulting further charge current increase, which can lead to the destruction of the battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -6077,9 +6062,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_04f28ce3_251d_429e_aa85_ab3eb45bbcd2 ; - owl:annotatedTarget "unstable condition arising during constant voltage charge in which the rate of heat dissipation capability, causing a continuous temperature increase with resulting further charge current increase, which can lead to the destruction of the battery"@en . + owl:annotatedTarget "in lithium batteries thermal runaway may cause melting of lithium"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; diff --git a/versions/v0.11.0-beta/context/context.json b/versions/v0.11.0-beta/context/context.json index ac1b0bb..2006ca7 100644 --- a/versions/v0.11.0-beta/context/context.json +++ b/versions/v0.11.0-beta/context/context.json @@ -1076,7 +1076,6 @@ "ButlerVolmerEquation": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d48ea516_5cac_4f86_bc88_21b6276c0938", "C": "https://w3id.org/emmo#EMMO_36a9bf69_483b_42fd_8a0c_7ac9206320bc", "CASRN": "https://w3id.org/emmo#EMMO_d2a47cd8_662f_438f_855a_b4378eb992ff", - "CCCVCycling": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e", "CPlusPlus": "https://w3id.org/emmo#EMMO_64aba1e5_24b7_4140_8eb4_676c35698e79", "CRate": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_e1fd84eb_acdb_4b2c_b90c_e899d552a3ee", "CSharp": "https://w3id.org/emmo#EMMO_268a8a97_3a6f_4022_93da_962a66827cdc", @@ -1285,7 +1284,7 @@ "CoatingThickness": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3b938708_e7e4_4ac0_a959_9c04306302e7", "Cobalt": "https://w3id.org/emmo/domain/chemical-substance#substance_8f857eb2_7cc8_4294_954d_e69f2842c084", "CobaltAtom": "https://w3id.org/emmo#EMMO_3fe9d899_f1f1_5657_b176_ac6afff2e93d", - "CobaltBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_838c115b_6bc9_4ce8_9f8d_86a6bf67742a", + "CobaltBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7b811780_7251_481b_a4d3_97d437955099", "CobaltHydroxide": "https://w3id.org/emmo/domain/chemical-substance#substance_29b1c15d_2632_40d7_88f7_43575b68b988", "CobaltIIAcetate": "https://w3id.org/emmo/domain/chemical-substance#substance_4310c690_9810_4a95_8d62_7e78e0b84437", "CobaltIIBistrifluoromethanesulfonylimide": "https://w3id.org/emmo/domain/chemical-substance#substance_f4dffee2_c642_4114_a748_5e93b3908380", @@ -1358,6 +1357,7 @@ "ConstantCurrentCharging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_83f2b1e9_cb67_4dbf_977f_ba54bbae374f", "ConstantCurrentChargingCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_37c38b7e_9ded_481a_85fd_a467f1ee2b9f", "ConstantCurrentConstantVoltageCharging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0cc8f231_0ce5_467e_9c76_29b2c80349ad", + "ConstantCurrentConstantVoltageCycling": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e", "ConstantCurrentDischarging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_53fe3f58_0802_41cf_af69_4784fc42cc30", "ConstantCurrentDischargingCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_08833ed2_6324_411a_b34b_fe64c44cd5ef", "ConstantPotentialPulses": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_84d37a37_88bd_47db_9425_31f73a81d38c", @@ -1590,7 +1590,7 @@ "DeviceTemperature": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_463950b9_fd8d_48de_a52d_b29cab026391", "DewPointTemperature": "https://w3id.org/emmo#EMMO_a383e332_a271_463f_9e44_559604547220", "Diameter": "https://w3id.org/emmo#EMMO_c1c8ac3c_8a1c_4777_8e0b_14c1f9f9b0c6", - "Dichloromethane": "https://w3id.org/emmo/domain/chemical-substance#substance_8385c3c4_5906_48f6_b6b6_4bb60dccc27a", + "Dichloromethane": "https://w3id.org/emmo/domain/chemical-substance#substance_a6feec60_5fe7_4687_b427_3bf2ed06008d", "DieCasting": "https://w3id.org/emmo#EMMO_a85d0b8a_588e_423f_b799_97b0890e9183", "DielectricAndImpedanceSpectroscopy": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#DielectricAndImpedanceSpectroscopy", "Dielectrometry": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Dielectrometry", @@ -1624,7 +1624,7 @@ "Dimethoxyethane": "https://w3id.org/emmo/domain/chemical-substance#substance_b6ecabf9_14a4_4808_a139_55329e70ad42", "Dimethoxymethane": "https://w3id.org/emmo/domain/chemical-substance#substance_21954b0b_c05c_42db_b276_3a931d8aabb1", "DimethylCarbonate": "https://w3id.org/emmo/domain/chemical-substance#substance_c4a7d7bd_497e_457e_b858_ff73254266d0", - "DimethylSulfoxide": "https://w3id.org/emmo/domain/chemical-substance#substance_b593b5dd_7957_4b85_856a_dd59775210b6", + "DimethylSulfoxide": "https://w3id.org/emmo/domain/chemical-substance#substance_ea68e1a4_6be8_4686_8701_ba88b40d00b7", "Dimethylformamide": "https://w3id.org/emmo/domain/chemical-substance#substance_769bdc09_f533_4fde_bb53_20339d5bfcb7", "Dimethylpropyleneurea": "https://w3id.org/emmo/domain/chemical-substance#substance_945c68da_3baf_4da6_b794_dca7aebc4ca7", "Dimethylsulfate": "https://w3id.org/emmo/domain/chemical-substance#substance_3c8fb431_7d9d_4a89_a494_708df34f44d3", @@ -1837,7 +1837,7 @@ "ElectronicModel": "https://w3id.org/emmo#EMMO_6eca09be_17e9_445e_abc9_000aa61b7a11", "ElectronvoltPerMetre": "https://w3id.org/emmo#ElectronvoltPerMetre", "Electroosmosis": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_5641910f_6e69_4ce4_be84_4b1bf14b8916", - "Electroplating": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e", + "Electroplating": "https://w3id.org/emmo#EMMO_30e3edb5_0977_4b9b_9aed_5a4d16c1c07c", "ElementalMaterial": "https://w3id.org/emmo#EMMO_a086af15_a7c3_404c_b4ce_c8e4466f1b4b", "ElementalSubstance": "https://w3id.org/emmo#EMMO_436b11bd_1756_4821_9f14_c9ed6b67552e", "ElementaryBoson": "https://w3id.org/emmo#EMMO_cafd0f10_ce85_48b9_9a36_2b0af141ce21", @@ -2192,11 +2192,12 @@ "ISQBaseQuantity": "https://w3id.org/emmo#EMMO_1a4c1a97_88a7_4d8e_b2f9_2ca58e92dde4", "ISQDerivedQuantity": "https://w3id.org/emmo#EMMO_2946d40b_24a1_47fa_8176_e3f79bb45064", "ISQDimensionlessQuantity": "https://w3id.org/emmo#EMMO_a66427d1_9932_4363_9ec5_7d91f2bfda1e", - "IUPACName": "https://w3id.org/emmo#EMMO_16a3bd5c_75f0_42b3_b000_cb0d018f840e", + "IUPACName": "https://w3id.org/emmo#EMMO_f652e7d2_0b33_4d10_8d0f_2f70089982ba", "IUPACNomencalture": "https://w3id.org/emmo#EMMO_91a0635a_a89a_46de_8928_04a777d145c7", "Icon": "https://w3id.org/emmo#EMMO_d7788d1a_020d_4c78_85a1_13563fcec168", "Illuminance": "https://w3id.org/emmo#EMMO_b51fbd00_a857_4132_9711_0ef70e7bdd20", "IlluminanceTimeUnit": "https://w3id.org/emmo#EMMO_e467cc3f_676c_432e_b70e_19237d1bcc78", + "ImaginaryElectricImpedance": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626", "Impedimetry": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Impedimetry", "InChI": "https://w3id.org/emmo#EMMO_d74ed682_894f_46c5_87cb_167f60926965", "IncreasingPotentialPulses": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_77be01ef_49bd_4f2e_bec8_eec0894b8562", @@ -2288,7 +2289,7 @@ "IridiumSymbol": "https://w3id.org/emmo#EMMO_b8aab013_b729_51f1_bc14_5302e7f97cbe", "Iron": "https://w3id.org/emmo/domain/chemical-substance#substance_89fd13e8_8061_41da_83f4_634144116425", "IronAtom": "https://w3id.org/emmo#EMMO_a4839f08_1080_53bf_9cb3_101e20c2656b", - "IronBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_cc4e178c_bc1f_4502_b6c2_33f304ef6bab", + "IronBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_5e1136d3_df00_40f7_a4bc_8259341053a1", "IronDisulfide": "https://w3id.org/emmo/domain/chemical-substance#substance_c728b6b9_449a_45ff_b5ae_6b7968708f0d", "IronDisulfideElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d2726dd5_69f0_4cb1_bd3c_4c48813e57e7", "IronIIIHydroxide": "https://w3id.org/emmo/domain/chemical-substance#substance_323a2e39_d7d5_4802_884a_9aa41a280986", @@ -2556,6 +2557,7 @@ "LossFactor": "https://w3id.org/emmo#EMMO_c3796906_8063_47d4_92af_890ae08f25fa", "LowPressureCasting": "https://w3id.org/emmo#EMMO_8b2fd84c_8f51_4731_9bd7_830545e78b23", "LowerCriticalMagneticFluxDensity": "https://w3id.org/emmo#EMMO_fd4a6307_f9f7_4b54_b044_caa04e620232", + "LowerCurrentLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea", "LowerFrequencyLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_b66d6553_6136_4754_902a_707e414210c2", "LowerVoltageLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_534dd59c_904c_45d9_8550_ae9d2eb6bbc9", "Lumen": "https://w3id.org/emmo#Lumen", @@ -2608,7 +2610,7 @@ "MagnesiumTriflate": "https://w3id.org/emmo/domain/chemical-substance#substance_df24fad8_7ef0_4330_a3f2_c4d65d9a3be8", "MagnesiumTrifluoromethanesulfonyloxalatoborate": "https://w3id.org/emmo/domain/chemical-substance#substance_2b7473ba_9156_489a_880f_3a2f746cd104", "MagneticDipoleMoment": "https://w3id.org/emmo#EMMO_81e767f1_59b1_4d7a_bf69_17f322241831", - "MagneticDipoleMomentUnit": "https://w3id.org/emmo#EMMO_5073dc80_aec2_4a3b_8057_fababfcbfe11", + "MagneticDipoleMomentUnit": "https://w3id.org/emmo#EMMO_1c2226a9_22f0_40c8_8928_5a01d398f96e", "MagneticFieldStrength": "https://w3id.org/emmo#EMMO_b4895f75_41c8_4fd9_b6d6_4d5f7c99c423", "MagneticFieldStrengthUnit": "https://w3id.org/emmo#EMMO_e6b83139_ba92_4fbd_a8b2_c8dde55844a1", "MagneticFlux": "https://w3id.org/emmo#EMMO_3b931698_937e_49be_ab1b_36fa52d91181", @@ -2676,7 +2678,7 @@ "MassExcess": "https://w3id.org/emmo#EMMO_7dd84949_0afa_4313_9b89_7bb0dd2e7771", "MassFlow": "https://w3id.org/emmo#EMMO_6d61ee3c_c5b6_4452_bc11_e9c33af992a7", "MassFluxUnit": "https://w3id.org/emmo#EMMO_e35d4936_b2e3_4cd6_a437_f1c864b3d450", - "MassFraction": "https://w3id.org/emmo/disciplines/units/coherentsiunits#EMMO_089f13b1_ceb3_4d2a_8795_b4a2d92916da", + "MassFraction": "https://w3id.org/emmo#EMMO_7c055d65_2929_40e1_af4f_4bf10995ad50", "MassFractionOfDryMatter": "https://w3id.org/emmo#EMMO_8f171308_f902_42c5_ac1d_d5259022e9c1", "MassFractionOfWater": "https://w3id.org/emmo#EMMO_cac16ce6_2cef_405d_ac63_0f918db4875e", "MassFractionUnit": "https://w3id.org/emmo#EMMO_18448443_dcf1_49b8_a321_cf46e2c393e1", @@ -3027,6 +3029,7 @@ "NobeliumAtom": "https://w3id.org/emmo#EMMO_49eb0790_50c2_5691_a8bf_dfa6f4a9f6c7", "NobeliumSymbol": "https://w3id.org/emmo#EMMO_c1bb775c_0888_5b88_9cce_c49bae1d298b", "NobleGasElementalSubstance": "https://w3id.org/emmo/domain/chemical-substance#substance_cac14194_2d5f_4fe6_b794_a9319f6d76ee", + "NominalCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100", "NominalProperty": "https://w3id.org/emmo#EMMO_909415d1_7c43_4d5e_bbeb_7e1910159f66", "NominalVoltage": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_639b844a_e801_436b_985d_28926129ead6", "NonActivePower": "https://w3id.org/emmo#EMMO_83318add_d05e_40fc_93ea_c6cd605df437", @@ -3061,6 +3064,7 @@ "NumberOfFiniteVolumeCellsInX": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_e73586eb_8475_4879_a43e_087c702ea6bf", "NumberOfFiniteVolumeCellsInY": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_c2a85d02_c6b4_42df_b5ed_a9904ec34a5c", "NumberOfFiniteVolumeCellsInZ": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a5e00e3a_736c_4200_8d04_ed222fe07037", + "NumberOfIterations": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_88dd2bce_fb17_4705_905d_892681812290", "NumberOfTurnsInAWinding": "https://w3id.org/emmo#EMMO_eefaa0ef_e7d4_4633_bf79_655bb55f4a49", "Numeral": "https://w3id.org/emmo#EMMO_74b05aed_66bf_43c8_aa2c_752a9ca8be03", "Numerical": "https://w3id.org/emmo#EMMO_4ce76d7f_03f8_45b6_9003_90052a79bfaa", @@ -3211,7 +3215,7 @@ "Permittivity": "https://w3id.org/emmo#EMMO_0ee5779e_d798_4ee5_9bfe_c392d5bea112", "PermittivityUnit": "https://w3id.org/emmo#EMMO_5f89cb0c_3171_47ee_b2ab_027a07c34c4b", "Persistence": "https://w3id.org/emmo#EMMO_e04884d9_eda6_487e_93d5_7722d7eda96b", - "Person": "http://xmlns.com/foaf/0.1/Person", + "Person": "https://schema.org/Person", "Perspective": "https://w3id.org/emmo#EMMO_49267eba_5548_4163_8f36_518d65b583f9", "Peta": "https://w3id.org/emmo#EMMO_d7c74480_a568_4470_acff_f18b499cc850", "PetaPrefixedUnit": "https://w3id.org/emmo#EMMO_43a6b269_da31_4bb6_a537_c97df4fff32a", @@ -3298,7 +3302,7 @@ "Porosity": "https://w3id.org/emmo#EMMO_3a6578ac_aee0_43b9_9bc6_1eb208c8c9a9", "PorousElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3663991d_9319_4f7a_922b_f0e428b58801", "PorousSeparator": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_58413d4e_2885_459e_ac06_8d45e661cf91", - "PositionVector": "https://w3id.org/emmo#EMMO_4312cae4_03ba_457e_b35d_0671a7db350c", + "PositionVector": "https://w3id.org/emmo#EMMO_44da6d75_54a4_4aa8_bd3a_156f6e9abb8e", "PositiveElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_aff732a9_238a_4734_977c_b2ba202af126", "PositiveTerminal": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_522f0c0b_cf33_4328_af71_12e38dae6798", "Positron": "https://w3id.org/emmo#EMMO_26a38b26_38ea_4acf_b212_db9e34c71b7a", @@ -3483,7 +3487,7 @@ "R54215": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_fc9e7ba3_5084_4c2a_b488_c6a96af99232", "R616": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_dc019f3f_e5f3_4eeb_bab9_a845a02223a0", "R621": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_15ec346a_6d3c_4161_95e1_9cf889965f85", - "R626": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_68c1c36e_1548_4247_bae2_fe7102a2c4ff", + "R626": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6b275583_433f_46f7_aafd_ebc9409257cc", "R712": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_bb2faf17_b819_4876_b17f_fa82917cf85d", "R716": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_34cb7ea7_2436_46e0_806e_a3c7835ae228", "R721": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3279f575_1c62_4bf2_a6e8_de4c7ff36f8e", @@ -3535,6 +3539,7 @@ "ReactivePower": "https://w3id.org/emmo#EMMO_d8030875_6d89_4645_9728_bbc3b8690609", "ReactorTimeConstant": "https://w3id.org/emmo#EMMO_b03dfad7_eab8_4949_9d10_dd4fd12faaef", "Real": "https://w3id.org/emmo#EMMO_18d180e4_5e3e_42f7_820c_e08951223486", + "RealElectricImpedance": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f", "ReciprocalAmountPerVolumeUnit": "https://w3id.org/emmo#EMMO_aef218f9_6ded_4db9_9263_e78eed55e5d6", "ReciprocalCentiMetre": "https://w3id.org/emmo#ReciprocalCentiMetre", "ReciprocalCubicCentiMetre": "https://w3id.org/emmo#ReciprocalCubicCentiMetre", @@ -3637,6 +3642,7 @@ "ResponseTimeAtAnISE": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_1a104474_c326_4a29_ac26_26a05ac8f72c", "RestEnergy": "https://w3id.org/emmo#EMMO_5117c5fe_f661_46f8_83c3_b48947f1532a", "RestMass": "https://w3id.org/emmo#EMMO_3c947caf_4070_4c79_a3a3_e53274ac9944", + "Resting": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b", "RestingTime": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_2678a656_4a27_4706_8dde_b0a93e9b92fa", "ReversibleHydrogenElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0d9ba00d_04bc_4bdc_85af_3380694f6f68", "RevolutionPerMinute": "https://w3id.org/emmo#RevolutionPerMinute", @@ -3790,7 +3796,7 @@ "SiemensSquareMetrePerMole": "https://w3id.org/emmo#SiemensSquareMetrePerMole", "Sievert": "https://w3id.org/emmo#Sievert", "Sign": "https://w3id.org/emmo#EMMO_b21a56ed_f969_4612_a6ec_cb7766f7f31d", - "Signal": "https://w3id.org/emmo/domain/chameo#Signal", + "Signal": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Signal", "SignalReferencePotential": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_68059d94_4c21_4065_b329_07faeebc7e87", "Silicon": "https://w3id.org/emmo/domain/chemical-substance#substance_68c0876b_cb62_41cd_846d_95cc9d9a8733", "SiliconAtom": "https://w3id.org/emmo#EMMO_798b0c96_82ca_5ce8_8d5f_f9f72668cf5d", @@ -4318,6 +4324,7 @@ "UpQuark": "https://w3id.org/emmo#EMMO_0a3f04a6_ba3a_49d9_99da_08b0e26f51f0", "UpQuarkType": "https://w3id.org/emmo#EMMO_fc47b76f_ad01_4cd0_8fc6_55532000e7c8", "UpperCriticalMagneticFluxDensity": "https://w3id.org/emmo#EMMO_6bfe6ad2_96ba_4478_81e5_d8881c550757", + "UpperCurrentLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45", "UpperFrequencyLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_666f0b69_9c74_49a3_80b3_96a188332462", "UpperVoltageLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6dcd5baf_58cd_43f5_a692_51508e036c88", "UraniumAtom": "https://w3id.org/emmo#EMMO_b233f8c0_37d8_51ae_9264_560e6649e246", diff --git a/versions/v0.11.0-beta/electrochemicalquantities.ttl b/versions/v0.11.0-beta/electrochemicalquantities.ttl index 882a543..96cb275 100644 --- a/versions/v0.11.0-beta/electrochemicalquantities.ttl +++ b/versions/v0.11.0-beta/electrochemicalquantities.ttl @@ -24,8 +24,6 @@ emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f a owl:AnnotationProperty . emmo:EMMO_5c78b424_087b_4e31_8c91_6422f1be1e86 owl:equivalentClass :electrochemistry_9c657fdc_b9d3_4964_907c_f9a6e8c5f52b . -emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 :electrochemistry_097ea615_c209_4edd_a1a1_5eea71d98fe8 "acimp/ohms"@en . - emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry_37b24a94_cae0_4d7a_9519_9f7692dec607 ; skos:altLabel "MassDiffusivity"@en ; emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q604008"@en ; @@ -101,6 +99,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "D40ParticleSize"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 40% of the sample's particles fall."@en . +:electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626 a owl:Class ; + rdfs:label "ImaginaryElectricImpedance"@en ; + rdfs:comment "the imaginary part of the complex electric impedance"@en ; + rdfs:subClassOf emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 ; + skos:prefLabel "ImaginaryElectricImpedance"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the imaginary part of the complex electric impedance"@en . + :electrochemistry_02d2d1d1_241c_429b_b4e7_31f2c3dc4835 a owl:Class ; rdfs:label "D95ParticleSize"@en ; rdfs:comment "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 95% of the sample's particles fall."@en ; @@ -381,6 +386,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "D50ParticleSize"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 50% of the sample's particles fall."@en . +:electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45 a owl:Class ; + rdfs:label "UpperCurrentLimit"@en ; + rdfs:comment "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en ; + rdfs:subClassOf :electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 ; + skos:prefLabel "UpperCurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + :electrochemistry_3e54f9e3_a31d_4821_9bfb_ef953a42c35b a owl:Class ; rdfs:label "MaximumPulseDischargingCurrent"@en ; rdfs:comment "the maximum current approved for pulse discharge of an electrochemical device"@en ; @@ -608,6 +620,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "ChargingCurrent"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electric current applied to an electrochemical device during a charging process"@en . +:electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea a owl:Class ; + rdfs:label "LowerCurrentLimit"@en ; + rdfs:comment "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en ; + rdfs:subClassOf :electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 ; + skos:prefLabel "LowerCurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + :electrochemistry_7f073272_8925_4344_995c_a5a6dd1fcde6 a owl:Class ; rdfs:label "ChargingConstantCurrentPercentage"@en ; rdfs:comment "the percentage of the total charge capacity that is obtained during a constant current charge process"@en ; @@ -705,6 +724,20 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "DischargingSpecificCapacity"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "quotient of the capacity of a cell or battery [ or electrode or active material ] obtained during a discharge process by its mass."@en . +:electrochemistry_88dd2bce_fb17_4705_905d_892681812290 a owl:Class ; + rdfs:label "NumberOfIterations"@en ; + rdfs:comment "the number of times an iterative process should occur"@en ; + rdfs:subClassOf emmo:EMMO_ba882f34_0d71_4e4f_9d92_0c076c633a2c ; + skos:prefLabel "NumberOfIterations"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the number of times an iterative process should occur"@en . + +:electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100 a owl:Class ; + rdfs:label "NominalCapacity"@en ; + rdfs:comment "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en ; + rdfs:subClassOf :electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 ; + skos:prefLabel "NominalCapacity"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en . + :electrochemistry_8e943e12_ecc0_4093_899e_7226be6be7f2 a owl:Class ; rdfs:label "D90ParticleSize"@en ; rdfs:comment "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 90% of the sample's particles fall."@en ; @@ -820,6 +853,15 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the celsius temperature of the ambient environment"@en ; :electrochemistry_1b717a20_17e3_4480_8c60_c4ae94058f05 "Environmental_Temperature (C)"@en . +:electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f a owl:Class ; + rdfs:label "RealElectricImpedance"@en ; + rdfs:comment "the imaginary part of the complex electric impedance"@en ; + rdfs:subClassOf emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 ; + skos:altLabel "ACResistance"@en ; + skos:prefLabel "RealElectricImpedance"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q1048490"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the imaginary part of the complex electric impedance"@en . + :electrochemistry_ae108db7_8765_4329_9908_059277dee586 a owl:Class ; rdfs:label "StepCapacity"@en ; rdfs:comment "the amount of charge that has passed through an electrochemical device within the time interval of a given testing step"@en ; @@ -1084,8 +1126,8 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry ; dcterms:license "https://creativecommons.org/licenses/by/4.0/legalcode" ; owl:imports ; - owl:versionIRI ; - owl:versionInfo "0.17.0-beta" . + owl:versionIRI ; + owl:versionInfo "0.18.0-beta" . a owl:NamedIndividual, foaf:Person ; @@ -1866,6 +1908,8 @@ In either case, the magnitude of the catalytic current depends on the applied po emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electric potential of an ion-selective electrode (ISE) and activity of an analyte ion at which the potential of the ISE is independent of temperature"@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1351/goldbook.I03304"@en . +emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 :electrochemistry_097ea615_c209_4edd_a1a1_5eea71d98fe8 "acimp/ohms"@en . + emmo:EMMO_e218c625_6a39_47a9_8d08_a2ef41c152a9 rdfs:subClassOf :electrochemistry_02eb0465_4f94_453c_8c1f_5ddf80134634 ; skos:altLabel "GravimetricEnergyDensity"@en ; :electrochemistry_811aafc3_0c6d_470e_b67e_ff5c82992609 "CmpEng(mWh/g)"@en . @@ -1997,14 +2041,6 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog skos:prefLabel "TemperatureLimit"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the temperature of a system"@en . -:electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 a owl:Class ; - rdfs:label "RatedCapacity"@en ; - rdfs:comment "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en ; - rdfs:subClassOf :electrochemistry_791c1915_a791_4450_acd8_7f94764743b5 ; - skos:prefLabel "RatedCapacity"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-03-15"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en . - :electrochemistry_9ed7210c_c4fa_467b_822d_ba12f885bdf4 a owl:Class ; rdfs:label "ConcentrationOverpotential"@en ; rdfs:comment "The concentration overpotential of an electrode reaction at a given electrode current density (c.d.) is basically the difference in equilibrium potentials across the diffusion layer. More precisely, it is the potential of a reference electrode (of the same electrode reaction as the working electrode ) with the interfacial concentrations which establish themselves at c.d., relative to the potential of a similar reference electrode with the concentrations of the bulk solution. From such a measured potential difference, with c.d. flowing, one needs to subtract the ohmic potential drop prevailing between the two electrodes."@en, @@ -2110,6 +2146,14 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog skos:prefLabel "NumberOfFiniteVolumeCells"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "number of discrete finite volume cells in a grid or sub-grid"@en . +:electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 a owl:Class ; + rdfs:label "RatedCapacity"@en ; + rdfs:comment "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en ; + rdfs:subClassOf :electrochemistry_791c1915_a791_4450_acd8_7f94764743b5 ; + skos:prefLabel "RatedCapacity"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-03-15"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en . + :electrochemistry_cc519a19_b8d5_4e3f_b893_3a884888ad79 a owl:Class ; rdfs:label "MaximumTemperature"@en ; rdfs:comment "the maximum allowable temperature"@en ; @@ -2186,14 +2230,6 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa :electrochemistry_a07dd85b_d0df_4d5d_8b0c_14d20ea3fe45 "current"@en ; :electrochemistry_ea9f4dba_8ca2_419e_9cdf_ce54e9ebbd46 "Current (A)"@en . -:electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 a owl:Class ; - rdfs:label "CurrentLimit"@en ; - rdfs:comment "limit on the electric current of an electrical system"@en ; - rdfs:subClassOf emmo:EMMO_c995ae70_3b84_4ebb_bcfc_69e6a281bb88, - :electrochemistry_b395a244_3a75_4737_be38_981bfa1277fe ; - skos:prefLabel "CurrentLimit"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the electric current of an electrical system"@en . - :electrochemistry_900e357f_2ee3_425a_a0b6_322661117787 a owl:Class ; rdfs:label "ElectrochemicalProperty"@en ; rdfs:subClassOf emmo:EMMO_909415d1_7c43_4d5e_bbeb_7e1910159f66 ; @@ -2292,6 +2328,14 @@ foaf:Person a owl:Class ; emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Faradaic_current"@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://goldbook.iupac.org/terms/view/F02321"@en . +:electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 a owl:Class ; + rdfs:label "CurrentLimit"@en ; + rdfs:comment "limit on the electric current of an electrical system"@en ; + rdfs:subClassOf emmo:EMMO_c995ae70_3b84_4ebb_bcfc_69e6a281bb88, + :electrochemistry_b395a244_3a75_4737_be38_981bfa1277fe ; + skos:prefLabel "CurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the electric current of an electrical system"@en . + :electrochemistry_1cd1d777_e67b_47eb_81f1_edac35d9f2c6 a owl:Class ; rdfs:label "Overpotential"@en ; rdfs:comment "difference between the electrode potential with current flow, and the electrode potential without current flow, i.e. the equilibrium potential"@en, diff --git a/versions/v0.11.0-beta/electrochemistry-inferred.ttl b/versions/v0.11.0-beta/electrochemistry-inferred.ttl index f4fa0f9..c704a22 100644 --- a/versions/v0.11.0-beta/electrochemistry-inferred.ttl +++ b/versions/v0.11.0-beta/electrochemistry-inferred.ttl @@ -7,7 +7,7 @@ @base . rdf:type owl:Ontology ; - owl:versionIRI ; + owl:versionIRI ; ""@en , "CHAMEO is a domain ontology designed to model the common aspects across the different characterisation techniques and methodologies."@en , """Defines physical quantities in the International System of Quantities (ISQ). ISQ was made an official ISO standard in 2009 and is defined in the ISO/IEC 80000 standard. @@ -146,12 +146,12 @@ The symbolic module includes symbols, symbolic constructs and formal languages." "https://w3id.org/emmo/domain/characterisation-methodology/chameo" ; "2024-04-12" , "2024-06-23"^^xsd:date , - "2024-07-03"^^xsd:date ; + "2024-07-05"^^xsd:date ; "https://creativecommons.org/licenses/by/4.0/legalcode" , "https://creativecommons.org/licenses/by/4.0/legalcode"@en ; "2024-04-12" , "2024-06-23"^^xsd:date , - "2024-07-03"^^xsd:date ; + "2024-07-05"^^xsd:date ; "EMMC ASBL" , "EMMC ASBL"@en , """EMMC ASBL @@ -241,11 +241,11 @@ We kindly acknowledge NIST for reusing their content, including the selection of "You can contact EMMO Authors via emmo@emmc.eu"@en ; owl:backwardCompatibleWith "" , " " , - "0.16.0-beta" ; - owl:priorVersion "0.16.0-beta" , + "0.17.0-beta" ; + owl:priorVersion "0.17.0-beta" , "0.5.0-beta" , "1.0.0-beta2" ; - owl:versionInfo "0.17.0-beta" , + owl:versionInfo "0.18.0-beta" , "0.6.0-beta" , "1.0.0-beta3" , "1.0.0-beta7" ; @@ -2333,7 +2333,7 @@ While the EMMO FOL introduces the quantum causality relation C(x,y) as primitive rdf:type owl:ObjectProperty ; rdfs:subPropertyOf ; rdfs:domain ; - rdfs:range ; + rdfs:range ; "hasSolvent"@en . @@ -2364,7 +2364,7 @@ While the EMMO FOL introduces the quantum causality relation C(x,y) as primitive rdf:type owl:ObjectProperty ; rdfs:subPropertyOf ; rdfs:domain ; - rdfs:range ; + rdfs:range ; "hasSolute"@en . @@ -34532,7 +34532,7 @@ Wikipedia"""@en ; , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "ZincElectrode"@en ; "an electrode in which the main active material is zinc metal"@en ; @@ -34555,7 +34555,7 @@ Wikipedia"""@en ; rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "LithiumElectrode"@en ; "an electrode in which the active material is lithium metal" . @@ -44391,164 +44391,11 @@ Wear is defined as the progressive removal of the material from a solid surface "InChI=1S/Pb" . -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0139937b_2724_4864_84fb_f14bcfb83538 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0bdf0bb9_41fc_455d_af11_a249e24acdf6 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0f2f65a7_5cc4_4c86_a4d0_676771c646f1 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_250fa43e_1f26_4ed8_b787_91a2325a8e7b - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_25f6ff4c_53ad_4837_97c4_aa6f06099bb5 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_2a540939_3908_4f85_92f9_c46da7d4e9cb - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_2a87ca10_fc6a_4d61_b48c_d9790a566ee3 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_3899a9c9_9b34_443e_8ce6_0257589bb38a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_3ac62305_acd6_4312_9e31_4f824bd2530d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_4126ee09_b9c6_4694_bf33_0d8970e05f72 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_4c62d334_a124_40b3_9fd1_fe713d01a6af - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_5088ad54_b37d_4ee1_a086_d6c17e644f9a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_5cee19d2_f916_4264_a8ed_efed13a808d2 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_68c0876b_cb62_41cd_846d_95cc9d9a8733 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_68f9b85e_340f_46ec_96da_ebb6bd62f5fd - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_73d4606c_7460_4a5c_9413_793bdf35753e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_7dc738d6_74f2_489e_ae84_a6dbdf627f2e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_848003a2_71ee_4967_8039_354c907ec7f4 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_97439fbb_155f_433d_9edd_d510cd491f24 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_9bd78e1c_a4dc_41b6_8013_adb51df1ffdc - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_9da78aea_d436_40e2_a68f_c3dee32b825e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_aa8e9cc4_5f66_4307_b1c8_26fac7653a90 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_acdb232f_8041_4e11_8a11_5db2d2baae4d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_b01771a9_218a_4b01_b20f_4021cfa0b7d5 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_b3815a7f_f64a_48f6_b0ce_d0032578c699 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c109ca45_08c7_4436_a818_a9c575785e2f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c28a0967_ed23_48cc_a14e_a651d75a19db - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c5582dae_ccff_4fbe_adaa_078091054640 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c728b6b9_449a_45ff_b5ae_6b7968708f0d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_cd17ca33_ae3d_4738_8930_547673bf6c1f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_cdd18f0c_e7b3_4d09_b3dd_c09fe4b1adba - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_d53259a7_0d9c_48b9_a6c1_4418169df303 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_d673ceb2_3045_4e2e_8cad_56f5169b542f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_db74b6b7_09fc_40db_a7d5_6eb86b69192a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_dc5fb846_1824_40f8_9834_81f118aa1c2d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_dcdbdbed_2e20_40d1_a7a5_5761de7f0618 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_e1e6ff98_0725_4d27_ab21_2ca5a95371f0 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_e8fafdc8_6cd3_4dd0_9630_10ca8e3f1827 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_f3e7979a_e3ef_450a_8762_7d8778afe478 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_f7525766_90cf_43e9_8932_7cb3b14f676f - rdf:type owl:Class . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626 + rdf:type owl:Class ; + rdfs:subClassOf ; + "ImaginaryElectricImpedance"@en ; + "the imaginary part of the complex electric impedance"@en . ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_01260656_ac32_472e_9513_a607366538ec @@ -44872,11 +44719,11 @@ Wear is defined as the progressive removal of the material from a solid surface rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCLCOElectrode"@en ; @@ -45639,7 +45486,7 @@ and t* through mathematical models, provided that the long-time potential- deter , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LFPElectrode"@en ; @@ -46241,7 +46088,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "PtElectrode"@en ; "PlatinumElectrode"@en ; @@ -46343,7 +46190,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SiliconOxideGraphiteElectrode"@en ; @@ -46477,7 +46324,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "FTOElectrode"@en ; @@ -46500,7 +46347,7 @@ Aluminum foil"""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "NiOOHElectrode"@en , "NickelOxyhydroxideElectrode"@en ; @@ -46544,6 +46391,14 @@ Aluminum foil"""@en . "a coin case with a nominal diameter of 7.9 mm and a height of 1.65 mm"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b + rdf:type owl:Class ; + rdfs:subClassOf , + ; + "Resting"@en ; + "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 rdf:type owl:Class ; rdfs:subClassOf ; @@ -46811,6 +46666,13 @@ Aluminum foil"""@en . "A material relation in electrochemistry."@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45 + rdf:type owl:Class ; + rdfs:subClassOf ; + "UpperCurrentLimit"@en ; + "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3e54f9e3_a31d_4821_9bfb_ef953a42c35b rdf:type owl:Class ; rdfs:subClassOf , @@ -46981,7 +46843,7 @@ Aluminum foil"""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNMOElectrode"@en ; @@ -47201,11 +47063,11 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCLMOElectrode"@en ; @@ -47294,7 +47156,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumNickelPhosphateElectrode"@en ; @@ -47549,7 +47411,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumIronPhosphateElectrode"@en ; @@ -47904,7 +47766,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "CarbonMonofluorideElectrode"@en ; "electrode in which the active material is carbon monofluoride"@en ; @@ -48131,7 +47993,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "HardCarbonElectrode"@en ; "electrode in which the active material is hard carbon"@en . @@ -48291,7 +48153,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "SAE"@en ; "SolidAmalgamElectrode"@en ; @@ -48426,7 +48288,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LTOElectrode"@en ; @@ -48518,20 +48380,13 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ] . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "system that consists of at least two electron conductors (electrodes) in contact with ionic conductors (electrolytes)"@en ; - "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6fec8cc1_4e6c_428e_8343_6cf3c286a185 rdf:type owl:Class ; rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "AuElectrode"@en ; "GoldElectrode"@en ; @@ -48691,7 +48546,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NiOElectrode"@en ; @@ -48721,7 +48576,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "TiO2Electrode"@en ; @@ -48915,13 +48770,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ] . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "in secondary cells, the active material is restored to its original state during charge"@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - [ rdf:type owl:Axiom ; owl:annotatedSource ; owl:annotatedProperty ; @@ -48965,6 +48813,13 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s "an electrode in which the primary active material consists of caesium or caesium compounds"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea + rdf:type owl:Class ; + rdfs:subClassOf ; + "LowerCurrentLimit"@en ; + "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7f073272_8925_4344_995c_a5a6dd1fcde6 rdf:type owl:Class ; rdfs:subClassOf ; @@ -49118,7 +48973,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "LiquidGalliumElectrode"@en ; "a liquid electrode with an active material of gallium"@en . @@ -49188,7 +49043,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "ZnOElectrode"@en ; @@ -49446,6 +49301,13 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "an electrode in which the primary active material consists of sulfur or sulfur compounds"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_88dd2bce_fb17_4705_905d_892681812290 + rdf:type owl:Class ; + rdfs:subClassOf ; + "NumberOfIterations"@en ; + "the number of times an iterative process should occur"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8968eb7a_9a65_4286_a596_c31b998df329 rdf:type owl:Class ; rdfs:subClassOf ; @@ -49504,6 +49366,13 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "substance that increases chemical reaction speed, and which is conserved after the reaction"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100 + rdf:type owl:Class ; + rdfs:subClassOf ; + "NominalCapacity"@en ; + "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8b40856f_1ca2_4137_9616_7fb624671909 rdf:type owl:Class ; rdfs:subClassOf , @@ -50109,7 +49978,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumCobaltPhosphateElectrode"@en ; @@ -50298,13 +50167,6 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; "plate in which the active material is applied as a paste to a conductive current collector"@en . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "plate in which the active material is applied as a paste to a conductive current collector"@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a24f8581_a5a4_41a4_bb45_d0fdd5c0d810 rdf:type owl:Class ; @@ -50397,7 +50259,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "SilverOxideElectrode"@en ; "an electrode in which the primary active material consists of manganese dioxide or vmanganese dioxide compounds"@en ; @@ -50427,7 +50289,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "AgElectrode"@en ; "SilverElectrode"@en ; @@ -50662,7 +50524,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "CupricOxideElectrode"@en ; "CopperOxideElectrode"@en ; @@ -50751,6 +50613,15 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "Environmental_Temperature (C)"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f + rdf:type owl:Class ; + rdfs:subClassOf ; + "ACResistance"@en ; + "RealElectricImpedance"@en ; + "https://www.wikidata.org/wiki/Q1048490"@en ; + "the imaginary part of the complex electric impedance"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abfadc99_6e43_4d37_9b04_7fc5b0f327ae rdf:type owl:Class ; rdfs:subClassOf , @@ -50782,7 +50653,8 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e rdf:type owl:Class ; rdfs:subClassOf ; - "CCCVCycling"@en ; + "CCCVCycling"@en ; + "ConstantCurrentConstantVoltageCycling"@en ; "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en . @@ -51030,7 +50902,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCElectrode"@en ; @@ -51360,11 +51232,11 @@ of other configurations are used."""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNMOLFPElectrode"@en ; @@ -51466,13 +51338,6 @@ of other configurations are used."""@en . "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; "https://en.wikipedia.org/wiki/Fuel_cell"@en . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_bea04148_10d9_4eda_9cd5_8f609d7e9ff8 rdf:type owl:Class ; @@ -51568,7 +51433,7 @@ of other configurations are used."""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LMOElectrode"@en ; @@ -51751,11 +51616,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "ITO"@en ; @@ -51809,7 +51674,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "GraphiteElectrode"@en ; "electrode in which the active material is graphite"@en . @@ -51928,7 +51793,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "MnO2Electrode"@en ; "ManganeseDioxideElectrode"@en ; @@ -51943,7 +51808,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNOElectrode"@en ; @@ -51963,7 +51828,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "IrO2Electrode"@en ; @@ -51977,7 +51842,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumManganesePhosphateElectrode"@en ; @@ -52146,7 +52011,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "IronDisulfideElectrode"@en ; "an electrode in which the primary active material consists of iron disulfide or iron disulfide compounds."@en ; @@ -52509,7 +52374,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "HgElectrode"@en ; "MercuryElectrode"@en ; @@ -52785,11 +52650,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SiliconGraphiteElectrode"@en ; @@ -52802,7 +52667,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumManganeseOxideElectrode"@en ; @@ -53004,7 +52869,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumCobaltOxideElectrode"@en ; @@ -53096,7 +52961,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NCAElectrode"@en ; @@ -53315,7 +53180,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "PbOElectrode"@en ; @@ -53401,7 +53266,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumChromiumOxideElectrode"@en ; @@ -53621,7 +53486,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LCOElectrode"@en ; @@ -53672,11 +53537,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LMOLFPElectrode"@en ; @@ -53808,10 +53673,10 @@ In either case, the magnitude of the catalytic current depends on the applied po "The universe is considered as a causally self-connected object, encompassing all other objects. For this reason is unique."@en . -[ owl:qualifiedCardinality "3"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "3"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "4"^^xsd:nonNegativeInteger @@ -53835,10 +53700,10 @@ In either case, the magnitude of the catalytic current depends on the applied po [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:minQualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:minQualifiedCardinality "2"^^xsd:nonNegativeInteger +[ owl:minQualifiedCardinality "1"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger @@ -53850,7 +53715,7 @@ In either case, the magnitude of the catalytic current depends on the applied po [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:minQualifiedCardinality "2"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger diff --git a/versions/v0.11.0-beta/electrochemistry.ttl b/versions/v0.11.0-beta/electrochemistry.ttl index baa1206..d442e3c 100644 --- a/versions/v0.11.0-beta/electrochemistry.ttl +++ b/versions/v0.11.0-beta/electrochemistry.ttl @@ -1,6 +1,6 @@ @prefix : . @prefix bibo: . -@prefix chemsub: . +@prefix chemsub: . @prefix dcterms: . @prefix emmo: . @prefix foaf: . @@ -54,9 +54,9 @@ schema:name a owl:AnnotationProperty . dcterms:created "2022-11-25"^^xsd:date ; dcterms:creator , ; - dcterms:issued "2024-07-03"^^xsd:date ; + dcterms:issued "2024-07-05"^^xsd:date ; dcterms:license "https://creativecommons.org/licenses/by/4.0/legalcode" ; - dcterms:modified "2024-07-03"^^xsd:date ; + dcterms:modified "2024-07-05"^^xsd:date ; dcterms:publisher "EMMO" ; dcterms:source , , @@ -67,13 +67,13 @@ schema:name a owl:AnnotationProperty . bibo:status "unstable" ; vann:preferredNamespacePrefix "echem" ; vann:preferredNamespaceUri "https://w3id.org/emmo/domain/electrochemistry" ; - owl:backwardCompatibleWith "0.16.0-beta" ; + owl:backwardCompatibleWith "0.17.0-beta" ; owl:imports , , - ; - owl:priorVersion "0.16.0-beta" ; - owl:versionIRI ; - owl:versionInfo "0.17.0-beta" ; + ; + owl:priorVersion "0.17.0-beta" ; + owl:versionIRI ; + owl:versionInfo "0.18.0-beta" ; foaf:logo "https://raw.githubusercontent.com/emmo-repo/domain-electrochemistry/gh-pages/assets/img/fig/png/domain-electrochemistry-logo.png" . :electrochemistry_027d437e_3bbf_4eda_940b_e509f8d2b993 a owl:Class ; @@ -535,6 +535,14 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "R716" ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a coin case with a nominal diameter of 7.9 mm and a height of 1.65 mm"@en . +:electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b a owl:Class ; + rdfs:label "Resting"@en ; + rdfs:comment "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en ; + rdfs:subClassOf , + :electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 ; + skos:prefLabel "Resting"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en . + :electrochemistry_36444184_1100_4271_869f_7f2d983aaecb a owl:Class ; rdfs:label "P45173115" ; rdfs:comment "a prismatic case with a nominal length of 45 mm, width of 173 mm, and height of 115 mm"@en ; @@ -1564,6 +1572,15 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "TinBasedElectrode"@en ; emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "an electrode in which the primary active material consists of tin or tin compounds"@en . +:electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c a owl:Class ; + rdfs:label "PastedPlate"@en ; + rdfs:comment "plate in which the active material is applied as a paste to a conductive current collector"@en ; + rdfs:subClassOf :electrochemistry_92147e31_d015_4889_a092_04fbab033f15 ; + skos:altLabel "PastedElectrode"@en ; + skos:prefLabel "PastedPlate"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "plate in which the active material is applied as a paste to a conductive current collector"@en . + :electrochemistry_a277e420_2483_44d5_a2bc_4e421dea231a a owl:Class ; rdfs:label "R926" ; rdfs:comment "a coin case with a nominal diameter of 9.5 mm and a height of 2.6 mm"@en ; @@ -1658,10 +1675,11 @@ schema:name a owl:AnnotationProperty . emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a coin case with a nominal diameter of 11.6 mm and a height of 4.2 mm"@en . :electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e a owl:Class ; - rdfs:label "CCCVCycling"@en ; + rdfs:label "ConstantCurrentConstantVoltageCycling"@en ; rdfs:comment "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en ; rdfs:subClassOf :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; - skos:prefLabel "CCCVCycling"@en ; + skos:altLabel "CCCVCycling"@en ; + skos:prefLabel "ConstantCurrentConstantVoltageCycling"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en . :electrochemistry_ad9cdad6_66e8_471e_a7c6_b79f37c20814 a owl:Class ; @@ -1783,6 +1801,17 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "P20100141" ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a prismatic case with a nominal length of 20 mm, width of 100 mm, and height of 141 mm"@en . +:electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d a owl:Class ; + rdfs:label "FuelCell"@en ; + rdfs:comment "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; + rdfs:subClassOf :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; + skos:prefLabel "FuelCell"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q180253"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-05"@en ; + emmo:EMMO_6dd685dd_1895_46e4_b227_be9f7d643c25 "https://dbpedia.org/page/Fuel_cell"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; + emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Fuel_cell"@en . + :electrochemistry_bea04148_10d9_4eda_9cd5_8f609d7e9ff8 a owl:Class ; rdfs:label "CelsiusTemperatureMeasurement"@en ; rdfs:comment "measurement of temperature"@en ; @@ -3335,15 +3364,6 @@ schema:name a owl:AnnotationProperty . "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-26"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "interface between an electrolyte and an electrode where an electrode reaction takes place."@en . -:electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c a owl:Class ; - rdfs:label "PastedPlate"@en ; - rdfs:comment "plate in which the active material is applied as a paste to a conductive current collector"@en ; - rdfs:subClassOf :electrochemistry_92147e31_d015_4889_a092_04fbab033f15 ; - skos:altLabel "PastedElectrode"@en ; - skos:prefLabel "PastedPlate"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "plate in which the active material is applied as a paste to a conductive current collector"@en . - :electrochemistry_a462859d_d8bd_48ea_8bde_1576f1248a1e a owl:Class ; rdfs:label "SilverElectrode"@en ; rdfs:comment "electrode in the form of foil, mesh, wire, rod, tube, powder, pellets, or single crystal of silver"@en ; @@ -3459,17 +3479,6 @@ of other configurations are used."""@en . emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-19"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "part which insures insulation between the plate (electrode) edges and adjacent plates (electrodes) and the container side walls"@en . -:electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d a owl:Class ; - rdfs:label "FuelCell"@en ; - rdfs:comment "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - rdfs:subClassOf :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; - skos:prefLabel "FuelCell"@en ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q180253"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-05"@en ; - emmo:EMMO_6dd685dd_1895_46e4_b227_be9f7d643c25 "https://dbpedia.org/page/Fuel_cell"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Fuel_cell"@en . - :electrochemistry_bed5b5f9_b89d_45e3_a8c2_81b70ae21847 a owl:Class ; rdfs:label "SeriesParallelConnection"@en ; rdfs:comment "arrangement of cells or batteries wherein in series connected cells or batteries are connected in parallel."@en ; @@ -4518,15 +4527,20 @@ schema:Person a owl:Class ; skos:prefLabel "BimetallicOxideElectrode"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "an electrode consisting of two metal oxide active materials"@en . -:electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 a owl:Class ; - rdfs:label "GalvanostaticProcess"@en ; - rdfs:comment "a process in which the electric current is kept constant"@en ; - rdfs:subClassOf [ a owl:Restriction ; - owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; - owl:someValuesFrom :electrochemistry_22725105_c941_4b14_a4a2_fcb627958607 ], - :electrochemistry_5548f188_df00_4c05_ae98_7846e92efe36 ; - skos:prefLabel "GalvanostaticProcess"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a process in which the electric current is kept constant"@en . +:electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 a owl:Class ; + rdfs:label "ActiveMaterial"@en ; + rdfs:comment "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; + rdfs:subClassOf :electrochemistry_b5ea31c9_bb10_4276_980e_c3eceb1efc82, + :electrochemistry_ebdb68e9_c4b5_4d57_a042_c0f51d446755 ; + skos:altLabel "ActiveElectrochemicalMaterial"@en, + "ElectrochemicallyActiveMaterial"@en ; + skos:prefLabel "ActiveMaterial"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q120907375" ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-33", + "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-14"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; + emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "material which reacts chemically to produce electric energy when the cell discharges", + "in secondary cells, the active material is restored to its original state during charge"@en . :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 a owl:Class ; rdfs:label "PotentiometricStrippingAnalysis"@en ; @@ -4601,20 +4615,15 @@ schema:Person a owl:Class ; "The electrode (or interfacial) reaction involves all the processes (chemical reaction, structural reorganization, adsorption) accompanying the charge transfer step."@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1351/goldbook.E01960"@en . -:electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 a owl:Class ; - rdfs:label "ActiveMaterial"@en ; - rdfs:comment "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; - rdfs:subClassOf :electrochemistry_b5ea31c9_bb10_4276_980e_c3eceb1efc82, - :electrochemistry_ebdb68e9_c4b5_4d57_a042_c0f51d446755 ; - skos:altLabel "ActiveElectrochemicalMaterial"@en, - "ElectrochemicallyActiveMaterial"@en ; - skos:prefLabel "ActiveMaterial"@en ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q120907375" ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-33", - "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-14"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "material which reacts chemically to produce electric energy when the cell discharges", - "in secondary cells, the active material is restored to its original state during charge"@en . +:electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 a owl:Class ; + rdfs:label "GalvanostaticProcess"@en ; + rdfs:comment "a process in which the electric current is kept constant"@en ; + rdfs:subClassOf [ a owl:Restriction ; + owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; + owl:someValuesFrom :electrochemistry_22725105_c941_4b14_a4a2_fcb627958607 ], + :electrochemistry_5548f188_df00_4c05_ae98_7846e92efe36 ; + skos:prefLabel "GalvanostaticProcess"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a process in which the electric current is kept constant"@en . :electrochemistry_8a1c9a7b_978c_4421_a9c1_d0b07b42aab9 a owl:Class ; rdfs:label "ChemicalReaction"@en ; @@ -4953,9 +4962,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "extremely resistant to many chemicals, impermeable to gases and liquids, and has good electrical conductivity, high hardness and strength, and biocompatibility"@en . + owl:annotatedTarget "electrode made of glassy carbon material with an intertwined graphitic ribbon structure, formed by pyrolysis of a resol precursor at temperatures up to 3000 °C"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -4976,28 +4985,22 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "A disc electrode that is embedded in the centre of a cylinder which rotates in solution around the longitudinal cylinder axis."@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "composite system in which the supplied electric energy mainly produces chemical reactions or, conversely, in which the energy released by chemical reactions is mainly delivered by the system as electric energy"@en . + owl:annotatedTarget "a system containing two electrodes that allow transport of electrons, separated by an electrolyte that allows movement of ions but blocks movement of electrons."@en . [] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "system that consists of at least two electron conductors (electrodes) in contact with ionic conductors (electrolytes)"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" . + owl:annotatedTarget "composite system in which the supplied electric energy mainly produces chemical reactions or, conversely, in which the energy released by chemical reactions is mainly delivered by the system as electric energy"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "glassy carbon combines glass-like mechanical characteristics with physical properties similar to graphite, owing to its “graphene ribbon” structure"@en . - -[] a owl:Axiom ; - dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "a system containing two electrodes that allow transport of electrons, separated by an electrolyte that allows movement of ions but blocks movement of electrons."@en . + owl:annotatedTarget "extremely resistant to many chemicals, impermeable to gases and liquids, and has good electrical conductivity, high hardness and strength, and biocompatibility"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5033,13 +5036,13 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "one of the most frequently used working electrodes"@en . + owl:annotatedTarget "glassy carbon combines glass-like mechanical characteristics with physical properties similar to graphite, owing to its “graphene ribbon” structure"@en . [] a owl:Axiom ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; - owl:annotatedTarget "in secondary cells, the active material is restored to its original state during charge"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedTarget "material that is oxidized or reduced at an electrode in an electrochemical cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5047,12 +5050,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; owl:annotatedTarget "material which reacts chemically to produce electric energy when the cell discharges" . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; - owl:annotatedTarget "material that is oxidized or reduced at an electrode in an electrochemical cell"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5061,9 +5058,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "electrode made of glassy carbon material with an intertwined graphitic ribbon structure, formed by pyrolysis of a resol precursor at temperatures up to 3000 °C"@en . + owl:annotatedTarget "one of the most frequently used working electrodes"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5083,18 +5080,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_83f2b1e9_cb67_4dbf_977f_ba54bbae374f ; owl:annotatedTarget "charge during which the electric current is maintained at a constant value regardless of the battery voltage or temperature"@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; - owl:annotatedTarget "Electrolyte solution in the anodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the anode is placed."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; owl:annotatedTarget "electrolyte on the anode side of an electrochemical cell that is divided into compartments"@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; + owl:annotatedTarget "Electrolyte solution in the anodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the anode is placed."@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5133,15 +5130,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_8d3bf304_78e4_4e99_abe1_6ab429e44ed1 ; - owl:annotatedTarget "a sealed cell may be equipped with a safety device to prevent a dangerously high internal pressure and is designed to operate during its life in its original sealed state"@en . + owl:annotatedTarget "cell which remains closed and does not release either gas or liquid when operated within the limits specified by the manufacturer"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_8d3bf304_78e4_4e99_abe1_6ab429e44ed1 ; - owl:annotatedTarget "cell which remains closed and does not release either gas or liquid when operated within the limits specified by the manufacturer"@en . + owl:annotatedTarget "a sealed cell may be equipped with a safety device to prevent a dangerously high internal pressure and is designed to operate during its life in its original sealed state"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5150,10 +5147,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "capacitor consisting of a metallic plate as first conductor, a very thin oxide film formed on the metal as the dielectric and an electrolyte as second conductor"@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_06d8e1ee_924a_4915_998d_33a69f41dadc ; - owl:annotatedTarget "operation during which an electrochemical cell supplies electric energy as the result of chemical changes within the cell"@en . + owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; + owl:annotatedTarget "two-step electrochemical measurement in which 1) material is accumulated at an electrode and 2) the material is removed by chemical reaction or electrochemically at constant current with measurement of electrode potential"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5161,6 +5158,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; owl:annotatedTarget "historically for the analysis of metal ions, mercury ions were added to the test solution to form a mercury amalgam when reduced. Alternatively, an HMDE or MFE was used and the oxidizing agent added after amalgam formation. However, the toxicity of mercury and its compounds have all but precluded the present-day use of mercury"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_06d8e1ee_924a_4915_998d_33a69f41dadc ; + owl:annotatedTarget "operation during which an electrochemical cell supplies electric energy as the result of chemical changes within the cell"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5179,12 +5182,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; owl:annotatedTarget "the time between changes in potential in step 2 is related to the concentration of analyte in the solution"@en . -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; - owl:annotatedTarget "two-step electrochemical measurement in which 1) material is accumulated at an electrode and 2) the material is removed by chemical reaction or electrochemically at constant current with measurement of electrode potential"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5211,15 +5208,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_9ee6e728_e8f5_4b36_a045_d63da69dfc85 ; - owl:annotatedTarget "overcharge is also the act of charging beyond a certain limit specified by the manufacturer"@en . + owl:annotatedTarget "continued charging of a fully charged secondary cell or battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_9ee6e728_e8f5_4b36_a045_d63da69dfc85 ; - owl:annotatedTarget "continued charging of a fully charged secondary cell or battery"@en . + owl:annotatedTarget "overcharge is also the act of charging beyond a certain limit specified by the manufacturer"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5227,6 +5224,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_9f466223_e20a_474d_ac4d_6d4b6131c275 ; owl:annotatedTarget "an electrode that holds its potential essentially constant by efficiently allowing electric current to pass"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_a0580fa9_5073_44af_b33e_7adbc83892d0 ; + owl:annotatedTarget "electrode reaction in which oxidation occurs at the anode"@en . + [] a owl:Axiom ; dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5242,14 +5245,14 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0580fa9_5073_44af_b33e_7adbc83892d0 ; - owl:annotatedTarget "electrode reaction in which oxidation occurs at the anode"@en . + owl:annotatedSource :electrochemistry_a0a619d7_da95_41f0_8bc3_9c19d636d543 ; + owl:annotatedTarget "electrode that serves only as a source or sink for electrons without playing a chemical role in the electrode reaction"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0a619d7_da95_41f0_8bc3_9c19d636d543 ; - owl:annotatedTarget "electrode that serves only as a source or sink for electrons without playing a chemical role in the electrode reaction"@en . + owl:annotatedSource :electrochemistry_a0fcb105_587f_45d8_a89a_46dc8f745069 ; + owl:annotatedTarget "partial or complete external covering of a cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5260,14 +5263,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0fcb105_587f_45d8_a89a_46dc8f745069 ; - owl:annotatedTarget "partial or complete external covering of a cell"@en . - -[] a owl:Axiom ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c ; - owl:annotatedTarget "plate in which the active material is applied as a paste to a conductive current collector"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedSource :electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e ; + owl:annotatedTarget "process inside an electrolytic cell used to coat a conductive object with a layer of a material"@en . [] a owl:Axiom ; dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; @@ -5278,8 +5275,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e ; - owl:annotatedTarget "process inside an electrolytic cell used to coat a conductive object with a layer of a material"@en . + owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; + owl:annotatedTarget "component of a cell which permits the flow of gas in one direction only"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5287,12 +5284,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; owl:annotatedTarget "a valve has a characteristic venting or opening and closing pressure"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; - owl:annotatedTarget "component of a cell which permits the flow of gas in one direction only"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5305,6 +5296,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a462859d_d8bd_48ea_8bde_1576f1248a1e ; owl:annotatedTarget "electrode in the form of foil, mesh, wire, rod, tube, powder, pellets, or single crystal of silver"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; + owl:annotatedTarget "a chemical reaction in an electrolyte involving a transfer of electrons between chemical components or between chemical components and an electrode"@en . + [] a owl:Axiom ; dcterms:source "Bockris, J. O'M. and Despić, . Aleksandar R. (2011, December 15). Electrochemical reaction. Encyclopedia Britannica. https://www.britannica.com/science/electrochemical-reaction" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5317,12 +5314,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; owl:annotatedTarget "the electrode reaction can also involve other chemical reactions including subreactions on a cell electrode"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; - owl:annotatedTarget "a chemical reaction in an electrolyte involving a transfer of electrons between chemical components or between chemical components and an electrode"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5355,15 +5346,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_ae56cce3_7a7c_4e53_bb58_31e0d642d47e ; - owl:annotatedTarget "this flame front may originate from a spark or an external naked flame igniting combustible electrolysis gas"@en . + owl:annotatedTarget "vent of special design which provides protection against the propagation of a flame front from or into the interior of a secondary cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_ae56cce3_7a7c_4e53_bb58_31e0d642d47e ; - owl:annotatedTarget "vent of special design which provides protection against the propagation of a flame front from or into the interior of a secondary cell"@en . + owl:annotatedTarget "this flame front may originate from a spark or an external naked flame igniting combustible electrolysis gas"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5395,6 +5386,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_b525a629_a679_464f_bc5b_b49d2fc82686 ; owl:annotatedTarget "an electrochemical cell for conductivity measurements"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; + owl:annotatedTarget "by convention, cell electrode at which an oxidation reaction occurs"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5419,12 +5416,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; owl:annotatedTarget "the concepts of “anode” and “cathode” are related only to the direction of electron flow, not to the polarity of the electrodes"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; - owl:annotatedTarget "by convention, cell electrode at which an oxidation reaction occurs"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5433,15 +5424,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_b79d4f9e_5727_4895_8d7f_5fc18d83eb90 ; - owl:annotatedTarget "in a galvanic cell, parasitic reactions may cause inefficiencies or loss of performance"@en . + owl:annotatedTarget "an unwanted side reaction"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_b79d4f9e_5727_4895_8d7f_5fc18d83eb90 ; - owl:annotatedTarget "an unwanted side reaction"@en . + owl:annotatedTarget "in a galvanic cell, parasitic reactions may cause inefficiencies or loss of performance"@en . [] a owl:Axiom ; dcterms:source "IEEE Standard Glossary of Stationary Battery Terminology (2016), https://doi.org/10.1109/IEEESTD.2016.7552407" ; @@ -5481,12 +5472,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_bbae1ef4_0a95_4e7d_9932_1bf939129eef ; owl:annotatedTarget "current-potential curve in a voltammetry experiment"@en . -[] a owl:Axiom ; - dcterms:source "https://en.wikipedia.org/wiki/Square_wave" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0e33278b_639f_412d_9abd_64c3790026ef ; - owl:annotatedTarget "Periodic potential where the amplitude alternates at a steady frequency between fixed minimum and maximum values, with the same duration at minimum and maximum."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5500,10 +5485,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "part which insures insulation between the plate (electrode) edges and adjacent plates (electrodes) and the container side walls"@en . [] a owl:Axiom ; + dcterms:source "https://en.wikipedia.org/wiki/Square_wave" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d ; - owl:annotatedTarget "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedSource :electrochemistry_0e33278b_639f_412d_9abd_64c3790026ef ; + owl:annotatedTarget "Periodic potential where the amplitude alternates at a steady frequency between fixed minimum and maximum values, with the same duration at minimum and maximum."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5535,12 +5520,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_c3f4b34a_0e2c_46f3_baab_4ebd2682d26f ; owl:annotatedTarget "An ionic liquid is an electrolyte composed of a salt that is liquid below 100 °C. Ionic liquids have found uses in electrochemical analysis, because their unconventional properties include a negligible vapor pressure, a high thermal and electrochemical stability, and exceptional dissolution properties for both organic and inorganic chemical species."@en . -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; - owl:annotatedTarget "Electron conductor in an electrochemical cell connected to the external circuit."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5553,6 +5532,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_c55ec02c_b727_4df1_97ce_91d7bb5d5e91 ; owl:annotatedTarget "unplanned escape of electrolyte, gas or other material from a cell or battery"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_c610d869_cc03_44f0_b40d_ca86e945b9c9 ; + owl:annotatedTarget "cell from which electrolyte cannot escape regardless of its orientation"@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5562,8 +5547,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_c610d869_cc03_44f0_b40d_ca86e945b9c9 ; - owl:annotatedTarget "cell from which electrolyte cannot escape regardless of its orientation"@en . + owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; + owl:annotatedTarget "electronically conductive part in electric contact with a medium of lower electronic conductivity and intended to perform one or more of the functions of emitting charge carriers to or receiving charge carriers from that medium or to establish an electric field in that medium"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5579,21 +5564,21 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; - owl:annotatedTarget "by convention, an oxidation reaction occurs during discharge"@en . + owl:annotatedTarget "for a device having two electrodes, that electrode having the lower electric potential"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; - owl:annotatedTarget "electronically conductive part in electric contact with a medium of lower electronic conductivity and intended to perform one or more of the functions of emitting charge carriers to or receiving charge carriers from that medium or to establish an electric field in that medium"@en . + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; + owl:annotatedTarget "by convention, an oxidation reaction occurs during discharge"@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; - owl:annotatedTarget "for a device having two electrodes, that electrode having the lower electric potential"@en . + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; + owl:annotatedTarget "Electron conductor in an electrochemical cell connected to the external circuit."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5604,8 +5589,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0f827b54_370d_4c63_99a6_80f13b24e55e ; - owl:annotatedTarget "evolution of gas resulting from electrolysis of the water in the electrolyte of a cell"@en . + owl:annotatedSource :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; + owl:annotatedTarget "set of operations that is carried out on a secondary cell or battery and is repeated regularly in the same sequence."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5622,14 +5607,14 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; - owl:annotatedTarget "set of operations that is carried out on a secondary cell or battery and is repeated regularly in the same sequence."@en . + owl:annotatedSource :electrochemistry_d5da9948_e95b_4f12_a2d2_10a48f390c52 ; + owl:annotatedTarget "arrangement of cells or batteries wherein parallel connected cells or batteries are connected in series."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_d5da9948_e95b_4f12_a2d2_10a48f390c52 ; - owl:annotatedTarget "arrangement of cells or batteries wherein parallel connected cells or batteries are connected in series."@en . + owl:annotatedSource :electrochemistry_0f827b54_370d_4c63_99a6_80f13b24e55e ; + owl:annotatedTarget "evolution of gas resulting from electrolysis of the water in the electrolyte of a cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5655,18 +5640,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_df78745e_f9db_4830_88f0_8ce074fcb8ff ; owl:annotatedTarget "liquid metal electrode used in polarography"@en . +[] a owl:Axiom ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; + owl:annotatedTarget "electrochemical cell in which chemical reactions occur spontaneously and chemical energy is converted into electrical energy."@en . + [] a owl:Axiom ; dcterms:references "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; owl:annotatedTarget "An electrochemical cell that spontaneously produces work."@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_113e0469_8ae0_407f_892d_4b988f8d8a08 ; - owl:annotatedTarget "electrochemical cell that has two half-cells separated by a wall permeable to ions, both containing the same electrolyte differing only in their temperatures."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5674,16 +5659,22 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "Electrochemical cell intended to produce electric energy."@en . [] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; - owl:annotatedTarget "electrochemical cell in which chemical reactions occur spontaneously and chemical energy is converted into electrical energy."@en . + owl:annotatedSource :electrochemistry_e2a1dae1_05e4_4bd1_a39d_0eb10db482bc ; + owl:annotatedTarget "method of separating and neutralizing ions by an electric current in an electrolytic cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e2a1dae1_05e4_4bd1_a39d_0eb10db482bc ; - owl:annotatedTarget "method of separating and neutralizing ions by an electric current in an electrolytic cell"@en . + owl:annotatedSource :electrochemistry_113e0469_8ae0_407f_892d_4b988f8d8a08 ; + owl:annotatedTarget "electrochemical cell that has two half-cells separated by a wall permeable to ions, both containing the same electrolyte differing only in their temperatures."@en . + +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; + owl:annotatedTarget "electrochemical cell intended to produce chemical reactions"@en . [] a owl:Axiom ; dcterms:references "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; @@ -5697,18 +5688,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; owl:annotatedTarget "Electrochemical cell in which electrical energy is converted into chemical energy."@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; - owl:annotatedTarget "electrochemical cell intended to produce chemical reactions"@en . - -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_1152ae6b_8b57_4d99_912e_40c6a29342fb ; - owl:annotatedTarget "mass m of electrochemically-transformed substance is proportional to the charge Q passed, m ∝ Q."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5721,6 +5700,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_ec1dce8b_bb46_41a9_b532_6bed381aa557 ; owl:annotatedTarget "secondary cell having a cover provided with an opening through which products of electrolysis and evaporation are allowed to escape freely from the cell to the atmosphere"@en . +[] a owl:Axiom ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_1152ae6b_8b57_4d99_912e_40c6a29342fb ; + owl:annotatedTarget "mass m of electrochemically-transformed substance is proportional to the charge Q passed, m ∝ Q."@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5739,12 +5724,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f0c24970_4c14_4207_bd78_5f2181a67085 ; owl:annotatedTarget "the process of forming a film or a bulk material using an electrochemical process where the electrons are supplied by an external power supply"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_1355816f_a2b5_4800_8001_fc888f5d6b1b ; - owl:annotatedTarget "instrument intended to measure the value of a voltage."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5757,6 +5736,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f47611a2_e081_47f0_b287_3fda5f706154 ; owl:annotatedTarget "chemical reaction which occurs in addition to the main process"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; + owl:annotatedTarget "electrode reaction in which reduction occurs at the cathode"@en . + +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_1355816f_a2b5_4800_8001_fc888f5d6b1b ; + owl:annotatedTarget "instrument intended to measure the value of a voltage."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5769,12 +5760,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; owl:annotatedTarget "electrode reaction, where the energy of electrons in the working electrode is higher than the LUMO orbital of the substrate"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; - owl:annotatedTarget "electrode reaction in which reduction occurs at the cathode"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5782,10 +5767,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "electrode that responds to one, or more than one, species in the solution being investigated, with no appreciable change of bulk solution composition during the measurement"@en . [] a owl:Axiom ; - dcterms:source "IUPAC. Compendium of Chemical Terminology, 2nd ed. (the \"Gold Book\"). Compiled by A. D. McNaught and A. Wilkinson. Blackwell Scientific Publications, Oxford (1997). Online version (2019-) created by S. J. Chalk. ISBN 0-9678550-9-8. https://doi.org/10.1351/goldbook." ; + dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_15325775_6d4c_4192_82f1_e4feca9de426 ; - owl:annotatedTarget "A membrane having ion-exchange groups:"@en . + owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; + owl:annotatedTarget "a material in which the mobile species are ions and free movement of electrons is blocked."@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5799,18 +5784,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; owl:annotatedTarget "liquid or solid substance containing mobile ions that render it conductive"@en . +[] a owl:Axiom ; + dcterms:source "IUPAC. Compendium of Chemical Terminology, 2nd ed. (the \"Gold Book\"). Compiled by A. D. McNaught and A. Wilkinson. Blackwell Scientific Publications, Oxford (1997). Online version (2019-) created by S. J. Chalk. ISBN 0-9678550-9-8. https://doi.org/10.1351/goldbook." ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_15325775_6d4c_4192_82f1_e4feca9de426 ; + owl:annotatedTarget "A membrane having ion-exchange groups:"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; owl:annotatedTarget "substance that provides ions on dissolution in a solvent or on melting"@en . -[] a owl:Axiom ; - dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; - owl:annotatedTarget "a material in which the mobile species are ions and free movement of electrons is blocked."@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5823,18 +5808,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_fb9bf7cb_dd4b_4391_99a1_628263dd6940 ; owl:annotatedTarget "measuring instrument to obtain the electrical charge passed in an experiment, or to produce a known amount of substance in a titration."@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; - owl:annotatedTarget "Electrolyte solution in the cathodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the cathode is placed."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; owl:annotatedTarget "electrolyte on the cathode side of an electrochemical cell that is divided into compartments."@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; + owl:annotatedTarget "Electrolyte solution in the cathodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the cathode is placed."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5931,18 +5916,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_2d32a81a_2148_41bd_84fb_467aa8de4a8f ; owl:annotatedTarget "foil, wire, disc, or mesh electrode made of platinum, which is the most commonly used metallic working electrode in electrochemistry"@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; - owl:annotatedTarget "An interfacial reaction that necessarily involves a charge-transfer step."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; owl:annotatedTarget "electrochemical reaction involving the transfer of electrons between electrolyte and electrode"@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; + owl:annotatedTarget "An interfacial reaction that necessarily involves a charge-transfer step."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5957,15 +5942,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_328c6e36_3706_4d92_abae_432fa3adb2a0 ; - owl:annotatedTarget "a cell baffle has a second function in protecting the plate pack from damage by objects inserted through the filling hole"@en . + owl:annotatedTarget "internal component used to reduce the amount of electrolyte loss due to electrolyte spray being carried in the gas and/or by electrolyte movement"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_328c6e36_3706_4d92_abae_432fa3adb2a0 ; - owl:annotatedTarget "internal component used to reduce the amount of electrolyte loss due to electrolyte spray being carried in the gas and/or by electrolyte movement"@en . + owl:annotatedTarget "a cell baffle has a second function in protecting the plate pack from damage by objects inserted through the filling hole"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5979,6 +5964,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_34bc54e3_de4c_41f8_8d3a_d77c951ee23a ; owl:annotatedTarget "needle-like or tree-like formation of crystalline growth formed during deposition of a material"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; + owl:annotatedTarget "by convention, cell electrode at which, a reduction reaction occurs"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5997,12 +5988,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; owl:annotatedTarget "the concepts of “anode” and “cathode” are related only to the direction of electron flow, not to the polarity of the electrodes"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; - owl:annotatedTarget "by convention, cell electrode at which, a reduction reaction occurs"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -6023,15 +6008,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_3f6c9e09_5f23_41cc_9f85_7de365cef089 ; - owl:annotatedTarget "electrolyte creep is sometimes indicated by the presence of a visible solid deposit or wet spots"@en . + owl:annotatedTarget "gradual and slow spreading of an electrolyte film on the external surface of a cell or battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_3f6c9e09_5f23_41cc_9f85_7de365cef089 ; - owl:annotatedTarget "gradual and slow spreading of an electrolyte film on the external surface of a cell or battery"@en . + owl:annotatedTarget "electrolyte creep is sometimes indicated by the presence of a visible solid deposit or wet spots"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -6041,9 +6026,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_04f28ce3_251d_429e_aa85_ab3eb45bbcd2 ; - owl:annotatedTarget "in lithium batteries thermal runaway may cause melting of lithium"@en . + owl:annotatedTarget "unstable condition arising during constant voltage charge in which the rate of heat dissipation capability, causing a continuous temperature increase with resulting further charge current increase, which can lead to the destruction of the battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -6077,9 +6062,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_04f28ce3_251d_429e_aa85_ab3eb45bbcd2 ; - owl:annotatedTarget "unstable condition arising during constant voltage charge in which the rate of heat dissipation capability, causing a continuous temperature increase with resulting further charge current increase, which can lead to the destruction of the battery"@en . + owl:annotatedTarget "in lithium batteries thermal runaway may cause melting of lithium"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; diff --git a/versions/v0.12.0-beta/context/context.json b/versions/v0.12.0-beta/context/context.json index ac1b0bb..2006ca7 100644 --- a/versions/v0.12.0-beta/context/context.json +++ b/versions/v0.12.0-beta/context/context.json @@ -1076,7 +1076,6 @@ "ButlerVolmerEquation": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d48ea516_5cac_4f86_bc88_21b6276c0938", "C": "https://w3id.org/emmo#EMMO_36a9bf69_483b_42fd_8a0c_7ac9206320bc", "CASRN": "https://w3id.org/emmo#EMMO_d2a47cd8_662f_438f_855a_b4378eb992ff", - "CCCVCycling": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e", "CPlusPlus": "https://w3id.org/emmo#EMMO_64aba1e5_24b7_4140_8eb4_676c35698e79", "CRate": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_e1fd84eb_acdb_4b2c_b90c_e899d552a3ee", "CSharp": "https://w3id.org/emmo#EMMO_268a8a97_3a6f_4022_93da_962a66827cdc", @@ -1285,7 +1284,7 @@ "CoatingThickness": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3b938708_e7e4_4ac0_a959_9c04306302e7", "Cobalt": "https://w3id.org/emmo/domain/chemical-substance#substance_8f857eb2_7cc8_4294_954d_e69f2842c084", "CobaltAtom": "https://w3id.org/emmo#EMMO_3fe9d899_f1f1_5657_b176_ac6afff2e93d", - "CobaltBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_838c115b_6bc9_4ce8_9f8d_86a6bf67742a", + "CobaltBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7b811780_7251_481b_a4d3_97d437955099", "CobaltHydroxide": "https://w3id.org/emmo/domain/chemical-substance#substance_29b1c15d_2632_40d7_88f7_43575b68b988", "CobaltIIAcetate": "https://w3id.org/emmo/domain/chemical-substance#substance_4310c690_9810_4a95_8d62_7e78e0b84437", "CobaltIIBistrifluoromethanesulfonylimide": "https://w3id.org/emmo/domain/chemical-substance#substance_f4dffee2_c642_4114_a748_5e93b3908380", @@ -1358,6 +1357,7 @@ "ConstantCurrentCharging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_83f2b1e9_cb67_4dbf_977f_ba54bbae374f", "ConstantCurrentChargingCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_37c38b7e_9ded_481a_85fd_a467f1ee2b9f", "ConstantCurrentConstantVoltageCharging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0cc8f231_0ce5_467e_9c76_29b2c80349ad", + "ConstantCurrentConstantVoltageCycling": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e", "ConstantCurrentDischarging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_53fe3f58_0802_41cf_af69_4784fc42cc30", "ConstantCurrentDischargingCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_08833ed2_6324_411a_b34b_fe64c44cd5ef", "ConstantPotentialPulses": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_84d37a37_88bd_47db_9425_31f73a81d38c", @@ -1590,7 +1590,7 @@ "DeviceTemperature": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_463950b9_fd8d_48de_a52d_b29cab026391", "DewPointTemperature": "https://w3id.org/emmo#EMMO_a383e332_a271_463f_9e44_559604547220", "Diameter": "https://w3id.org/emmo#EMMO_c1c8ac3c_8a1c_4777_8e0b_14c1f9f9b0c6", - "Dichloromethane": "https://w3id.org/emmo/domain/chemical-substance#substance_8385c3c4_5906_48f6_b6b6_4bb60dccc27a", + "Dichloromethane": "https://w3id.org/emmo/domain/chemical-substance#substance_a6feec60_5fe7_4687_b427_3bf2ed06008d", "DieCasting": "https://w3id.org/emmo#EMMO_a85d0b8a_588e_423f_b799_97b0890e9183", "DielectricAndImpedanceSpectroscopy": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#DielectricAndImpedanceSpectroscopy", "Dielectrometry": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Dielectrometry", @@ -1624,7 +1624,7 @@ "Dimethoxyethane": "https://w3id.org/emmo/domain/chemical-substance#substance_b6ecabf9_14a4_4808_a139_55329e70ad42", "Dimethoxymethane": "https://w3id.org/emmo/domain/chemical-substance#substance_21954b0b_c05c_42db_b276_3a931d8aabb1", "DimethylCarbonate": "https://w3id.org/emmo/domain/chemical-substance#substance_c4a7d7bd_497e_457e_b858_ff73254266d0", - "DimethylSulfoxide": "https://w3id.org/emmo/domain/chemical-substance#substance_b593b5dd_7957_4b85_856a_dd59775210b6", + "DimethylSulfoxide": "https://w3id.org/emmo/domain/chemical-substance#substance_ea68e1a4_6be8_4686_8701_ba88b40d00b7", "Dimethylformamide": "https://w3id.org/emmo/domain/chemical-substance#substance_769bdc09_f533_4fde_bb53_20339d5bfcb7", "Dimethylpropyleneurea": "https://w3id.org/emmo/domain/chemical-substance#substance_945c68da_3baf_4da6_b794_dca7aebc4ca7", "Dimethylsulfate": "https://w3id.org/emmo/domain/chemical-substance#substance_3c8fb431_7d9d_4a89_a494_708df34f44d3", @@ -1837,7 +1837,7 @@ "ElectronicModel": "https://w3id.org/emmo#EMMO_6eca09be_17e9_445e_abc9_000aa61b7a11", "ElectronvoltPerMetre": "https://w3id.org/emmo#ElectronvoltPerMetre", "Electroosmosis": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_5641910f_6e69_4ce4_be84_4b1bf14b8916", - "Electroplating": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e", + "Electroplating": "https://w3id.org/emmo#EMMO_30e3edb5_0977_4b9b_9aed_5a4d16c1c07c", "ElementalMaterial": "https://w3id.org/emmo#EMMO_a086af15_a7c3_404c_b4ce_c8e4466f1b4b", "ElementalSubstance": "https://w3id.org/emmo#EMMO_436b11bd_1756_4821_9f14_c9ed6b67552e", "ElementaryBoson": "https://w3id.org/emmo#EMMO_cafd0f10_ce85_48b9_9a36_2b0af141ce21", @@ -2192,11 +2192,12 @@ "ISQBaseQuantity": "https://w3id.org/emmo#EMMO_1a4c1a97_88a7_4d8e_b2f9_2ca58e92dde4", "ISQDerivedQuantity": "https://w3id.org/emmo#EMMO_2946d40b_24a1_47fa_8176_e3f79bb45064", "ISQDimensionlessQuantity": "https://w3id.org/emmo#EMMO_a66427d1_9932_4363_9ec5_7d91f2bfda1e", - "IUPACName": "https://w3id.org/emmo#EMMO_16a3bd5c_75f0_42b3_b000_cb0d018f840e", + "IUPACName": "https://w3id.org/emmo#EMMO_f652e7d2_0b33_4d10_8d0f_2f70089982ba", "IUPACNomencalture": "https://w3id.org/emmo#EMMO_91a0635a_a89a_46de_8928_04a777d145c7", "Icon": "https://w3id.org/emmo#EMMO_d7788d1a_020d_4c78_85a1_13563fcec168", "Illuminance": "https://w3id.org/emmo#EMMO_b51fbd00_a857_4132_9711_0ef70e7bdd20", "IlluminanceTimeUnit": "https://w3id.org/emmo#EMMO_e467cc3f_676c_432e_b70e_19237d1bcc78", + "ImaginaryElectricImpedance": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626", "Impedimetry": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Impedimetry", "InChI": "https://w3id.org/emmo#EMMO_d74ed682_894f_46c5_87cb_167f60926965", "IncreasingPotentialPulses": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_77be01ef_49bd_4f2e_bec8_eec0894b8562", @@ -2288,7 +2289,7 @@ "IridiumSymbol": "https://w3id.org/emmo#EMMO_b8aab013_b729_51f1_bc14_5302e7f97cbe", "Iron": "https://w3id.org/emmo/domain/chemical-substance#substance_89fd13e8_8061_41da_83f4_634144116425", "IronAtom": "https://w3id.org/emmo#EMMO_a4839f08_1080_53bf_9cb3_101e20c2656b", - "IronBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_cc4e178c_bc1f_4502_b6c2_33f304ef6bab", + "IronBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_5e1136d3_df00_40f7_a4bc_8259341053a1", "IronDisulfide": "https://w3id.org/emmo/domain/chemical-substance#substance_c728b6b9_449a_45ff_b5ae_6b7968708f0d", "IronDisulfideElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d2726dd5_69f0_4cb1_bd3c_4c48813e57e7", "IronIIIHydroxide": "https://w3id.org/emmo/domain/chemical-substance#substance_323a2e39_d7d5_4802_884a_9aa41a280986", @@ -2556,6 +2557,7 @@ "LossFactor": "https://w3id.org/emmo#EMMO_c3796906_8063_47d4_92af_890ae08f25fa", "LowPressureCasting": "https://w3id.org/emmo#EMMO_8b2fd84c_8f51_4731_9bd7_830545e78b23", "LowerCriticalMagneticFluxDensity": "https://w3id.org/emmo#EMMO_fd4a6307_f9f7_4b54_b044_caa04e620232", + "LowerCurrentLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea", "LowerFrequencyLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_b66d6553_6136_4754_902a_707e414210c2", "LowerVoltageLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_534dd59c_904c_45d9_8550_ae9d2eb6bbc9", "Lumen": "https://w3id.org/emmo#Lumen", @@ -2608,7 +2610,7 @@ "MagnesiumTriflate": "https://w3id.org/emmo/domain/chemical-substance#substance_df24fad8_7ef0_4330_a3f2_c4d65d9a3be8", "MagnesiumTrifluoromethanesulfonyloxalatoborate": "https://w3id.org/emmo/domain/chemical-substance#substance_2b7473ba_9156_489a_880f_3a2f746cd104", "MagneticDipoleMoment": "https://w3id.org/emmo#EMMO_81e767f1_59b1_4d7a_bf69_17f322241831", - "MagneticDipoleMomentUnit": "https://w3id.org/emmo#EMMO_5073dc80_aec2_4a3b_8057_fababfcbfe11", + "MagneticDipoleMomentUnit": "https://w3id.org/emmo#EMMO_1c2226a9_22f0_40c8_8928_5a01d398f96e", "MagneticFieldStrength": "https://w3id.org/emmo#EMMO_b4895f75_41c8_4fd9_b6d6_4d5f7c99c423", "MagneticFieldStrengthUnit": "https://w3id.org/emmo#EMMO_e6b83139_ba92_4fbd_a8b2_c8dde55844a1", "MagneticFlux": "https://w3id.org/emmo#EMMO_3b931698_937e_49be_ab1b_36fa52d91181", @@ -2676,7 +2678,7 @@ "MassExcess": "https://w3id.org/emmo#EMMO_7dd84949_0afa_4313_9b89_7bb0dd2e7771", "MassFlow": "https://w3id.org/emmo#EMMO_6d61ee3c_c5b6_4452_bc11_e9c33af992a7", "MassFluxUnit": "https://w3id.org/emmo#EMMO_e35d4936_b2e3_4cd6_a437_f1c864b3d450", - "MassFraction": "https://w3id.org/emmo/disciplines/units/coherentsiunits#EMMO_089f13b1_ceb3_4d2a_8795_b4a2d92916da", + "MassFraction": "https://w3id.org/emmo#EMMO_7c055d65_2929_40e1_af4f_4bf10995ad50", "MassFractionOfDryMatter": "https://w3id.org/emmo#EMMO_8f171308_f902_42c5_ac1d_d5259022e9c1", "MassFractionOfWater": "https://w3id.org/emmo#EMMO_cac16ce6_2cef_405d_ac63_0f918db4875e", "MassFractionUnit": "https://w3id.org/emmo#EMMO_18448443_dcf1_49b8_a321_cf46e2c393e1", @@ -3027,6 +3029,7 @@ "NobeliumAtom": "https://w3id.org/emmo#EMMO_49eb0790_50c2_5691_a8bf_dfa6f4a9f6c7", "NobeliumSymbol": "https://w3id.org/emmo#EMMO_c1bb775c_0888_5b88_9cce_c49bae1d298b", "NobleGasElementalSubstance": "https://w3id.org/emmo/domain/chemical-substance#substance_cac14194_2d5f_4fe6_b794_a9319f6d76ee", + "NominalCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100", "NominalProperty": "https://w3id.org/emmo#EMMO_909415d1_7c43_4d5e_bbeb_7e1910159f66", "NominalVoltage": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_639b844a_e801_436b_985d_28926129ead6", "NonActivePower": "https://w3id.org/emmo#EMMO_83318add_d05e_40fc_93ea_c6cd605df437", @@ -3061,6 +3064,7 @@ "NumberOfFiniteVolumeCellsInX": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_e73586eb_8475_4879_a43e_087c702ea6bf", "NumberOfFiniteVolumeCellsInY": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_c2a85d02_c6b4_42df_b5ed_a9904ec34a5c", "NumberOfFiniteVolumeCellsInZ": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a5e00e3a_736c_4200_8d04_ed222fe07037", + "NumberOfIterations": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_88dd2bce_fb17_4705_905d_892681812290", "NumberOfTurnsInAWinding": "https://w3id.org/emmo#EMMO_eefaa0ef_e7d4_4633_bf79_655bb55f4a49", "Numeral": "https://w3id.org/emmo#EMMO_74b05aed_66bf_43c8_aa2c_752a9ca8be03", "Numerical": "https://w3id.org/emmo#EMMO_4ce76d7f_03f8_45b6_9003_90052a79bfaa", @@ -3211,7 +3215,7 @@ "Permittivity": "https://w3id.org/emmo#EMMO_0ee5779e_d798_4ee5_9bfe_c392d5bea112", "PermittivityUnit": "https://w3id.org/emmo#EMMO_5f89cb0c_3171_47ee_b2ab_027a07c34c4b", "Persistence": "https://w3id.org/emmo#EMMO_e04884d9_eda6_487e_93d5_7722d7eda96b", - "Person": "http://xmlns.com/foaf/0.1/Person", + "Person": "https://schema.org/Person", "Perspective": "https://w3id.org/emmo#EMMO_49267eba_5548_4163_8f36_518d65b583f9", "Peta": "https://w3id.org/emmo#EMMO_d7c74480_a568_4470_acff_f18b499cc850", "PetaPrefixedUnit": "https://w3id.org/emmo#EMMO_43a6b269_da31_4bb6_a537_c97df4fff32a", @@ -3298,7 +3302,7 @@ "Porosity": "https://w3id.org/emmo#EMMO_3a6578ac_aee0_43b9_9bc6_1eb208c8c9a9", "PorousElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3663991d_9319_4f7a_922b_f0e428b58801", "PorousSeparator": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_58413d4e_2885_459e_ac06_8d45e661cf91", - "PositionVector": "https://w3id.org/emmo#EMMO_4312cae4_03ba_457e_b35d_0671a7db350c", + "PositionVector": "https://w3id.org/emmo#EMMO_44da6d75_54a4_4aa8_bd3a_156f6e9abb8e", "PositiveElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_aff732a9_238a_4734_977c_b2ba202af126", "PositiveTerminal": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_522f0c0b_cf33_4328_af71_12e38dae6798", "Positron": "https://w3id.org/emmo#EMMO_26a38b26_38ea_4acf_b212_db9e34c71b7a", @@ -3483,7 +3487,7 @@ "R54215": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_fc9e7ba3_5084_4c2a_b488_c6a96af99232", "R616": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_dc019f3f_e5f3_4eeb_bab9_a845a02223a0", "R621": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_15ec346a_6d3c_4161_95e1_9cf889965f85", - "R626": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_68c1c36e_1548_4247_bae2_fe7102a2c4ff", + "R626": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6b275583_433f_46f7_aafd_ebc9409257cc", "R712": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_bb2faf17_b819_4876_b17f_fa82917cf85d", "R716": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_34cb7ea7_2436_46e0_806e_a3c7835ae228", "R721": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3279f575_1c62_4bf2_a6e8_de4c7ff36f8e", @@ -3535,6 +3539,7 @@ "ReactivePower": "https://w3id.org/emmo#EMMO_d8030875_6d89_4645_9728_bbc3b8690609", "ReactorTimeConstant": "https://w3id.org/emmo#EMMO_b03dfad7_eab8_4949_9d10_dd4fd12faaef", "Real": "https://w3id.org/emmo#EMMO_18d180e4_5e3e_42f7_820c_e08951223486", + "RealElectricImpedance": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f", "ReciprocalAmountPerVolumeUnit": "https://w3id.org/emmo#EMMO_aef218f9_6ded_4db9_9263_e78eed55e5d6", "ReciprocalCentiMetre": "https://w3id.org/emmo#ReciprocalCentiMetre", "ReciprocalCubicCentiMetre": "https://w3id.org/emmo#ReciprocalCubicCentiMetre", @@ -3637,6 +3642,7 @@ "ResponseTimeAtAnISE": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_1a104474_c326_4a29_ac26_26a05ac8f72c", "RestEnergy": "https://w3id.org/emmo#EMMO_5117c5fe_f661_46f8_83c3_b48947f1532a", "RestMass": "https://w3id.org/emmo#EMMO_3c947caf_4070_4c79_a3a3_e53274ac9944", + "Resting": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b", "RestingTime": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_2678a656_4a27_4706_8dde_b0a93e9b92fa", "ReversibleHydrogenElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0d9ba00d_04bc_4bdc_85af_3380694f6f68", "RevolutionPerMinute": "https://w3id.org/emmo#RevolutionPerMinute", @@ -3790,7 +3796,7 @@ "SiemensSquareMetrePerMole": "https://w3id.org/emmo#SiemensSquareMetrePerMole", "Sievert": "https://w3id.org/emmo#Sievert", "Sign": "https://w3id.org/emmo#EMMO_b21a56ed_f969_4612_a6ec_cb7766f7f31d", - "Signal": "https://w3id.org/emmo/domain/chameo#Signal", + "Signal": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Signal", "SignalReferencePotential": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_68059d94_4c21_4065_b329_07faeebc7e87", "Silicon": "https://w3id.org/emmo/domain/chemical-substance#substance_68c0876b_cb62_41cd_846d_95cc9d9a8733", "SiliconAtom": "https://w3id.org/emmo#EMMO_798b0c96_82ca_5ce8_8d5f_f9f72668cf5d", @@ -4318,6 +4324,7 @@ "UpQuark": "https://w3id.org/emmo#EMMO_0a3f04a6_ba3a_49d9_99da_08b0e26f51f0", "UpQuarkType": "https://w3id.org/emmo#EMMO_fc47b76f_ad01_4cd0_8fc6_55532000e7c8", "UpperCriticalMagneticFluxDensity": "https://w3id.org/emmo#EMMO_6bfe6ad2_96ba_4478_81e5_d8881c550757", + "UpperCurrentLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45", "UpperFrequencyLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_666f0b69_9c74_49a3_80b3_96a188332462", "UpperVoltageLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6dcd5baf_58cd_43f5_a692_51508e036c88", "UraniumAtom": "https://w3id.org/emmo#EMMO_b233f8c0_37d8_51ae_9264_560e6649e246", diff --git a/versions/v0.12.0-beta/electrochemicalquantities.ttl b/versions/v0.12.0-beta/electrochemicalquantities.ttl index 882a543..96cb275 100644 --- a/versions/v0.12.0-beta/electrochemicalquantities.ttl +++ b/versions/v0.12.0-beta/electrochemicalquantities.ttl @@ -24,8 +24,6 @@ emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f a owl:AnnotationProperty . emmo:EMMO_5c78b424_087b_4e31_8c91_6422f1be1e86 owl:equivalentClass :electrochemistry_9c657fdc_b9d3_4964_907c_f9a6e8c5f52b . -emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 :electrochemistry_097ea615_c209_4edd_a1a1_5eea71d98fe8 "acimp/ohms"@en . - emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry_37b24a94_cae0_4d7a_9519_9f7692dec607 ; skos:altLabel "MassDiffusivity"@en ; emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q604008"@en ; @@ -101,6 +99,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "D40ParticleSize"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 40% of the sample's particles fall."@en . +:electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626 a owl:Class ; + rdfs:label "ImaginaryElectricImpedance"@en ; + rdfs:comment "the imaginary part of the complex electric impedance"@en ; + rdfs:subClassOf emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 ; + skos:prefLabel "ImaginaryElectricImpedance"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the imaginary part of the complex electric impedance"@en . + :electrochemistry_02d2d1d1_241c_429b_b4e7_31f2c3dc4835 a owl:Class ; rdfs:label "D95ParticleSize"@en ; rdfs:comment "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 95% of the sample's particles fall."@en ; @@ -381,6 +386,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "D50ParticleSize"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 50% of the sample's particles fall."@en . +:electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45 a owl:Class ; + rdfs:label "UpperCurrentLimit"@en ; + rdfs:comment "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en ; + rdfs:subClassOf :electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 ; + skos:prefLabel "UpperCurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + :electrochemistry_3e54f9e3_a31d_4821_9bfb_ef953a42c35b a owl:Class ; rdfs:label "MaximumPulseDischargingCurrent"@en ; rdfs:comment "the maximum current approved for pulse discharge of an electrochemical device"@en ; @@ -608,6 +620,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "ChargingCurrent"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electric current applied to an electrochemical device during a charging process"@en . +:electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea a owl:Class ; + rdfs:label "LowerCurrentLimit"@en ; + rdfs:comment "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en ; + rdfs:subClassOf :electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 ; + skos:prefLabel "LowerCurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + :electrochemistry_7f073272_8925_4344_995c_a5a6dd1fcde6 a owl:Class ; rdfs:label "ChargingConstantCurrentPercentage"@en ; rdfs:comment "the percentage of the total charge capacity that is obtained during a constant current charge process"@en ; @@ -705,6 +724,20 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "DischargingSpecificCapacity"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "quotient of the capacity of a cell or battery [ or electrode or active material ] obtained during a discharge process by its mass."@en . +:electrochemistry_88dd2bce_fb17_4705_905d_892681812290 a owl:Class ; + rdfs:label "NumberOfIterations"@en ; + rdfs:comment "the number of times an iterative process should occur"@en ; + rdfs:subClassOf emmo:EMMO_ba882f34_0d71_4e4f_9d92_0c076c633a2c ; + skos:prefLabel "NumberOfIterations"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the number of times an iterative process should occur"@en . + +:electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100 a owl:Class ; + rdfs:label "NominalCapacity"@en ; + rdfs:comment "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en ; + rdfs:subClassOf :electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 ; + skos:prefLabel "NominalCapacity"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en . + :electrochemistry_8e943e12_ecc0_4093_899e_7226be6be7f2 a owl:Class ; rdfs:label "D90ParticleSize"@en ; rdfs:comment "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 90% of the sample's particles fall."@en ; @@ -820,6 +853,15 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the celsius temperature of the ambient environment"@en ; :electrochemistry_1b717a20_17e3_4480_8c60_c4ae94058f05 "Environmental_Temperature (C)"@en . +:electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f a owl:Class ; + rdfs:label "RealElectricImpedance"@en ; + rdfs:comment "the imaginary part of the complex electric impedance"@en ; + rdfs:subClassOf emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 ; + skos:altLabel "ACResistance"@en ; + skos:prefLabel "RealElectricImpedance"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q1048490"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the imaginary part of the complex electric impedance"@en . + :electrochemistry_ae108db7_8765_4329_9908_059277dee586 a owl:Class ; rdfs:label "StepCapacity"@en ; rdfs:comment "the amount of charge that has passed through an electrochemical device within the time interval of a given testing step"@en ; @@ -1084,8 +1126,8 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry ; dcterms:license "https://creativecommons.org/licenses/by/4.0/legalcode" ; owl:imports ; - owl:versionIRI ; - owl:versionInfo "0.17.0-beta" . + owl:versionIRI ; + owl:versionInfo "0.18.0-beta" . a owl:NamedIndividual, foaf:Person ; @@ -1866,6 +1908,8 @@ In either case, the magnitude of the catalytic current depends on the applied po emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electric potential of an ion-selective electrode (ISE) and activity of an analyte ion at which the potential of the ISE is independent of temperature"@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1351/goldbook.I03304"@en . +emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 :electrochemistry_097ea615_c209_4edd_a1a1_5eea71d98fe8 "acimp/ohms"@en . + emmo:EMMO_e218c625_6a39_47a9_8d08_a2ef41c152a9 rdfs:subClassOf :electrochemistry_02eb0465_4f94_453c_8c1f_5ddf80134634 ; skos:altLabel "GravimetricEnergyDensity"@en ; :electrochemistry_811aafc3_0c6d_470e_b67e_ff5c82992609 "CmpEng(mWh/g)"@en . @@ -1997,14 +2041,6 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog skos:prefLabel "TemperatureLimit"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the temperature of a system"@en . -:electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 a owl:Class ; - rdfs:label "RatedCapacity"@en ; - rdfs:comment "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en ; - rdfs:subClassOf :electrochemistry_791c1915_a791_4450_acd8_7f94764743b5 ; - skos:prefLabel "RatedCapacity"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-03-15"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en . - :electrochemistry_9ed7210c_c4fa_467b_822d_ba12f885bdf4 a owl:Class ; rdfs:label "ConcentrationOverpotential"@en ; rdfs:comment "The concentration overpotential of an electrode reaction at a given electrode current density (c.d.) is basically the difference in equilibrium potentials across the diffusion layer. More precisely, it is the potential of a reference electrode (of the same electrode reaction as the working electrode ) with the interfacial concentrations which establish themselves at c.d., relative to the potential of a similar reference electrode with the concentrations of the bulk solution. From such a measured potential difference, with c.d. flowing, one needs to subtract the ohmic potential drop prevailing between the two electrodes."@en, @@ -2110,6 +2146,14 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog skos:prefLabel "NumberOfFiniteVolumeCells"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "number of discrete finite volume cells in a grid or sub-grid"@en . +:electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 a owl:Class ; + rdfs:label "RatedCapacity"@en ; + rdfs:comment "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en ; + rdfs:subClassOf :electrochemistry_791c1915_a791_4450_acd8_7f94764743b5 ; + skos:prefLabel "RatedCapacity"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-03-15"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en . + :electrochemistry_cc519a19_b8d5_4e3f_b893_3a884888ad79 a owl:Class ; rdfs:label "MaximumTemperature"@en ; rdfs:comment "the maximum allowable temperature"@en ; @@ -2186,14 +2230,6 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa :electrochemistry_a07dd85b_d0df_4d5d_8b0c_14d20ea3fe45 "current"@en ; :electrochemistry_ea9f4dba_8ca2_419e_9cdf_ce54e9ebbd46 "Current (A)"@en . -:electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 a owl:Class ; - rdfs:label "CurrentLimit"@en ; - rdfs:comment "limit on the electric current of an electrical system"@en ; - rdfs:subClassOf emmo:EMMO_c995ae70_3b84_4ebb_bcfc_69e6a281bb88, - :electrochemistry_b395a244_3a75_4737_be38_981bfa1277fe ; - skos:prefLabel "CurrentLimit"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the electric current of an electrical system"@en . - :electrochemistry_900e357f_2ee3_425a_a0b6_322661117787 a owl:Class ; rdfs:label "ElectrochemicalProperty"@en ; rdfs:subClassOf emmo:EMMO_909415d1_7c43_4d5e_bbeb_7e1910159f66 ; @@ -2292,6 +2328,14 @@ foaf:Person a owl:Class ; emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Faradaic_current"@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://goldbook.iupac.org/terms/view/F02321"@en . +:electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 a owl:Class ; + rdfs:label "CurrentLimit"@en ; + rdfs:comment "limit on the electric current of an electrical system"@en ; + rdfs:subClassOf emmo:EMMO_c995ae70_3b84_4ebb_bcfc_69e6a281bb88, + :electrochemistry_b395a244_3a75_4737_be38_981bfa1277fe ; + skos:prefLabel "CurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the electric current of an electrical system"@en . + :electrochemistry_1cd1d777_e67b_47eb_81f1_edac35d9f2c6 a owl:Class ; rdfs:label "Overpotential"@en ; rdfs:comment "difference between the electrode potential with current flow, and the electrode potential without current flow, i.e. the equilibrium potential"@en, diff --git a/versions/v0.12.0-beta/electrochemistry-inferred.ttl b/versions/v0.12.0-beta/electrochemistry-inferred.ttl index f4fa0f9..c704a22 100644 --- a/versions/v0.12.0-beta/electrochemistry-inferred.ttl +++ b/versions/v0.12.0-beta/electrochemistry-inferred.ttl @@ -7,7 +7,7 @@ @base . rdf:type owl:Ontology ; - owl:versionIRI ; + owl:versionIRI ; ""@en , "CHAMEO is a domain ontology designed to model the common aspects across the different characterisation techniques and methodologies."@en , """Defines physical quantities in the International System of Quantities (ISQ). ISQ was made an official ISO standard in 2009 and is defined in the ISO/IEC 80000 standard. @@ -146,12 +146,12 @@ The symbolic module includes symbols, symbolic constructs and formal languages." "https://w3id.org/emmo/domain/characterisation-methodology/chameo" ; "2024-04-12" , "2024-06-23"^^xsd:date , - "2024-07-03"^^xsd:date ; + "2024-07-05"^^xsd:date ; "https://creativecommons.org/licenses/by/4.0/legalcode" , "https://creativecommons.org/licenses/by/4.0/legalcode"@en ; "2024-04-12" , "2024-06-23"^^xsd:date , - "2024-07-03"^^xsd:date ; + "2024-07-05"^^xsd:date ; "EMMC ASBL" , "EMMC ASBL"@en , """EMMC ASBL @@ -241,11 +241,11 @@ We kindly acknowledge NIST for reusing their content, including the selection of "You can contact EMMO Authors via emmo@emmc.eu"@en ; owl:backwardCompatibleWith "" , " " , - "0.16.0-beta" ; - owl:priorVersion "0.16.0-beta" , + "0.17.0-beta" ; + owl:priorVersion "0.17.0-beta" , "0.5.0-beta" , "1.0.0-beta2" ; - owl:versionInfo "0.17.0-beta" , + owl:versionInfo "0.18.0-beta" , "0.6.0-beta" , "1.0.0-beta3" , "1.0.0-beta7" ; @@ -2333,7 +2333,7 @@ While the EMMO FOL introduces the quantum causality relation C(x,y) as primitive rdf:type owl:ObjectProperty ; rdfs:subPropertyOf ; rdfs:domain ; - rdfs:range ; + rdfs:range ; "hasSolvent"@en . @@ -2364,7 +2364,7 @@ While the EMMO FOL introduces the quantum causality relation C(x,y) as primitive rdf:type owl:ObjectProperty ; rdfs:subPropertyOf ; rdfs:domain ; - rdfs:range ; + rdfs:range ; "hasSolute"@en . @@ -34532,7 +34532,7 @@ Wikipedia"""@en ; , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "ZincElectrode"@en ; "an electrode in which the main active material is zinc metal"@en ; @@ -34555,7 +34555,7 @@ Wikipedia"""@en ; rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "LithiumElectrode"@en ; "an electrode in which the active material is lithium metal" . @@ -44391,164 +44391,11 @@ Wear is defined as the progressive removal of the material from a solid surface "InChI=1S/Pb" . -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0139937b_2724_4864_84fb_f14bcfb83538 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0bdf0bb9_41fc_455d_af11_a249e24acdf6 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0f2f65a7_5cc4_4c86_a4d0_676771c646f1 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_250fa43e_1f26_4ed8_b787_91a2325a8e7b - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_25f6ff4c_53ad_4837_97c4_aa6f06099bb5 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_2a540939_3908_4f85_92f9_c46da7d4e9cb - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_2a87ca10_fc6a_4d61_b48c_d9790a566ee3 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_3899a9c9_9b34_443e_8ce6_0257589bb38a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_3ac62305_acd6_4312_9e31_4f824bd2530d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_4126ee09_b9c6_4694_bf33_0d8970e05f72 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_4c62d334_a124_40b3_9fd1_fe713d01a6af - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_5088ad54_b37d_4ee1_a086_d6c17e644f9a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_5cee19d2_f916_4264_a8ed_efed13a808d2 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_68c0876b_cb62_41cd_846d_95cc9d9a8733 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_68f9b85e_340f_46ec_96da_ebb6bd62f5fd - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_73d4606c_7460_4a5c_9413_793bdf35753e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_7dc738d6_74f2_489e_ae84_a6dbdf627f2e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_848003a2_71ee_4967_8039_354c907ec7f4 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_97439fbb_155f_433d_9edd_d510cd491f24 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_9bd78e1c_a4dc_41b6_8013_adb51df1ffdc - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_9da78aea_d436_40e2_a68f_c3dee32b825e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_aa8e9cc4_5f66_4307_b1c8_26fac7653a90 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_acdb232f_8041_4e11_8a11_5db2d2baae4d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_b01771a9_218a_4b01_b20f_4021cfa0b7d5 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_b3815a7f_f64a_48f6_b0ce_d0032578c699 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c109ca45_08c7_4436_a818_a9c575785e2f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c28a0967_ed23_48cc_a14e_a651d75a19db - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c5582dae_ccff_4fbe_adaa_078091054640 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c728b6b9_449a_45ff_b5ae_6b7968708f0d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_cd17ca33_ae3d_4738_8930_547673bf6c1f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_cdd18f0c_e7b3_4d09_b3dd_c09fe4b1adba - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_d53259a7_0d9c_48b9_a6c1_4418169df303 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_d673ceb2_3045_4e2e_8cad_56f5169b542f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_db74b6b7_09fc_40db_a7d5_6eb86b69192a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_dc5fb846_1824_40f8_9834_81f118aa1c2d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_dcdbdbed_2e20_40d1_a7a5_5761de7f0618 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_e1e6ff98_0725_4d27_ab21_2ca5a95371f0 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_e8fafdc8_6cd3_4dd0_9630_10ca8e3f1827 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_f3e7979a_e3ef_450a_8762_7d8778afe478 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_f7525766_90cf_43e9_8932_7cb3b14f676f - rdf:type owl:Class . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626 + rdf:type owl:Class ; + rdfs:subClassOf ; + "ImaginaryElectricImpedance"@en ; + "the imaginary part of the complex electric impedance"@en . ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_01260656_ac32_472e_9513_a607366538ec @@ -44872,11 +44719,11 @@ Wear is defined as the progressive removal of the material from a solid surface rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCLCOElectrode"@en ; @@ -45639,7 +45486,7 @@ and t* through mathematical models, provided that the long-time potential- deter , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LFPElectrode"@en ; @@ -46241,7 +46088,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "PtElectrode"@en ; "PlatinumElectrode"@en ; @@ -46343,7 +46190,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SiliconOxideGraphiteElectrode"@en ; @@ -46477,7 +46324,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "FTOElectrode"@en ; @@ -46500,7 +46347,7 @@ Aluminum foil"""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "NiOOHElectrode"@en , "NickelOxyhydroxideElectrode"@en ; @@ -46544,6 +46391,14 @@ Aluminum foil"""@en . "a coin case with a nominal diameter of 7.9 mm and a height of 1.65 mm"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b + rdf:type owl:Class ; + rdfs:subClassOf , + ; + "Resting"@en ; + "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 rdf:type owl:Class ; rdfs:subClassOf ; @@ -46811,6 +46666,13 @@ Aluminum foil"""@en . "A material relation in electrochemistry."@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45 + rdf:type owl:Class ; + rdfs:subClassOf ; + "UpperCurrentLimit"@en ; + "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3e54f9e3_a31d_4821_9bfb_ef953a42c35b rdf:type owl:Class ; rdfs:subClassOf , @@ -46981,7 +46843,7 @@ Aluminum foil"""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNMOElectrode"@en ; @@ -47201,11 +47063,11 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCLMOElectrode"@en ; @@ -47294,7 +47156,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumNickelPhosphateElectrode"@en ; @@ -47549,7 +47411,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumIronPhosphateElectrode"@en ; @@ -47904,7 +47766,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "CarbonMonofluorideElectrode"@en ; "electrode in which the active material is carbon monofluoride"@en ; @@ -48131,7 +47993,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "HardCarbonElectrode"@en ; "electrode in which the active material is hard carbon"@en . @@ -48291,7 +48153,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "SAE"@en ; "SolidAmalgamElectrode"@en ; @@ -48426,7 +48288,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LTOElectrode"@en ; @@ -48518,20 +48380,13 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ] . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "system that consists of at least two electron conductors (electrodes) in contact with ionic conductors (electrolytes)"@en ; - "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6fec8cc1_4e6c_428e_8343_6cf3c286a185 rdf:type owl:Class ; rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "AuElectrode"@en ; "GoldElectrode"@en ; @@ -48691,7 +48546,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NiOElectrode"@en ; @@ -48721,7 +48576,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "TiO2Electrode"@en ; @@ -48915,13 +48770,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ] . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "in secondary cells, the active material is restored to its original state during charge"@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - [ rdf:type owl:Axiom ; owl:annotatedSource ; owl:annotatedProperty ; @@ -48965,6 +48813,13 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s "an electrode in which the primary active material consists of caesium or caesium compounds"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea + rdf:type owl:Class ; + rdfs:subClassOf ; + "LowerCurrentLimit"@en ; + "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7f073272_8925_4344_995c_a5a6dd1fcde6 rdf:type owl:Class ; rdfs:subClassOf ; @@ -49118,7 +48973,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "LiquidGalliumElectrode"@en ; "a liquid electrode with an active material of gallium"@en . @@ -49188,7 +49043,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "ZnOElectrode"@en ; @@ -49446,6 +49301,13 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "an electrode in which the primary active material consists of sulfur or sulfur compounds"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_88dd2bce_fb17_4705_905d_892681812290 + rdf:type owl:Class ; + rdfs:subClassOf ; + "NumberOfIterations"@en ; + "the number of times an iterative process should occur"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8968eb7a_9a65_4286_a596_c31b998df329 rdf:type owl:Class ; rdfs:subClassOf ; @@ -49504,6 +49366,13 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "substance that increases chemical reaction speed, and which is conserved after the reaction"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100 + rdf:type owl:Class ; + rdfs:subClassOf ; + "NominalCapacity"@en ; + "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8b40856f_1ca2_4137_9616_7fb624671909 rdf:type owl:Class ; rdfs:subClassOf , @@ -50109,7 +49978,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumCobaltPhosphateElectrode"@en ; @@ -50298,13 +50167,6 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; "plate in which the active material is applied as a paste to a conductive current collector"@en . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "plate in which the active material is applied as a paste to a conductive current collector"@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a24f8581_a5a4_41a4_bb45_d0fdd5c0d810 rdf:type owl:Class ; @@ -50397,7 +50259,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "SilverOxideElectrode"@en ; "an electrode in which the primary active material consists of manganese dioxide or vmanganese dioxide compounds"@en ; @@ -50427,7 +50289,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "AgElectrode"@en ; "SilverElectrode"@en ; @@ -50662,7 +50524,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "CupricOxideElectrode"@en ; "CopperOxideElectrode"@en ; @@ -50751,6 +50613,15 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "Environmental_Temperature (C)"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f + rdf:type owl:Class ; + rdfs:subClassOf ; + "ACResistance"@en ; + "RealElectricImpedance"@en ; + "https://www.wikidata.org/wiki/Q1048490"@en ; + "the imaginary part of the complex electric impedance"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abfadc99_6e43_4d37_9b04_7fc5b0f327ae rdf:type owl:Class ; rdfs:subClassOf , @@ -50782,7 +50653,8 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e rdf:type owl:Class ; rdfs:subClassOf ; - "CCCVCycling"@en ; + "CCCVCycling"@en ; + "ConstantCurrentConstantVoltageCycling"@en ; "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en . @@ -51030,7 +50902,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCElectrode"@en ; @@ -51360,11 +51232,11 @@ of other configurations are used."""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNMOLFPElectrode"@en ; @@ -51466,13 +51338,6 @@ of other configurations are used."""@en . "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; "https://en.wikipedia.org/wiki/Fuel_cell"@en . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_bea04148_10d9_4eda_9cd5_8f609d7e9ff8 rdf:type owl:Class ; @@ -51568,7 +51433,7 @@ of other configurations are used."""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LMOElectrode"@en ; @@ -51751,11 +51616,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "ITO"@en ; @@ -51809,7 +51674,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "GraphiteElectrode"@en ; "electrode in which the active material is graphite"@en . @@ -51928,7 +51793,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "MnO2Electrode"@en ; "ManganeseDioxideElectrode"@en ; @@ -51943,7 +51808,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNOElectrode"@en ; @@ -51963,7 +51828,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "IrO2Electrode"@en ; @@ -51977,7 +51842,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumManganesePhosphateElectrode"@en ; @@ -52146,7 +52011,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "IronDisulfideElectrode"@en ; "an electrode in which the primary active material consists of iron disulfide or iron disulfide compounds."@en ; @@ -52509,7 +52374,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "HgElectrode"@en ; "MercuryElectrode"@en ; @@ -52785,11 +52650,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SiliconGraphiteElectrode"@en ; @@ -52802,7 +52667,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumManganeseOxideElectrode"@en ; @@ -53004,7 +52869,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumCobaltOxideElectrode"@en ; @@ -53096,7 +52961,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NCAElectrode"@en ; @@ -53315,7 +53180,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "PbOElectrode"@en ; @@ -53401,7 +53266,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumChromiumOxideElectrode"@en ; @@ -53621,7 +53486,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LCOElectrode"@en ; @@ -53672,11 +53537,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LMOLFPElectrode"@en ; @@ -53808,10 +53673,10 @@ In either case, the magnitude of the catalytic current depends on the applied po "The universe is considered as a causally self-connected object, encompassing all other objects. For this reason is unique."@en . -[ owl:qualifiedCardinality "3"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "3"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "4"^^xsd:nonNegativeInteger @@ -53835,10 +53700,10 @@ In either case, the magnitude of the catalytic current depends on the applied po [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:minQualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:minQualifiedCardinality "2"^^xsd:nonNegativeInteger +[ owl:minQualifiedCardinality "1"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger @@ -53850,7 +53715,7 @@ In either case, the magnitude of the catalytic current depends on the applied po [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:minQualifiedCardinality "2"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger diff --git a/versions/v0.12.0-beta/electrochemistry.ttl b/versions/v0.12.0-beta/electrochemistry.ttl index baa1206..d442e3c 100644 --- a/versions/v0.12.0-beta/electrochemistry.ttl +++ b/versions/v0.12.0-beta/electrochemistry.ttl @@ -1,6 +1,6 @@ @prefix : . @prefix bibo: . -@prefix chemsub: . +@prefix chemsub: . @prefix dcterms: . @prefix emmo: . @prefix foaf: . @@ -54,9 +54,9 @@ schema:name a owl:AnnotationProperty . dcterms:created "2022-11-25"^^xsd:date ; dcterms:creator , ; - dcterms:issued "2024-07-03"^^xsd:date ; + dcterms:issued "2024-07-05"^^xsd:date ; dcterms:license "https://creativecommons.org/licenses/by/4.0/legalcode" ; - dcterms:modified "2024-07-03"^^xsd:date ; + dcterms:modified "2024-07-05"^^xsd:date ; dcterms:publisher "EMMO" ; dcterms:source , , @@ -67,13 +67,13 @@ schema:name a owl:AnnotationProperty . bibo:status "unstable" ; vann:preferredNamespacePrefix "echem" ; vann:preferredNamespaceUri "https://w3id.org/emmo/domain/electrochemistry" ; - owl:backwardCompatibleWith "0.16.0-beta" ; + owl:backwardCompatibleWith "0.17.0-beta" ; owl:imports , , - ; - owl:priorVersion "0.16.0-beta" ; - owl:versionIRI ; - owl:versionInfo "0.17.0-beta" ; + ; + owl:priorVersion "0.17.0-beta" ; + owl:versionIRI ; + owl:versionInfo "0.18.0-beta" ; foaf:logo "https://raw.githubusercontent.com/emmo-repo/domain-electrochemistry/gh-pages/assets/img/fig/png/domain-electrochemistry-logo.png" . :electrochemistry_027d437e_3bbf_4eda_940b_e509f8d2b993 a owl:Class ; @@ -535,6 +535,14 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "R716" ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a coin case with a nominal diameter of 7.9 mm and a height of 1.65 mm"@en . +:electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b a owl:Class ; + rdfs:label "Resting"@en ; + rdfs:comment "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en ; + rdfs:subClassOf , + :electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 ; + skos:prefLabel "Resting"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en . + :electrochemistry_36444184_1100_4271_869f_7f2d983aaecb a owl:Class ; rdfs:label "P45173115" ; rdfs:comment "a prismatic case with a nominal length of 45 mm, width of 173 mm, and height of 115 mm"@en ; @@ -1564,6 +1572,15 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "TinBasedElectrode"@en ; emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "an electrode in which the primary active material consists of tin or tin compounds"@en . +:electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c a owl:Class ; + rdfs:label "PastedPlate"@en ; + rdfs:comment "plate in which the active material is applied as a paste to a conductive current collector"@en ; + rdfs:subClassOf :electrochemistry_92147e31_d015_4889_a092_04fbab033f15 ; + skos:altLabel "PastedElectrode"@en ; + skos:prefLabel "PastedPlate"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "plate in which the active material is applied as a paste to a conductive current collector"@en . + :electrochemistry_a277e420_2483_44d5_a2bc_4e421dea231a a owl:Class ; rdfs:label "R926" ; rdfs:comment "a coin case with a nominal diameter of 9.5 mm and a height of 2.6 mm"@en ; @@ -1658,10 +1675,11 @@ schema:name a owl:AnnotationProperty . emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a coin case with a nominal diameter of 11.6 mm and a height of 4.2 mm"@en . :electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e a owl:Class ; - rdfs:label "CCCVCycling"@en ; + rdfs:label "ConstantCurrentConstantVoltageCycling"@en ; rdfs:comment "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en ; rdfs:subClassOf :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; - skos:prefLabel "CCCVCycling"@en ; + skos:altLabel "CCCVCycling"@en ; + skos:prefLabel "ConstantCurrentConstantVoltageCycling"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en . :electrochemistry_ad9cdad6_66e8_471e_a7c6_b79f37c20814 a owl:Class ; @@ -1783,6 +1801,17 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "P20100141" ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a prismatic case with a nominal length of 20 mm, width of 100 mm, and height of 141 mm"@en . +:electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d a owl:Class ; + rdfs:label "FuelCell"@en ; + rdfs:comment "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; + rdfs:subClassOf :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; + skos:prefLabel "FuelCell"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q180253"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-05"@en ; + emmo:EMMO_6dd685dd_1895_46e4_b227_be9f7d643c25 "https://dbpedia.org/page/Fuel_cell"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; + emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Fuel_cell"@en . + :electrochemistry_bea04148_10d9_4eda_9cd5_8f609d7e9ff8 a owl:Class ; rdfs:label "CelsiusTemperatureMeasurement"@en ; rdfs:comment "measurement of temperature"@en ; @@ -3335,15 +3364,6 @@ schema:name a owl:AnnotationProperty . "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-26"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "interface between an electrolyte and an electrode where an electrode reaction takes place."@en . -:electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c a owl:Class ; - rdfs:label "PastedPlate"@en ; - rdfs:comment "plate in which the active material is applied as a paste to a conductive current collector"@en ; - rdfs:subClassOf :electrochemistry_92147e31_d015_4889_a092_04fbab033f15 ; - skos:altLabel "PastedElectrode"@en ; - skos:prefLabel "PastedPlate"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "plate in which the active material is applied as a paste to a conductive current collector"@en . - :electrochemistry_a462859d_d8bd_48ea_8bde_1576f1248a1e a owl:Class ; rdfs:label "SilverElectrode"@en ; rdfs:comment "electrode in the form of foil, mesh, wire, rod, tube, powder, pellets, or single crystal of silver"@en ; @@ -3459,17 +3479,6 @@ of other configurations are used."""@en . emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-19"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "part which insures insulation between the plate (electrode) edges and adjacent plates (electrodes) and the container side walls"@en . -:electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d a owl:Class ; - rdfs:label "FuelCell"@en ; - rdfs:comment "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - rdfs:subClassOf :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; - skos:prefLabel "FuelCell"@en ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q180253"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-05"@en ; - emmo:EMMO_6dd685dd_1895_46e4_b227_be9f7d643c25 "https://dbpedia.org/page/Fuel_cell"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Fuel_cell"@en . - :electrochemistry_bed5b5f9_b89d_45e3_a8c2_81b70ae21847 a owl:Class ; rdfs:label "SeriesParallelConnection"@en ; rdfs:comment "arrangement of cells or batteries wherein in series connected cells or batteries are connected in parallel."@en ; @@ -4518,15 +4527,20 @@ schema:Person a owl:Class ; skos:prefLabel "BimetallicOxideElectrode"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "an electrode consisting of two metal oxide active materials"@en . -:electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 a owl:Class ; - rdfs:label "GalvanostaticProcess"@en ; - rdfs:comment "a process in which the electric current is kept constant"@en ; - rdfs:subClassOf [ a owl:Restriction ; - owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; 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+ emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; + emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "material which reacts chemically to produce electric energy when the cell discharges", + "in secondary cells, the active material is restored to its original state during charge"@en . :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 a owl:Class ; rdfs:label "PotentiometricStrippingAnalysis"@en ; @@ -4601,20 +4615,15 @@ schema:Person a owl:Class ; "The electrode (or interfacial) reaction involves all the processes (chemical reaction, structural reorganization, adsorption) accompanying the charge transfer step."@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1351/goldbook.E01960"@en . -:electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 a owl:Class ; - rdfs:label "ActiveMaterial"@en ; - rdfs:comment "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; - rdfs:subClassOf :electrochemistry_b5ea31c9_bb10_4276_980e_c3eceb1efc82, - :electrochemistry_ebdb68e9_c4b5_4d57_a042_c0f51d446755 ; - skos:altLabel "ActiveElectrochemicalMaterial"@en, - "ElectrochemicallyActiveMaterial"@en ; - skos:prefLabel "ActiveMaterial"@en ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q120907375" ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-33", - "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-14"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "material which reacts chemically to produce electric energy when the cell discharges", - "in secondary cells, the active material is restored to its original state during charge"@en . +:electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 a owl:Class ; + rdfs:label "GalvanostaticProcess"@en ; + rdfs:comment "a process in which the electric current is kept constant"@en ; + rdfs:subClassOf [ a owl:Restriction ; + owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; + owl:someValuesFrom :electrochemistry_22725105_c941_4b14_a4a2_fcb627958607 ], + :electrochemistry_5548f188_df00_4c05_ae98_7846e92efe36 ; + skos:prefLabel "GalvanostaticProcess"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a process in which the electric current is kept constant"@en . :electrochemistry_8a1c9a7b_978c_4421_a9c1_d0b07b42aab9 a owl:Class ; rdfs:label "ChemicalReaction"@en ; @@ -4953,9 +4962,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "extremely resistant to many chemicals, impermeable to gases and liquids, and has good electrical conductivity, high hardness and strength, and biocompatibility"@en . + owl:annotatedTarget "electrode made of glassy carbon material with an intertwined graphitic ribbon structure, formed by pyrolysis of a resol precursor at temperatures up to 3000 °C"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -4976,28 +4985,22 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "A disc electrode that is embedded in the centre of a cylinder which rotates in solution around the longitudinal cylinder axis."@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "composite system in which the supplied electric energy mainly produces chemical reactions or, conversely, in which the energy released by chemical reactions is mainly delivered by the system as electric energy"@en . + owl:annotatedTarget "a system containing two electrodes that allow transport of electrons, separated by an electrolyte that allows movement of ions but blocks movement of electrons."@en . [] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "system that consists of at least two electron conductors (electrodes) in contact with ionic conductors (electrolytes)"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" . + owl:annotatedTarget "composite system in which the supplied electric energy mainly produces chemical reactions or, conversely, in which the energy released by chemical reactions is mainly delivered by the system as electric energy"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "glassy carbon combines glass-like mechanical characteristics with physical properties similar to graphite, owing to its “graphene ribbon” structure"@en . - -[] a owl:Axiom ; - dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "a system containing two electrodes that allow transport of electrons, separated by an electrolyte that allows movement of ions but blocks movement of electrons."@en . + owl:annotatedTarget "extremely resistant to many chemicals, impermeable to gases and liquids, and has good electrical conductivity, high hardness and strength, and biocompatibility"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5033,13 +5036,13 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "one of the most frequently used working electrodes"@en . + owl:annotatedTarget "glassy carbon combines glass-like mechanical characteristics with physical properties similar to graphite, owing to its “graphene ribbon” structure"@en . [] a owl:Axiom ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; - owl:annotatedTarget "in secondary cells, the active material is restored to its original state during charge"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedTarget "material that is oxidized or reduced at an electrode in an electrochemical cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5047,12 +5050,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; owl:annotatedTarget "material which reacts chemically to produce electric energy when the cell discharges" . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; - owl:annotatedTarget "material that is oxidized or reduced at an electrode in an electrochemical cell"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5061,9 +5058,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "electrode made of glassy carbon material with an intertwined graphitic ribbon structure, formed by pyrolysis of a resol precursor at temperatures up to 3000 °C"@en . + owl:annotatedTarget "one of the most frequently used working electrodes"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5083,18 +5080,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_83f2b1e9_cb67_4dbf_977f_ba54bbae374f ; owl:annotatedTarget "charge during which the electric current is maintained at a constant value regardless of the battery voltage or temperature"@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; - owl:annotatedTarget "Electrolyte solution in the anodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the anode is placed."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; owl:annotatedTarget "electrolyte on the anode side of an electrochemical cell that is divided into compartments"@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; + owl:annotatedTarget "Electrolyte solution in the anodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the anode is placed."@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5133,15 +5130,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_8d3bf304_78e4_4e99_abe1_6ab429e44ed1 ; - owl:annotatedTarget "a sealed cell may be equipped with a safety device to prevent a dangerously high internal pressure and is designed to operate during its life in its original sealed state"@en . + owl:annotatedTarget "cell which remains closed and does not release either gas or liquid when operated within the limits specified by the manufacturer"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_8d3bf304_78e4_4e99_abe1_6ab429e44ed1 ; - owl:annotatedTarget "cell which remains closed and does not release either gas or liquid when operated within the limits specified by the manufacturer"@en . + owl:annotatedTarget "a sealed cell may be equipped with a safety device to prevent a dangerously high internal pressure and is designed to operate during its life in its original sealed state"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5150,10 +5147,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "capacitor consisting of a metallic plate as first conductor, a very thin oxide film formed on the metal as the dielectric and an electrolyte as second conductor"@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_06d8e1ee_924a_4915_998d_33a69f41dadc ; - owl:annotatedTarget "operation during which an electrochemical cell supplies electric energy as the result of chemical changes within the cell"@en . + owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; + owl:annotatedTarget "two-step electrochemical measurement in which 1) material is accumulated at an electrode and 2) the material is removed by chemical reaction or electrochemically at constant current with measurement of electrode potential"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5161,6 +5158,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; owl:annotatedTarget "historically for the analysis of metal ions, mercury ions were added to the test solution to form a mercury amalgam when reduced. Alternatively, an HMDE or MFE was used and the oxidizing agent added after amalgam formation. However, the toxicity of mercury and its compounds have all but precluded the present-day use of mercury"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_06d8e1ee_924a_4915_998d_33a69f41dadc ; + owl:annotatedTarget "operation during which an electrochemical cell supplies electric energy as the result of chemical changes within the cell"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5179,12 +5182,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; owl:annotatedTarget "the time between changes in potential in step 2 is related to the concentration of analyte in the solution"@en . -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; - owl:annotatedTarget "two-step electrochemical measurement in which 1) material is accumulated at an electrode and 2) the material is removed by chemical reaction or electrochemically at constant current with measurement of electrode potential"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5211,15 +5208,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_9ee6e728_e8f5_4b36_a045_d63da69dfc85 ; - owl:annotatedTarget "overcharge is also the act of charging beyond a certain limit specified by the manufacturer"@en . + owl:annotatedTarget "continued charging of a fully charged secondary cell or battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_9ee6e728_e8f5_4b36_a045_d63da69dfc85 ; - owl:annotatedTarget "continued charging of a fully charged secondary cell or battery"@en . + owl:annotatedTarget "overcharge is also the act of charging beyond a certain limit specified by the manufacturer"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5227,6 +5224,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_9f466223_e20a_474d_ac4d_6d4b6131c275 ; owl:annotatedTarget "an electrode that holds its potential essentially constant by efficiently allowing electric current to pass"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_a0580fa9_5073_44af_b33e_7adbc83892d0 ; + owl:annotatedTarget "electrode reaction in which oxidation occurs at the anode"@en . + [] a owl:Axiom ; dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5242,14 +5245,14 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0580fa9_5073_44af_b33e_7adbc83892d0 ; - owl:annotatedTarget "electrode reaction in which oxidation occurs at the anode"@en . + owl:annotatedSource :electrochemistry_a0a619d7_da95_41f0_8bc3_9c19d636d543 ; + owl:annotatedTarget "electrode that serves only as a source or sink for electrons without playing a chemical role in the electrode reaction"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0a619d7_da95_41f0_8bc3_9c19d636d543 ; - owl:annotatedTarget "electrode that serves only as a source or sink for electrons without playing a chemical role in the electrode reaction"@en . + owl:annotatedSource :electrochemistry_a0fcb105_587f_45d8_a89a_46dc8f745069 ; + owl:annotatedTarget "partial or complete external covering of a cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5260,14 +5263,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0fcb105_587f_45d8_a89a_46dc8f745069 ; - owl:annotatedTarget "partial or complete external covering of a cell"@en . - -[] a owl:Axiom ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c ; - owl:annotatedTarget "plate in which the active material is applied as a paste to a conductive current collector"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedSource :electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e ; + owl:annotatedTarget "process inside an electrolytic cell used to coat a conductive object with a layer of a material"@en . [] a owl:Axiom ; dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; @@ -5278,8 +5275,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e ; - owl:annotatedTarget "process inside an electrolytic cell used to coat a conductive object with a layer of a material"@en . + owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; + owl:annotatedTarget "component of a cell which permits the flow of gas in one direction only"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5287,12 +5284,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; owl:annotatedTarget "a valve has a characteristic venting or opening and closing pressure"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; - owl:annotatedTarget "component of a cell which permits the flow of gas in one direction only"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5305,6 +5296,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a462859d_d8bd_48ea_8bde_1576f1248a1e ; owl:annotatedTarget "electrode in the form of foil, mesh, wire, rod, tube, powder, pellets, or single crystal of silver"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; + owl:annotatedTarget "a chemical reaction in an electrolyte involving a transfer of electrons between chemical components or between chemical components and an electrode"@en . + [] a owl:Axiom ; dcterms:source "Bockris, J. O'M. and Despić, . Aleksandar R. (2011, December 15). Electrochemical reaction. Encyclopedia Britannica. https://www.britannica.com/science/electrochemical-reaction" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5317,12 +5314,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; owl:annotatedTarget "the electrode reaction can also involve other chemical reactions including subreactions on a cell electrode"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; - owl:annotatedTarget "a chemical reaction in an electrolyte involving a transfer of electrons between chemical components or between chemical components and an electrode"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5355,15 +5346,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_ae56cce3_7a7c_4e53_bb58_31e0d642d47e ; - owl:annotatedTarget "this flame front may originate from a spark or an external naked flame igniting combustible electrolysis gas"@en . + owl:annotatedTarget "vent of special design which provides protection against the propagation of a flame front from or into the interior of a secondary cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_ae56cce3_7a7c_4e53_bb58_31e0d642d47e ; - owl:annotatedTarget "vent of special design which provides protection against the propagation of a flame front from or into the interior of a secondary cell"@en . + owl:annotatedTarget "this flame front may originate from a spark or an external naked flame igniting combustible electrolysis gas"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5395,6 +5386,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_b525a629_a679_464f_bc5b_b49d2fc82686 ; owl:annotatedTarget "an electrochemical cell for conductivity measurements"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; + owl:annotatedTarget "by convention, cell electrode at which an oxidation reaction occurs"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5419,12 +5416,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; owl:annotatedTarget "the concepts of “anode” and “cathode” are related only to the direction of electron flow, not to the polarity of the electrodes"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; - owl:annotatedTarget "by convention, cell electrode at which an oxidation reaction occurs"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5433,15 +5424,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_b79d4f9e_5727_4895_8d7f_5fc18d83eb90 ; - owl:annotatedTarget "in a galvanic cell, parasitic reactions may cause inefficiencies or loss of performance"@en . + owl:annotatedTarget "an unwanted side reaction"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_b79d4f9e_5727_4895_8d7f_5fc18d83eb90 ; - owl:annotatedTarget "an unwanted side reaction"@en . + owl:annotatedTarget "in a galvanic cell, parasitic reactions may cause inefficiencies or loss of performance"@en . [] a owl:Axiom ; dcterms:source "IEEE Standard Glossary of Stationary Battery Terminology (2016), https://doi.org/10.1109/IEEESTD.2016.7552407" ; @@ -5481,12 +5472,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_bbae1ef4_0a95_4e7d_9932_1bf939129eef ; owl:annotatedTarget "current-potential curve in a voltammetry experiment"@en . -[] a owl:Axiom ; - dcterms:source "https://en.wikipedia.org/wiki/Square_wave" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0e33278b_639f_412d_9abd_64c3790026ef ; - owl:annotatedTarget "Periodic potential where the amplitude alternates at a steady frequency between fixed minimum and maximum values, with the same duration at minimum and maximum."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5500,10 +5485,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "part which insures insulation between the plate (electrode) edges and adjacent plates (electrodes) and the container side walls"@en . [] a owl:Axiom ; + dcterms:source "https://en.wikipedia.org/wiki/Square_wave" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d ; - owl:annotatedTarget "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedSource :electrochemistry_0e33278b_639f_412d_9abd_64c3790026ef ; + owl:annotatedTarget "Periodic potential where the amplitude alternates at a steady frequency between fixed minimum and maximum values, with the same duration at minimum and maximum."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5535,12 +5520,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_c3f4b34a_0e2c_46f3_baab_4ebd2682d26f ; owl:annotatedTarget "An ionic liquid is an electrolyte composed of a salt that is liquid below 100 °C. Ionic liquids have found uses in electrochemical analysis, because their unconventional properties include a negligible vapor pressure, a high thermal and electrochemical stability, and exceptional dissolution properties for both organic and inorganic chemical species."@en . -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; - owl:annotatedTarget "Electron conductor in an electrochemical cell connected to the external circuit."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5553,6 +5532,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_c55ec02c_b727_4df1_97ce_91d7bb5d5e91 ; owl:annotatedTarget "unplanned escape of electrolyte, gas or other material from a cell or battery"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_c610d869_cc03_44f0_b40d_ca86e945b9c9 ; + owl:annotatedTarget "cell from which electrolyte cannot escape regardless of its orientation"@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5562,8 +5547,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_c610d869_cc03_44f0_b40d_ca86e945b9c9 ; - owl:annotatedTarget "cell from which electrolyte cannot escape regardless of its orientation"@en . + owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; + owl:annotatedTarget "electronically conductive part in electric contact with a medium of lower electronic conductivity and intended to perform one or more of the functions of emitting charge carriers to or receiving charge carriers from that medium or to establish an electric field in that medium"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5579,21 +5564,21 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; - owl:annotatedTarget "by convention, an oxidation reaction occurs during discharge"@en . + owl:annotatedTarget "for a device having two electrodes, that electrode having the lower electric potential"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; - owl:annotatedTarget "electronically conductive part in electric contact with a medium of lower electronic conductivity and intended to perform one or more of the functions of emitting charge carriers to or receiving charge carriers from that medium or to establish an electric field in that medium"@en . + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; + owl:annotatedTarget "by convention, an oxidation reaction occurs during discharge"@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; - owl:annotatedTarget "for a device having two electrodes, that electrode having the lower electric potential"@en . + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; + owl:annotatedTarget "Electron conductor in an electrochemical cell connected to the external circuit."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5604,8 +5589,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0f827b54_370d_4c63_99a6_80f13b24e55e ; - owl:annotatedTarget "evolution of gas resulting from electrolysis of the water in the electrolyte of a cell"@en . + owl:annotatedSource :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; + owl:annotatedTarget "set of operations that is carried out on a secondary cell or battery and is repeated regularly in the same sequence."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5622,14 +5607,14 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; - owl:annotatedTarget "set of operations that is carried out on a secondary cell or battery and is repeated regularly in the same sequence."@en . + owl:annotatedSource :electrochemistry_d5da9948_e95b_4f12_a2d2_10a48f390c52 ; + owl:annotatedTarget "arrangement of cells or batteries wherein parallel connected cells or batteries are connected in series."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_d5da9948_e95b_4f12_a2d2_10a48f390c52 ; - owl:annotatedTarget "arrangement of cells or batteries wherein parallel connected cells or batteries are connected in series."@en . + owl:annotatedSource :electrochemistry_0f827b54_370d_4c63_99a6_80f13b24e55e ; + owl:annotatedTarget "evolution of gas resulting from electrolysis of the water in the electrolyte of a cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5655,18 +5640,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_df78745e_f9db_4830_88f0_8ce074fcb8ff ; owl:annotatedTarget "liquid metal electrode used in polarography"@en . +[] a owl:Axiom ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; + owl:annotatedTarget "electrochemical cell in which chemical reactions occur spontaneously and chemical energy is converted into electrical energy."@en . + [] a owl:Axiom ; dcterms:references "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; owl:annotatedTarget "An electrochemical cell that spontaneously produces work."@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_113e0469_8ae0_407f_892d_4b988f8d8a08 ; - owl:annotatedTarget "electrochemical cell that has two half-cells separated by a wall permeable to ions, both containing the same electrolyte differing only in their temperatures."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5674,16 +5659,22 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "Electrochemical cell intended to produce electric energy."@en . [] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; - owl:annotatedTarget "electrochemical cell in which chemical reactions occur spontaneously and chemical energy is converted into electrical energy."@en . + owl:annotatedSource :electrochemistry_e2a1dae1_05e4_4bd1_a39d_0eb10db482bc ; + owl:annotatedTarget "method of separating and neutralizing ions by an electric current in an electrolytic cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e2a1dae1_05e4_4bd1_a39d_0eb10db482bc ; - owl:annotatedTarget "method of separating and neutralizing ions by an electric current in an electrolytic cell"@en . + owl:annotatedSource :electrochemistry_113e0469_8ae0_407f_892d_4b988f8d8a08 ; + owl:annotatedTarget "electrochemical cell that has two half-cells separated by a wall permeable to ions, both containing the same electrolyte differing only in their temperatures."@en . + +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; + owl:annotatedTarget "electrochemical cell intended to produce chemical reactions"@en . [] a owl:Axiom ; dcterms:references "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; @@ -5697,18 +5688,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; owl:annotatedTarget "Electrochemical cell in which electrical energy is converted into chemical energy."@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; - owl:annotatedTarget "electrochemical cell intended to produce chemical reactions"@en . - -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_1152ae6b_8b57_4d99_912e_40c6a29342fb ; - owl:annotatedTarget "mass m of electrochemically-transformed substance is proportional to the charge Q passed, m ∝ Q."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5721,6 +5700,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_ec1dce8b_bb46_41a9_b532_6bed381aa557 ; owl:annotatedTarget "secondary cell having a cover provided with an opening through which products of electrolysis and evaporation are allowed to escape freely from the cell to the atmosphere"@en . +[] a owl:Axiom ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_1152ae6b_8b57_4d99_912e_40c6a29342fb ; + owl:annotatedTarget "mass m of electrochemically-transformed substance is proportional to the charge Q passed, m ∝ Q."@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5739,12 +5724,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f0c24970_4c14_4207_bd78_5f2181a67085 ; owl:annotatedTarget "the process of forming a film or a bulk material using an electrochemical process where the electrons are supplied by an external power supply"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_1355816f_a2b5_4800_8001_fc888f5d6b1b ; - owl:annotatedTarget "instrument intended to measure the value of a voltage."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5757,6 +5736,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f47611a2_e081_47f0_b287_3fda5f706154 ; owl:annotatedTarget "chemical reaction which occurs in addition to the main process"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; + owl:annotatedTarget "electrode reaction in which reduction occurs at the cathode"@en . + +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_1355816f_a2b5_4800_8001_fc888f5d6b1b ; + owl:annotatedTarget "instrument intended to measure the value of a voltage."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5769,12 +5760,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; owl:annotatedTarget "electrode reaction, where the energy of electrons in the working electrode is higher than the LUMO orbital of the substrate"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; - owl:annotatedTarget "electrode reaction in which reduction occurs at the cathode"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5782,10 +5767,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "electrode that responds to one, or more than one, species in the solution being investigated, with no appreciable change of bulk solution composition during the measurement"@en . [] a owl:Axiom ; - dcterms:source "IUPAC. Compendium of Chemical Terminology, 2nd ed. (the \"Gold Book\"). Compiled by A. D. McNaught and A. Wilkinson. Blackwell Scientific Publications, Oxford (1997). Online version (2019-) created by S. J. Chalk. ISBN 0-9678550-9-8. https://doi.org/10.1351/goldbook." ; + dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_15325775_6d4c_4192_82f1_e4feca9de426 ; - owl:annotatedTarget "A membrane having ion-exchange groups:"@en . + owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; + owl:annotatedTarget "a material in which the mobile species are ions and free movement of electrons is blocked."@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5799,18 +5784,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; owl:annotatedTarget "liquid or solid substance containing mobile ions that render it conductive"@en . +[] a owl:Axiom ; + dcterms:source "IUPAC. Compendium of Chemical Terminology, 2nd ed. (the \"Gold Book\"). Compiled by A. D. McNaught and A. Wilkinson. Blackwell Scientific Publications, Oxford (1997). Online version (2019-) created by S. J. Chalk. ISBN 0-9678550-9-8. https://doi.org/10.1351/goldbook." ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_15325775_6d4c_4192_82f1_e4feca9de426 ; + owl:annotatedTarget "A membrane having ion-exchange groups:"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; owl:annotatedTarget "substance that provides ions on dissolution in a solvent or on melting"@en . -[] a owl:Axiom ; - dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; - owl:annotatedTarget "a material in which the mobile species are ions and free movement of electrons is blocked."@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5823,18 +5808,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_fb9bf7cb_dd4b_4391_99a1_628263dd6940 ; owl:annotatedTarget "measuring instrument to obtain the electrical charge passed in an experiment, or to produce a known amount of substance in a titration."@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; - owl:annotatedTarget "Electrolyte solution in the cathodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the cathode is placed."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; owl:annotatedTarget "electrolyte on the cathode side of an electrochemical cell that is divided into compartments."@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; + owl:annotatedTarget "Electrolyte solution in the cathodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the cathode is placed."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5931,18 +5916,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_2d32a81a_2148_41bd_84fb_467aa8de4a8f ; owl:annotatedTarget "foil, wire, disc, or mesh electrode made of platinum, which is the most commonly used metallic working electrode in electrochemistry"@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; - owl:annotatedTarget "An interfacial reaction that necessarily involves a charge-transfer step."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; owl:annotatedTarget "electrochemical reaction involving the transfer of electrons between electrolyte and electrode"@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; + owl:annotatedTarget "An interfacial reaction that necessarily involves a charge-transfer step."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5957,15 +5942,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_328c6e36_3706_4d92_abae_432fa3adb2a0 ; - owl:annotatedTarget "a cell baffle has a second function in protecting the plate pack from damage by objects inserted through the filling hole"@en . + owl:annotatedTarget "internal component used to reduce the amount of electrolyte loss due to electrolyte spray being carried in the gas and/or by electrolyte movement"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_328c6e36_3706_4d92_abae_432fa3adb2a0 ; - owl:annotatedTarget "internal component used to reduce the amount of electrolyte loss due to electrolyte spray being carried in the gas and/or by electrolyte movement"@en . + owl:annotatedTarget "a cell baffle has a second function in protecting the plate pack from damage by objects inserted through the filling hole"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5979,6 +5964,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_34bc54e3_de4c_41f8_8d3a_d77c951ee23a ; owl:annotatedTarget "needle-like or tree-like formation of crystalline growth formed during deposition of a material"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; + owl:annotatedTarget "by convention, cell electrode at which, a reduction reaction occurs"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5997,12 +5988,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; owl:annotatedTarget "the concepts of “anode” and “cathode” are related only to the direction of electron flow, not to the polarity of the electrodes"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; - owl:annotatedTarget "by convention, cell electrode at which, a reduction reaction occurs"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -6023,15 +6008,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_3f6c9e09_5f23_41cc_9f85_7de365cef089 ; - owl:annotatedTarget "electrolyte creep is sometimes indicated by the presence of a visible solid deposit or wet spots"@en . + owl:annotatedTarget "gradual and slow spreading of an electrolyte film on the external surface of a cell or battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_3f6c9e09_5f23_41cc_9f85_7de365cef089 ; - owl:annotatedTarget "gradual and slow spreading of an electrolyte film on the external surface of a cell or battery"@en . + owl:annotatedTarget "electrolyte creep is sometimes indicated by the presence of a visible solid deposit or wet spots"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -6041,9 +6026,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_04f28ce3_251d_429e_aa85_ab3eb45bbcd2 ; - owl:annotatedTarget "in lithium batteries thermal runaway may cause melting of lithium"@en . + owl:annotatedTarget "unstable condition arising during constant voltage charge in which the rate of heat dissipation capability, causing a continuous temperature increase with resulting further charge current increase, which can lead to the destruction of the battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -6077,9 +6062,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_04f28ce3_251d_429e_aa85_ab3eb45bbcd2 ; - owl:annotatedTarget "unstable condition arising during constant voltage charge in which the rate of heat dissipation capability, causing a continuous temperature increase with resulting further charge current increase, which can lead to the destruction of the battery"@en . + owl:annotatedTarget "in lithium batteries thermal runaway may cause melting of lithium"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; diff --git a/versions/v0.7.0-alpha/context/context.json b/versions/v0.7.0-alpha/context/context.json index ac1b0bb..2006ca7 100644 --- a/versions/v0.7.0-alpha/context/context.json +++ b/versions/v0.7.0-alpha/context/context.json @@ -1076,7 +1076,6 @@ "ButlerVolmerEquation": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d48ea516_5cac_4f86_bc88_21b6276c0938", "C": "https://w3id.org/emmo#EMMO_36a9bf69_483b_42fd_8a0c_7ac9206320bc", "CASRN": "https://w3id.org/emmo#EMMO_d2a47cd8_662f_438f_855a_b4378eb992ff", - "CCCVCycling": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e", "CPlusPlus": "https://w3id.org/emmo#EMMO_64aba1e5_24b7_4140_8eb4_676c35698e79", "CRate": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_e1fd84eb_acdb_4b2c_b90c_e899d552a3ee", "CSharp": "https://w3id.org/emmo#EMMO_268a8a97_3a6f_4022_93da_962a66827cdc", @@ -1285,7 +1284,7 @@ "CoatingThickness": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3b938708_e7e4_4ac0_a959_9c04306302e7", "Cobalt": "https://w3id.org/emmo/domain/chemical-substance#substance_8f857eb2_7cc8_4294_954d_e69f2842c084", "CobaltAtom": "https://w3id.org/emmo#EMMO_3fe9d899_f1f1_5657_b176_ac6afff2e93d", - "CobaltBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_838c115b_6bc9_4ce8_9f8d_86a6bf67742a", + "CobaltBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7b811780_7251_481b_a4d3_97d437955099", "CobaltHydroxide": "https://w3id.org/emmo/domain/chemical-substance#substance_29b1c15d_2632_40d7_88f7_43575b68b988", "CobaltIIAcetate": "https://w3id.org/emmo/domain/chemical-substance#substance_4310c690_9810_4a95_8d62_7e78e0b84437", "CobaltIIBistrifluoromethanesulfonylimide": "https://w3id.org/emmo/domain/chemical-substance#substance_f4dffee2_c642_4114_a748_5e93b3908380", @@ -1358,6 +1357,7 @@ "ConstantCurrentCharging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_83f2b1e9_cb67_4dbf_977f_ba54bbae374f", "ConstantCurrentChargingCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_37c38b7e_9ded_481a_85fd_a467f1ee2b9f", "ConstantCurrentConstantVoltageCharging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0cc8f231_0ce5_467e_9c76_29b2c80349ad", + "ConstantCurrentConstantVoltageCycling": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e", "ConstantCurrentDischarging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_53fe3f58_0802_41cf_af69_4784fc42cc30", "ConstantCurrentDischargingCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_08833ed2_6324_411a_b34b_fe64c44cd5ef", "ConstantPotentialPulses": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_84d37a37_88bd_47db_9425_31f73a81d38c", @@ -1590,7 +1590,7 @@ "DeviceTemperature": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_463950b9_fd8d_48de_a52d_b29cab026391", "DewPointTemperature": "https://w3id.org/emmo#EMMO_a383e332_a271_463f_9e44_559604547220", "Diameter": "https://w3id.org/emmo#EMMO_c1c8ac3c_8a1c_4777_8e0b_14c1f9f9b0c6", - "Dichloromethane": "https://w3id.org/emmo/domain/chemical-substance#substance_8385c3c4_5906_48f6_b6b6_4bb60dccc27a", + "Dichloromethane": "https://w3id.org/emmo/domain/chemical-substance#substance_a6feec60_5fe7_4687_b427_3bf2ed06008d", "DieCasting": "https://w3id.org/emmo#EMMO_a85d0b8a_588e_423f_b799_97b0890e9183", "DielectricAndImpedanceSpectroscopy": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#DielectricAndImpedanceSpectroscopy", "Dielectrometry": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Dielectrometry", @@ -1624,7 +1624,7 @@ "Dimethoxyethane": "https://w3id.org/emmo/domain/chemical-substance#substance_b6ecabf9_14a4_4808_a139_55329e70ad42", "Dimethoxymethane": "https://w3id.org/emmo/domain/chemical-substance#substance_21954b0b_c05c_42db_b276_3a931d8aabb1", "DimethylCarbonate": "https://w3id.org/emmo/domain/chemical-substance#substance_c4a7d7bd_497e_457e_b858_ff73254266d0", - "DimethylSulfoxide": "https://w3id.org/emmo/domain/chemical-substance#substance_b593b5dd_7957_4b85_856a_dd59775210b6", + "DimethylSulfoxide": "https://w3id.org/emmo/domain/chemical-substance#substance_ea68e1a4_6be8_4686_8701_ba88b40d00b7", "Dimethylformamide": "https://w3id.org/emmo/domain/chemical-substance#substance_769bdc09_f533_4fde_bb53_20339d5bfcb7", "Dimethylpropyleneurea": "https://w3id.org/emmo/domain/chemical-substance#substance_945c68da_3baf_4da6_b794_dca7aebc4ca7", "Dimethylsulfate": "https://w3id.org/emmo/domain/chemical-substance#substance_3c8fb431_7d9d_4a89_a494_708df34f44d3", @@ -1837,7 +1837,7 @@ "ElectronicModel": "https://w3id.org/emmo#EMMO_6eca09be_17e9_445e_abc9_000aa61b7a11", "ElectronvoltPerMetre": "https://w3id.org/emmo#ElectronvoltPerMetre", "Electroosmosis": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_5641910f_6e69_4ce4_be84_4b1bf14b8916", - "Electroplating": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e", + "Electroplating": "https://w3id.org/emmo#EMMO_30e3edb5_0977_4b9b_9aed_5a4d16c1c07c", "ElementalMaterial": "https://w3id.org/emmo#EMMO_a086af15_a7c3_404c_b4ce_c8e4466f1b4b", "ElementalSubstance": "https://w3id.org/emmo#EMMO_436b11bd_1756_4821_9f14_c9ed6b67552e", "ElementaryBoson": "https://w3id.org/emmo#EMMO_cafd0f10_ce85_48b9_9a36_2b0af141ce21", @@ -2192,11 +2192,12 @@ "ISQBaseQuantity": "https://w3id.org/emmo#EMMO_1a4c1a97_88a7_4d8e_b2f9_2ca58e92dde4", "ISQDerivedQuantity": "https://w3id.org/emmo#EMMO_2946d40b_24a1_47fa_8176_e3f79bb45064", "ISQDimensionlessQuantity": "https://w3id.org/emmo#EMMO_a66427d1_9932_4363_9ec5_7d91f2bfda1e", - "IUPACName": "https://w3id.org/emmo#EMMO_16a3bd5c_75f0_42b3_b000_cb0d018f840e", + "IUPACName": "https://w3id.org/emmo#EMMO_f652e7d2_0b33_4d10_8d0f_2f70089982ba", "IUPACNomencalture": "https://w3id.org/emmo#EMMO_91a0635a_a89a_46de_8928_04a777d145c7", "Icon": "https://w3id.org/emmo#EMMO_d7788d1a_020d_4c78_85a1_13563fcec168", "Illuminance": "https://w3id.org/emmo#EMMO_b51fbd00_a857_4132_9711_0ef70e7bdd20", "IlluminanceTimeUnit": "https://w3id.org/emmo#EMMO_e467cc3f_676c_432e_b70e_19237d1bcc78", + "ImaginaryElectricImpedance": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626", "Impedimetry": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Impedimetry", "InChI": "https://w3id.org/emmo#EMMO_d74ed682_894f_46c5_87cb_167f60926965", "IncreasingPotentialPulses": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_77be01ef_49bd_4f2e_bec8_eec0894b8562", @@ -2288,7 +2289,7 @@ "IridiumSymbol": "https://w3id.org/emmo#EMMO_b8aab013_b729_51f1_bc14_5302e7f97cbe", "Iron": "https://w3id.org/emmo/domain/chemical-substance#substance_89fd13e8_8061_41da_83f4_634144116425", "IronAtom": "https://w3id.org/emmo#EMMO_a4839f08_1080_53bf_9cb3_101e20c2656b", - "IronBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_cc4e178c_bc1f_4502_b6c2_33f304ef6bab", + "IronBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_5e1136d3_df00_40f7_a4bc_8259341053a1", "IronDisulfide": "https://w3id.org/emmo/domain/chemical-substance#substance_c728b6b9_449a_45ff_b5ae_6b7968708f0d", "IronDisulfideElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d2726dd5_69f0_4cb1_bd3c_4c48813e57e7", "IronIIIHydroxide": "https://w3id.org/emmo/domain/chemical-substance#substance_323a2e39_d7d5_4802_884a_9aa41a280986", @@ -2556,6 +2557,7 @@ "LossFactor": "https://w3id.org/emmo#EMMO_c3796906_8063_47d4_92af_890ae08f25fa", "LowPressureCasting": "https://w3id.org/emmo#EMMO_8b2fd84c_8f51_4731_9bd7_830545e78b23", "LowerCriticalMagneticFluxDensity": "https://w3id.org/emmo#EMMO_fd4a6307_f9f7_4b54_b044_caa04e620232", + "LowerCurrentLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea", "LowerFrequencyLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_b66d6553_6136_4754_902a_707e414210c2", "LowerVoltageLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_534dd59c_904c_45d9_8550_ae9d2eb6bbc9", "Lumen": "https://w3id.org/emmo#Lumen", @@ -2608,7 +2610,7 @@ "MagnesiumTriflate": "https://w3id.org/emmo/domain/chemical-substance#substance_df24fad8_7ef0_4330_a3f2_c4d65d9a3be8", "MagnesiumTrifluoromethanesulfonyloxalatoborate": "https://w3id.org/emmo/domain/chemical-substance#substance_2b7473ba_9156_489a_880f_3a2f746cd104", "MagneticDipoleMoment": "https://w3id.org/emmo#EMMO_81e767f1_59b1_4d7a_bf69_17f322241831", - "MagneticDipoleMomentUnit": "https://w3id.org/emmo#EMMO_5073dc80_aec2_4a3b_8057_fababfcbfe11", + "MagneticDipoleMomentUnit": "https://w3id.org/emmo#EMMO_1c2226a9_22f0_40c8_8928_5a01d398f96e", "MagneticFieldStrength": "https://w3id.org/emmo#EMMO_b4895f75_41c8_4fd9_b6d6_4d5f7c99c423", "MagneticFieldStrengthUnit": "https://w3id.org/emmo#EMMO_e6b83139_ba92_4fbd_a8b2_c8dde55844a1", "MagneticFlux": "https://w3id.org/emmo#EMMO_3b931698_937e_49be_ab1b_36fa52d91181", @@ -2676,7 +2678,7 @@ "MassExcess": "https://w3id.org/emmo#EMMO_7dd84949_0afa_4313_9b89_7bb0dd2e7771", "MassFlow": "https://w3id.org/emmo#EMMO_6d61ee3c_c5b6_4452_bc11_e9c33af992a7", "MassFluxUnit": "https://w3id.org/emmo#EMMO_e35d4936_b2e3_4cd6_a437_f1c864b3d450", - "MassFraction": "https://w3id.org/emmo/disciplines/units/coherentsiunits#EMMO_089f13b1_ceb3_4d2a_8795_b4a2d92916da", + "MassFraction": "https://w3id.org/emmo#EMMO_7c055d65_2929_40e1_af4f_4bf10995ad50", "MassFractionOfDryMatter": "https://w3id.org/emmo#EMMO_8f171308_f902_42c5_ac1d_d5259022e9c1", "MassFractionOfWater": "https://w3id.org/emmo#EMMO_cac16ce6_2cef_405d_ac63_0f918db4875e", "MassFractionUnit": "https://w3id.org/emmo#EMMO_18448443_dcf1_49b8_a321_cf46e2c393e1", @@ -3027,6 +3029,7 @@ "NobeliumAtom": "https://w3id.org/emmo#EMMO_49eb0790_50c2_5691_a8bf_dfa6f4a9f6c7", "NobeliumSymbol": "https://w3id.org/emmo#EMMO_c1bb775c_0888_5b88_9cce_c49bae1d298b", "NobleGasElementalSubstance": "https://w3id.org/emmo/domain/chemical-substance#substance_cac14194_2d5f_4fe6_b794_a9319f6d76ee", + "NominalCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100", "NominalProperty": "https://w3id.org/emmo#EMMO_909415d1_7c43_4d5e_bbeb_7e1910159f66", "NominalVoltage": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_639b844a_e801_436b_985d_28926129ead6", "NonActivePower": "https://w3id.org/emmo#EMMO_83318add_d05e_40fc_93ea_c6cd605df437", @@ -3061,6 +3064,7 @@ "NumberOfFiniteVolumeCellsInX": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_e73586eb_8475_4879_a43e_087c702ea6bf", "NumberOfFiniteVolumeCellsInY": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_c2a85d02_c6b4_42df_b5ed_a9904ec34a5c", "NumberOfFiniteVolumeCellsInZ": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a5e00e3a_736c_4200_8d04_ed222fe07037", + "NumberOfIterations": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_88dd2bce_fb17_4705_905d_892681812290", "NumberOfTurnsInAWinding": "https://w3id.org/emmo#EMMO_eefaa0ef_e7d4_4633_bf79_655bb55f4a49", "Numeral": "https://w3id.org/emmo#EMMO_74b05aed_66bf_43c8_aa2c_752a9ca8be03", "Numerical": "https://w3id.org/emmo#EMMO_4ce76d7f_03f8_45b6_9003_90052a79bfaa", @@ -3211,7 +3215,7 @@ "Permittivity": "https://w3id.org/emmo#EMMO_0ee5779e_d798_4ee5_9bfe_c392d5bea112", "PermittivityUnit": "https://w3id.org/emmo#EMMO_5f89cb0c_3171_47ee_b2ab_027a07c34c4b", "Persistence": "https://w3id.org/emmo#EMMO_e04884d9_eda6_487e_93d5_7722d7eda96b", - "Person": "http://xmlns.com/foaf/0.1/Person", + "Person": "https://schema.org/Person", "Perspective": "https://w3id.org/emmo#EMMO_49267eba_5548_4163_8f36_518d65b583f9", "Peta": "https://w3id.org/emmo#EMMO_d7c74480_a568_4470_acff_f18b499cc850", "PetaPrefixedUnit": "https://w3id.org/emmo#EMMO_43a6b269_da31_4bb6_a537_c97df4fff32a", @@ -3298,7 +3302,7 @@ "Porosity": "https://w3id.org/emmo#EMMO_3a6578ac_aee0_43b9_9bc6_1eb208c8c9a9", "PorousElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3663991d_9319_4f7a_922b_f0e428b58801", "PorousSeparator": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_58413d4e_2885_459e_ac06_8d45e661cf91", - "PositionVector": "https://w3id.org/emmo#EMMO_4312cae4_03ba_457e_b35d_0671a7db350c", + "PositionVector": "https://w3id.org/emmo#EMMO_44da6d75_54a4_4aa8_bd3a_156f6e9abb8e", "PositiveElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_aff732a9_238a_4734_977c_b2ba202af126", "PositiveTerminal": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_522f0c0b_cf33_4328_af71_12e38dae6798", "Positron": "https://w3id.org/emmo#EMMO_26a38b26_38ea_4acf_b212_db9e34c71b7a", @@ -3483,7 +3487,7 @@ "R54215": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_fc9e7ba3_5084_4c2a_b488_c6a96af99232", "R616": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_dc019f3f_e5f3_4eeb_bab9_a845a02223a0", "R621": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_15ec346a_6d3c_4161_95e1_9cf889965f85", - "R626": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_68c1c36e_1548_4247_bae2_fe7102a2c4ff", + "R626": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6b275583_433f_46f7_aafd_ebc9409257cc", "R712": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_bb2faf17_b819_4876_b17f_fa82917cf85d", "R716": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_34cb7ea7_2436_46e0_806e_a3c7835ae228", "R721": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3279f575_1c62_4bf2_a6e8_de4c7ff36f8e", @@ -3535,6 +3539,7 @@ "ReactivePower": "https://w3id.org/emmo#EMMO_d8030875_6d89_4645_9728_bbc3b8690609", "ReactorTimeConstant": "https://w3id.org/emmo#EMMO_b03dfad7_eab8_4949_9d10_dd4fd12faaef", "Real": "https://w3id.org/emmo#EMMO_18d180e4_5e3e_42f7_820c_e08951223486", + "RealElectricImpedance": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f", "ReciprocalAmountPerVolumeUnit": "https://w3id.org/emmo#EMMO_aef218f9_6ded_4db9_9263_e78eed55e5d6", "ReciprocalCentiMetre": "https://w3id.org/emmo#ReciprocalCentiMetre", "ReciprocalCubicCentiMetre": "https://w3id.org/emmo#ReciprocalCubicCentiMetre", @@ -3637,6 +3642,7 @@ "ResponseTimeAtAnISE": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_1a104474_c326_4a29_ac26_26a05ac8f72c", "RestEnergy": "https://w3id.org/emmo#EMMO_5117c5fe_f661_46f8_83c3_b48947f1532a", "RestMass": "https://w3id.org/emmo#EMMO_3c947caf_4070_4c79_a3a3_e53274ac9944", + "Resting": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b", "RestingTime": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_2678a656_4a27_4706_8dde_b0a93e9b92fa", "ReversibleHydrogenElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0d9ba00d_04bc_4bdc_85af_3380694f6f68", "RevolutionPerMinute": "https://w3id.org/emmo#RevolutionPerMinute", @@ -3790,7 +3796,7 @@ "SiemensSquareMetrePerMole": "https://w3id.org/emmo#SiemensSquareMetrePerMole", "Sievert": "https://w3id.org/emmo#Sievert", "Sign": "https://w3id.org/emmo#EMMO_b21a56ed_f969_4612_a6ec_cb7766f7f31d", - "Signal": "https://w3id.org/emmo/domain/chameo#Signal", + "Signal": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Signal", "SignalReferencePotential": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_68059d94_4c21_4065_b329_07faeebc7e87", "Silicon": "https://w3id.org/emmo/domain/chemical-substance#substance_68c0876b_cb62_41cd_846d_95cc9d9a8733", "SiliconAtom": "https://w3id.org/emmo#EMMO_798b0c96_82ca_5ce8_8d5f_f9f72668cf5d", @@ -4318,6 +4324,7 @@ "UpQuark": "https://w3id.org/emmo#EMMO_0a3f04a6_ba3a_49d9_99da_08b0e26f51f0", "UpQuarkType": "https://w3id.org/emmo#EMMO_fc47b76f_ad01_4cd0_8fc6_55532000e7c8", "UpperCriticalMagneticFluxDensity": "https://w3id.org/emmo#EMMO_6bfe6ad2_96ba_4478_81e5_d8881c550757", + "UpperCurrentLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45", "UpperFrequencyLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_666f0b69_9c74_49a3_80b3_96a188332462", "UpperVoltageLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6dcd5baf_58cd_43f5_a692_51508e036c88", "UraniumAtom": "https://w3id.org/emmo#EMMO_b233f8c0_37d8_51ae_9264_560e6649e246", diff --git a/versions/v0.7.0-alpha/electrochemicalquantities.ttl b/versions/v0.7.0-alpha/electrochemicalquantities.ttl index 882a543..96cb275 100644 --- a/versions/v0.7.0-alpha/electrochemicalquantities.ttl +++ b/versions/v0.7.0-alpha/electrochemicalquantities.ttl @@ -24,8 +24,6 @@ emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f a owl:AnnotationProperty . emmo:EMMO_5c78b424_087b_4e31_8c91_6422f1be1e86 owl:equivalentClass :electrochemistry_9c657fdc_b9d3_4964_907c_f9a6e8c5f52b . -emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 :electrochemistry_097ea615_c209_4edd_a1a1_5eea71d98fe8 "acimp/ohms"@en . - emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry_37b24a94_cae0_4d7a_9519_9f7692dec607 ; skos:altLabel "MassDiffusivity"@en ; emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q604008"@en ; @@ -101,6 +99,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "D40ParticleSize"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 40% of the sample's particles fall."@en . +:electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626 a owl:Class ; + rdfs:label "ImaginaryElectricImpedance"@en ; + rdfs:comment "the imaginary part of the complex electric impedance"@en ; + rdfs:subClassOf emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 ; + skos:prefLabel "ImaginaryElectricImpedance"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the imaginary part of the complex electric impedance"@en . + :electrochemistry_02d2d1d1_241c_429b_b4e7_31f2c3dc4835 a owl:Class ; rdfs:label "D95ParticleSize"@en ; rdfs:comment "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 95% of the sample's particles fall."@en ; @@ -381,6 +386,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "D50ParticleSize"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 50% of the sample's particles fall."@en . +:electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45 a owl:Class ; + rdfs:label "UpperCurrentLimit"@en ; + rdfs:comment "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en ; + rdfs:subClassOf :electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 ; + skos:prefLabel "UpperCurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + :electrochemistry_3e54f9e3_a31d_4821_9bfb_ef953a42c35b a owl:Class ; rdfs:label "MaximumPulseDischargingCurrent"@en ; rdfs:comment "the maximum current approved for pulse discharge of an electrochemical device"@en ; @@ -608,6 +620,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "ChargingCurrent"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electric current applied to an electrochemical device during a charging process"@en . +:electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea a owl:Class ; + rdfs:label "LowerCurrentLimit"@en ; + rdfs:comment "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en ; + rdfs:subClassOf :electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 ; + skos:prefLabel "LowerCurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + :electrochemistry_7f073272_8925_4344_995c_a5a6dd1fcde6 a owl:Class ; rdfs:label "ChargingConstantCurrentPercentage"@en ; rdfs:comment "the percentage of the total charge capacity that is obtained during a constant current charge process"@en ; @@ -705,6 +724,20 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "DischargingSpecificCapacity"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "quotient of the capacity of a cell or battery [ or electrode or active material ] obtained during a discharge process by its mass."@en . +:electrochemistry_88dd2bce_fb17_4705_905d_892681812290 a owl:Class ; + rdfs:label "NumberOfIterations"@en ; + rdfs:comment "the number of times an iterative process should occur"@en ; + rdfs:subClassOf emmo:EMMO_ba882f34_0d71_4e4f_9d92_0c076c633a2c ; + skos:prefLabel "NumberOfIterations"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the number of times an iterative process should occur"@en . + +:electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100 a owl:Class ; + rdfs:label "NominalCapacity"@en ; + rdfs:comment "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en ; + rdfs:subClassOf :electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 ; + skos:prefLabel "NominalCapacity"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en . + :electrochemistry_8e943e12_ecc0_4093_899e_7226be6be7f2 a owl:Class ; rdfs:label "D90ParticleSize"@en ; rdfs:comment "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 90% of the sample's particles fall."@en ; @@ -820,6 +853,15 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the celsius temperature of the ambient environment"@en ; :electrochemistry_1b717a20_17e3_4480_8c60_c4ae94058f05 "Environmental_Temperature (C)"@en . +:electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f a owl:Class ; + rdfs:label "RealElectricImpedance"@en ; + rdfs:comment "the imaginary part of the complex electric impedance"@en ; + rdfs:subClassOf emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 ; + skos:altLabel "ACResistance"@en ; + skos:prefLabel "RealElectricImpedance"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q1048490"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the imaginary part of the complex electric impedance"@en . + :electrochemistry_ae108db7_8765_4329_9908_059277dee586 a owl:Class ; rdfs:label "StepCapacity"@en ; rdfs:comment "the amount of charge that has passed through an electrochemical device within the time interval of a given testing step"@en ; @@ -1084,8 +1126,8 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry ; dcterms:license "https://creativecommons.org/licenses/by/4.0/legalcode" ; owl:imports ; - owl:versionIRI ; - owl:versionInfo "0.17.0-beta" . + owl:versionIRI ; + owl:versionInfo "0.18.0-beta" . a owl:NamedIndividual, foaf:Person ; @@ -1866,6 +1908,8 @@ In either case, the magnitude of the catalytic current depends on the applied po emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electric potential of an ion-selective electrode (ISE) and activity of an analyte ion at which the potential of the ISE is independent of temperature"@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1351/goldbook.I03304"@en . +emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 :electrochemistry_097ea615_c209_4edd_a1a1_5eea71d98fe8 "acimp/ohms"@en . + emmo:EMMO_e218c625_6a39_47a9_8d08_a2ef41c152a9 rdfs:subClassOf :electrochemistry_02eb0465_4f94_453c_8c1f_5ddf80134634 ; skos:altLabel "GravimetricEnergyDensity"@en ; :electrochemistry_811aafc3_0c6d_470e_b67e_ff5c82992609 "CmpEng(mWh/g)"@en . @@ -1997,14 +2041,6 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog skos:prefLabel "TemperatureLimit"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the temperature of a system"@en . -:electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 a owl:Class ; - rdfs:label "RatedCapacity"@en ; - rdfs:comment "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en ; - rdfs:subClassOf :electrochemistry_791c1915_a791_4450_acd8_7f94764743b5 ; - skos:prefLabel "RatedCapacity"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-03-15"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en . - :electrochemistry_9ed7210c_c4fa_467b_822d_ba12f885bdf4 a owl:Class ; rdfs:label "ConcentrationOverpotential"@en ; rdfs:comment "The concentration overpotential of an electrode reaction at a given electrode current density (c.d.) is basically the difference in equilibrium potentials across the diffusion layer. More precisely, it is the potential of a reference electrode (of the same electrode reaction as the working electrode ) with the interfacial concentrations which establish themselves at c.d., relative to the potential of a similar reference electrode with the concentrations of the bulk solution. From such a measured potential difference, with c.d. flowing, one needs to subtract the ohmic potential drop prevailing between the two electrodes."@en, @@ -2110,6 +2146,14 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog skos:prefLabel "NumberOfFiniteVolumeCells"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "number of discrete finite volume cells in a grid or sub-grid"@en . +:electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 a owl:Class ; + rdfs:label "RatedCapacity"@en ; + rdfs:comment "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en ; + rdfs:subClassOf :electrochemistry_791c1915_a791_4450_acd8_7f94764743b5 ; + skos:prefLabel "RatedCapacity"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-03-15"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en . + :electrochemistry_cc519a19_b8d5_4e3f_b893_3a884888ad79 a owl:Class ; rdfs:label "MaximumTemperature"@en ; rdfs:comment "the maximum allowable temperature"@en ; @@ -2186,14 +2230,6 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa :electrochemistry_a07dd85b_d0df_4d5d_8b0c_14d20ea3fe45 "current"@en ; :electrochemistry_ea9f4dba_8ca2_419e_9cdf_ce54e9ebbd46 "Current (A)"@en . -:electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 a owl:Class ; - rdfs:label "CurrentLimit"@en ; - rdfs:comment "limit on the electric current of an electrical system"@en ; - rdfs:subClassOf emmo:EMMO_c995ae70_3b84_4ebb_bcfc_69e6a281bb88, - :electrochemistry_b395a244_3a75_4737_be38_981bfa1277fe ; - skos:prefLabel "CurrentLimit"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the electric current of an electrical system"@en . - :electrochemistry_900e357f_2ee3_425a_a0b6_322661117787 a owl:Class ; rdfs:label "ElectrochemicalProperty"@en ; rdfs:subClassOf emmo:EMMO_909415d1_7c43_4d5e_bbeb_7e1910159f66 ; @@ -2292,6 +2328,14 @@ foaf:Person a owl:Class ; emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Faradaic_current"@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://goldbook.iupac.org/terms/view/F02321"@en . +:electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 a owl:Class ; + rdfs:label "CurrentLimit"@en ; + rdfs:comment "limit on the electric current of an electrical system"@en ; + rdfs:subClassOf emmo:EMMO_c995ae70_3b84_4ebb_bcfc_69e6a281bb88, + :electrochemistry_b395a244_3a75_4737_be38_981bfa1277fe ; + skos:prefLabel "CurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the electric current of an electrical system"@en . + :electrochemistry_1cd1d777_e67b_47eb_81f1_edac35d9f2c6 a owl:Class ; rdfs:label "Overpotential"@en ; rdfs:comment "difference between the electrode potential with current flow, and the electrode potential without current flow, i.e. the equilibrium potential"@en, diff --git a/versions/v0.7.0-alpha/electrochemistry-inferred.ttl b/versions/v0.7.0-alpha/electrochemistry-inferred.ttl index f4fa0f9..c704a22 100644 --- a/versions/v0.7.0-alpha/electrochemistry-inferred.ttl +++ b/versions/v0.7.0-alpha/electrochemistry-inferred.ttl @@ -7,7 +7,7 @@ @base . rdf:type owl:Ontology ; - owl:versionIRI ; + owl:versionIRI ; ""@en , "CHAMEO is a domain ontology designed to model the common aspects across the different characterisation techniques and methodologies."@en , """Defines physical quantities in the International System of Quantities (ISQ). ISQ was made an official ISO standard in 2009 and is defined in the ISO/IEC 80000 standard. @@ -146,12 +146,12 @@ The symbolic module includes symbols, symbolic constructs and formal languages." "https://w3id.org/emmo/domain/characterisation-methodology/chameo" ; "2024-04-12" , "2024-06-23"^^xsd:date , - "2024-07-03"^^xsd:date ; + "2024-07-05"^^xsd:date ; "https://creativecommons.org/licenses/by/4.0/legalcode" , "https://creativecommons.org/licenses/by/4.0/legalcode"@en ; "2024-04-12" , "2024-06-23"^^xsd:date , - "2024-07-03"^^xsd:date ; + "2024-07-05"^^xsd:date ; "EMMC ASBL" , "EMMC ASBL"@en , """EMMC ASBL @@ -241,11 +241,11 @@ We kindly acknowledge NIST for reusing their content, including the selection of "You can contact EMMO Authors via emmo@emmc.eu"@en ; owl:backwardCompatibleWith "" , " " , - "0.16.0-beta" ; - owl:priorVersion "0.16.0-beta" , + "0.17.0-beta" ; + owl:priorVersion "0.17.0-beta" , "0.5.0-beta" , "1.0.0-beta2" ; - owl:versionInfo "0.17.0-beta" , + owl:versionInfo "0.18.0-beta" , "0.6.0-beta" , "1.0.0-beta3" , "1.0.0-beta7" ; @@ -2333,7 +2333,7 @@ While the EMMO FOL introduces the quantum causality relation C(x,y) as primitive rdf:type owl:ObjectProperty ; rdfs:subPropertyOf ; rdfs:domain ; - rdfs:range ; + rdfs:range ; "hasSolvent"@en . @@ -2364,7 +2364,7 @@ While the EMMO FOL introduces the quantum causality relation C(x,y) as primitive rdf:type owl:ObjectProperty ; rdfs:subPropertyOf ; rdfs:domain ; - rdfs:range ; + rdfs:range ; "hasSolute"@en . @@ -34532,7 +34532,7 @@ Wikipedia"""@en ; , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "ZincElectrode"@en ; "an electrode in which the main active material is zinc metal"@en ; @@ -34555,7 +34555,7 @@ Wikipedia"""@en ; rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "LithiumElectrode"@en ; "an electrode in which the active material is lithium metal" . @@ -44391,164 +44391,11 @@ Wear is defined as the progressive removal of the material from a solid surface "InChI=1S/Pb" . -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0139937b_2724_4864_84fb_f14bcfb83538 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0bdf0bb9_41fc_455d_af11_a249e24acdf6 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0f2f65a7_5cc4_4c86_a4d0_676771c646f1 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_250fa43e_1f26_4ed8_b787_91a2325a8e7b - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_25f6ff4c_53ad_4837_97c4_aa6f06099bb5 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_2a540939_3908_4f85_92f9_c46da7d4e9cb - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_2a87ca10_fc6a_4d61_b48c_d9790a566ee3 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_3899a9c9_9b34_443e_8ce6_0257589bb38a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_3ac62305_acd6_4312_9e31_4f824bd2530d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_4126ee09_b9c6_4694_bf33_0d8970e05f72 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_4c62d334_a124_40b3_9fd1_fe713d01a6af - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_5088ad54_b37d_4ee1_a086_d6c17e644f9a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_5cee19d2_f916_4264_a8ed_efed13a808d2 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_68c0876b_cb62_41cd_846d_95cc9d9a8733 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_68f9b85e_340f_46ec_96da_ebb6bd62f5fd - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_73d4606c_7460_4a5c_9413_793bdf35753e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_7dc738d6_74f2_489e_ae84_a6dbdf627f2e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_848003a2_71ee_4967_8039_354c907ec7f4 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_97439fbb_155f_433d_9edd_d510cd491f24 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_9bd78e1c_a4dc_41b6_8013_adb51df1ffdc - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_9da78aea_d436_40e2_a68f_c3dee32b825e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_aa8e9cc4_5f66_4307_b1c8_26fac7653a90 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_acdb232f_8041_4e11_8a11_5db2d2baae4d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_b01771a9_218a_4b01_b20f_4021cfa0b7d5 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_b3815a7f_f64a_48f6_b0ce_d0032578c699 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c109ca45_08c7_4436_a818_a9c575785e2f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c28a0967_ed23_48cc_a14e_a651d75a19db - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c5582dae_ccff_4fbe_adaa_078091054640 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c728b6b9_449a_45ff_b5ae_6b7968708f0d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_cd17ca33_ae3d_4738_8930_547673bf6c1f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_cdd18f0c_e7b3_4d09_b3dd_c09fe4b1adba - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_d53259a7_0d9c_48b9_a6c1_4418169df303 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_d673ceb2_3045_4e2e_8cad_56f5169b542f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_db74b6b7_09fc_40db_a7d5_6eb86b69192a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_dc5fb846_1824_40f8_9834_81f118aa1c2d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_dcdbdbed_2e20_40d1_a7a5_5761de7f0618 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_e1e6ff98_0725_4d27_ab21_2ca5a95371f0 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_e8fafdc8_6cd3_4dd0_9630_10ca8e3f1827 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_f3e7979a_e3ef_450a_8762_7d8778afe478 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_f7525766_90cf_43e9_8932_7cb3b14f676f - rdf:type owl:Class . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626 + rdf:type owl:Class ; + rdfs:subClassOf ; + "ImaginaryElectricImpedance"@en ; + "the imaginary part of the complex electric impedance"@en . ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_01260656_ac32_472e_9513_a607366538ec @@ -44872,11 +44719,11 @@ Wear is defined as the progressive removal of the material from a solid surface rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCLCOElectrode"@en ; @@ -45639,7 +45486,7 @@ and t* through mathematical models, provided that the long-time potential- deter , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LFPElectrode"@en ; @@ -46241,7 +46088,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "PtElectrode"@en ; "PlatinumElectrode"@en ; @@ -46343,7 +46190,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SiliconOxideGraphiteElectrode"@en ; @@ -46477,7 +46324,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "FTOElectrode"@en ; @@ -46500,7 +46347,7 @@ Aluminum foil"""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "NiOOHElectrode"@en , "NickelOxyhydroxideElectrode"@en ; @@ -46544,6 +46391,14 @@ Aluminum foil"""@en . "a coin case with a nominal diameter of 7.9 mm and a height of 1.65 mm"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b + rdf:type owl:Class ; + rdfs:subClassOf , + ; + "Resting"@en ; + "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 rdf:type owl:Class ; rdfs:subClassOf ; @@ -46811,6 +46666,13 @@ Aluminum foil"""@en . "A material relation in electrochemistry."@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45 + rdf:type owl:Class ; + rdfs:subClassOf ; + "UpperCurrentLimit"@en ; + "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3e54f9e3_a31d_4821_9bfb_ef953a42c35b rdf:type owl:Class ; rdfs:subClassOf , @@ -46981,7 +46843,7 @@ Aluminum foil"""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNMOElectrode"@en ; @@ -47201,11 +47063,11 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCLMOElectrode"@en ; @@ -47294,7 +47156,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumNickelPhosphateElectrode"@en ; @@ -47549,7 +47411,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumIronPhosphateElectrode"@en ; @@ -47904,7 +47766,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "CarbonMonofluorideElectrode"@en ; "electrode in which the active material is carbon monofluoride"@en ; @@ -48131,7 +47993,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "HardCarbonElectrode"@en ; "electrode in which the active material is hard carbon"@en . @@ -48291,7 +48153,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "SAE"@en ; "SolidAmalgamElectrode"@en ; @@ -48426,7 +48288,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LTOElectrode"@en ; @@ -48518,20 +48380,13 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ] . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "system that consists of at least two electron conductors (electrodes) in contact with ionic conductors (electrolytes)"@en ; - "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6fec8cc1_4e6c_428e_8343_6cf3c286a185 rdf:type owl:Class ; rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "AuElectrode"@en ; "GoldElectrode"@en ; @@ -48691,7 +48546,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NiOElectrode"@en ; @@ -48721,7 +48576,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "TiO2Electrode"@en ; @@ -48915,13 +48770,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ] . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "in secondary cells, the active material is restored to its original state during charge"@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - [ rdf:type owl:Axiom ; owl:annotatedSource ; owl:annotatedProperty ; @@ -48965,6 +48813,13 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s "an electrode in which the primary active material consists of caesium or caesium compounds"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea + rdf:type owl:Class ; + rdfs:subClassOf ; + "LowerCurrentLimit"@en ; + "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7f073272_8925_4344_995c_a5a6dd1fcde6 rdf:type owl:Class ; rdfs:subClassOf ; @@ -49118,7 +48973,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "LiquidGalliumElectrode"@en ; "a liquid electrode with an active material of gallium"@en . @@ -49188,7 +49043,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "ZnOElectrode"@en ; @@ -49446,6 +49301,13 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "an electrode in which the primary active material consists of sulfur or sulfur compounds"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_88dd2bce_fb17_4705_905d_892681812290 + rdf:type owl:Class ; + rdfs:subClassOf ; + "NumberOfIterations"@en ; + "the number of times an iterative process should occur"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8968eb7a_9a65_4286_a596_c31b998df329 rdf:type owl:Class ; rdfs:subClassOf ; @@ -49504,6 +49366,13 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "substance that increases chemical reaction speed, and which is conserved after the reaction"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100 + rdf:type owl:Class ; + rdfs:subClassOf ; + "NominalCapacity"@en ; + "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8b40856f_1ca2_4137_9616_7fb624671909 rdf:type owl:Class ; rdfs:subClassOf , @@ -50109,7 +49978,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumCobaltPhosphateElectrode"@en ; @@ -50298,13 +50167,6 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; "plate in which the active material is applied as a paste to a conductive current collector"@en . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "plate in which the active material is applied as a paste to a conductive current collector"@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a24f8581_a5a4_41a4_bb45_d0fdd5c0d810 rdf:type owl:Class ; @@ -50397,7 +50259,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "SilverOxideElectrode"@en ; "an electrode in which the primary active material consists of manganese dioxide or vmanganese dioxide compounds"@en ; @@ -50427,7 +50289,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "AgElectrode"@en ; "SilverElectrode"@en ; @@ -50662,7 +50524,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "CupricOxideElectrode"@en ; "CopperOxideElectrode"@en ; @@ -50751,6 +50613,15 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "Environmental_Temperature (C)"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f + rdf:type owl:Class ; + rdfs:subClassOf ; + "ACResistance"@en ; + "RealElectricImpedance"@en ; + "https://www.wikidata.org/wiki/Q1048490"@en ; + "the imaginary part of the complex electric impedance"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abfadc99_6e43_4d37_9b04_7fc5b0f327ae rdf:type owl:Class ; rdfs:subClassOf , @@ -50782,7 +50653,8 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e rdf:type owl:Class ; rdfs:subClassOf ; - "CCCVCycling"@en ; + "CCCVCycling"@en ; + "ConstantCurrentConstantVoltageCycling"@en ; "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en . @@ -51030,7 +50902,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCElectrode"@en ; @@ -51360,11 +51232,11 @@ of other configurations are used."""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNMOLFPElectrode"@en ; @@ -51466,13 +51338,6 @@ of other configurations are used."""@en . "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; "https://en.wikipedia.org/wiki/Fuel_cell"@en . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_bea04148_10d9_4eda_9cd5_8f609d7e9ff8 rdf:type owl:Class ; @@ -51568,7 +51433,7 @@ of other configurations are used."""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LMOElectrode"@en ; @@ -51751,11 +51616,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "ITO"@en ; @@ -51809,7 +51674,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "GraphiteElectrode"@en ; "electrode in which the active material is graphite"@en . @@ -51928,7 +51793,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "MnO2Electrode"@en ; "ManganeseDioxideElectrode"@en ; @@ -51943,7 +51808,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNOElectrode"@en ; @@ -51963,7 +51828,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "IrO2Electrode"@en ; @@ -51977,7 +51842,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumManganesePhosphateElectrode"@en ; @@ -52146,7 +52011,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "IronDisulfideElectrode"@en ; "an electrode in which the primary active material consists of iron disulfide or iron disulfide compounds."@en ; @@ -52509,7 +52374,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "HgElectrode"@en ; "MercuryElectrode"@en ; @@ -52785,11 +52650,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SiliconGraphiteElectrode"@en ; @@ -52802,7 +52667,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumManganeseOxideElectrode"@en ; @@ -53004,7 +52869,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumCobaltOxideElectrode"@en ; @@ -53096,7 +52961,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NCAElectrode"@en ; @@ -53315,7 +53180,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "PbOElectrode"@en ; @@ -53401,7 +53266,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumChromiumOxideElectrode"@en ; @@ -53621,7 +53486,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LCOElectrode"@en ; @@ -53672,11 +53537,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LMOLFPElectrode"@en ; @@ -53808,10 +53673,10 @@ In either case, the magnitude of the catalytic current depends on the applied po "The universe is considered as a causally self-connected object, encompassing all other objects. For this reason is unique."@en . -[ owl:qualifiedCardinality "3"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "3"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "4"^^xsd:nonNegativeInteger @@ -53835,10 +53700,10 @@ In either case, the magnitude of the catalytic current depends on the applied po [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:minQualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:minQualifiedCardinality "2"^^xsd:nonNegativeInteger +[ owl:minQualifiedCardinality "1"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger @@ -53850,7 +53715,7 @@ In either case, the magnitude of the catalytic current depends on the applied po [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:minQualifiedCardinality "2"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger diff --git a/versions/v0.7.0-alpha/electrochemistry.ttl b/versions/v0.7.0-alpha/electrochemistry.ttl index baa1206..d442e3c 100644 --- a/versions/v0.7.0-alpha/electrochemistry.ttl +++ b/versions/v0.7.0-alpha/electrochemistry.ttl @@ -1,6 +1,6 @@ @prefix : . @prefix bibo: . -@prefix chemsub: . +@prefix chemsub: . @prefix dcterms: . @prefix emmo: . @prefix foaf: . @@ -54,9 +54,9 @@ schema:name a owl:AnnotationProperty . dcterms:created "2022-11-25"^^xsd:date ; dcterms:creator , ; - dcterms:issued "2024-07-03"^^xsd:date ; + dcterms:issued "2024-07-05"^^xsd:date ; dcterms:license "https://creativecommons.org/licenses/by/4.0/legalcode" ; - dcterms:modified "2024-07-03"^^xsd:date ; + dcterms:modified "2024-07-05"^^xsd:date ; dcterms:publisher "EMMO" ; dcterms:source , , @@ -67,13 +67,13 @@ schema:name a owl:AnnotationProperty . bibo:status "unstable" ; vann:preferredNamespacePrefix "echem" ; vann:preferredNamespaceUri "https://w3id.org/emmo/domain/electrochemistry" ; - owl:backwardCompatibleWith "0.16.0-beta" ; + owl:backwardCompatibleWith "0.17.0-beta" ; owl:imports , , - ; - owl:priorVersion "0.16.0-beta" ; - owl:versionIRI ; - owl:versionInfo "0.17.0-beta" ; + ; + owl:priorVersion "0.17.0-beta" ; + owl:versionIRI ; + owl:versionInfo "0.18.0-beta" ; foaf:logo "https://raw.githubusercontent.com/emmo-repo/domain-electrochemistry/gh-pages/assets/img/fig/png/domain-electrochemistry-logo.png" . :electrochemistry_027d437e_3bbf_4eda_940b_e509f8d2b993 a owl:Class ; @@ -535,6 +535,14 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "R716" ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a coin case with a nominal diameter of 7.9 mm and a height of 1.65 mm"@en . +:electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b a owl:Class ; + rdfs:label "Resting"@en ; + rdfs:comment "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en ; + rdfs:subClassOf , + :electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 ; + skos:prefLabel "Resting"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en . + :electrochemistry_36444184_1100_4271_869f_7f2d983aaecb a owl:Class ; rdfs:label "P45173115" ; rdfs:comment "a prismatic case with a nominal length of 45 mm, width of 173 mm, and height of 115 mm"@en ; @@ -1564,6 +1572,15 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "TinBasedElectrode"@en ; emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "an electrode in which the primary active material consists of tin or tin compounds"@en . +:electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c a owl:Class ; + rdfs:label "PastedPlate"@en ; + rdfs:comment "plate in which the active material is applied as a paste to a conductive current collector"@en ; + rdfs:subClassOf :electrochemistry_92147e31_d015_4889_a092_04fbab033f15 ; + skos:altLabel "PastedElectrode"@en ; + skos:prefLabel "PastedPlate"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "plate in which the active material is applied as a paste to a conductive current collector"@en . + :electrochemistry_a277e420_2483_44d5_a2bc_4e421dea231a a owl:Class ; rdfs:label "R926" ; rdfs:comment "a coin case with a nominal diameter of 9.5 mm and a height of 2.6 mm"@en ; @@ -1658,10 +1675,11 @@ schema:name a owl:AnnotationProperty . emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a coin case with a nominal diameter of 11.6 mm and a height of 4.2 mm"@en . :electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e a owl:Class ; - rdfs:label "CCCVCycling"@en ; + rdfs:label "ConstantCurrentConstantVoltageCycling"@en ; rdfs:comment "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en ; rdfs:subClassOf :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; - skos:prefLabel "CCCVCycling"@en ; + skos:altLabel "CCCVCycling"@en ; + skos:prefLabel "ConstantCurrentConstantVoltageCycling"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en . :electrochemistry_ad9cdad6_66e8_471e_a7c6_b79f37c20814 a owl:Class ; @@ -1783,6 +1801,17 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "P20100141" ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a prismatic case with a nominal length of 20 mm, width of 100 mm, and height of 141 mm"@en . +:electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d a owl:Class ; + rdfs:label "FuelCell"@en ; + rdfs:comment "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; + rdfs:subClassOf :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; + skos:prefLabel "FuelCell"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q180253"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-05"@en ; + emmo:EMMO_6dd685dd_1895_46e4_b227_be9f7d643c25 "https://dbpedia.org/page/Fuel_cell"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; + emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Fuel_cell"@en . + :electrochemistry_bea04148_10d9_4eda_9cd5_8f609d7e9ff8 a owl:Class ; rdfs:label "CelsiusTemperatureMeasurement"@en ; rdfs:comment "measurement of temperature"@en ; @@ -3335,15 +3364,6 @@ schema:name a owl:AnnotationProperty . "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-26"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "interface between an electrolyte and an electrode where an electrode reaction takes place."@en . -:electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c a owl:Class ; - rdfs:label "PastedPlate"@en ; - rdfs:comment "plate in which the active material is applied as a paste to a conductive current collector"@en ; - rdfs:subClassOf :electrochemistry_92147e31_d015_4889_a092_04fbab033f15 ; - skos:altLabel "PastedElectrode"@en ; - skos:prefLabel "PastedPlate"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "plate in which the active material is applied as a paste to a conductive current collector"@en . - :electrochemistry_a462859d_d8bd_48ea_8bde_1576f1248a1e a owl:Class ; rdfs:label "SilverElectrode"@en ; rdfs:comment "electrode in the form of foil, mesh, wire, rod, tube, powder, pellets, or single crystal of silver"@en ; @@ -3459,17 +3479,6 @@ of other configurations are used."""@en . emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-19"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "part which insures insulation between the plate (electrode) edges and adjacent plates (electrodes) and the container side walls"@en . -:electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d a owl:Class ; - rdfs:label "FuelCell"@en ; - rdfs:comment "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - rdfs:subClassOf :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; - skos:prefLabel "FuelCell"@en ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q180253"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-05"@en ; - emmo:EMMO_6dd685dd_1895_46e4_b227_be9f7d643c25 "https://dbpedia.org/page/Fuel_cell"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Fuel_cell"@en . - :electrochemistry_bed5b5f9_b89d_45e3_a8c2_81b70ae21847 a owl:Class ; rdfs:label "SeriesParallelConnection"@en ; rdfs:comment "arrangement of cells or batteries wherein in series connected cells or batteries are connected in parallel."@en ; @@ -4518,15 +4527,20 @@ schema:Person a owl:Class ; skos:prefLabel "BimetallicOxideElectrode"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "an electrode consisting of two metal oxide active materials"@en . -:electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 a owl:Class ; - rdfs:label "GalvanostaticProcess"@en ; - rdfs:comment "a process in which the electric current is kept constant"@en ; - rdfs:subClassOf [ a owl:Restriction ; - owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; - owl:someValuesFrom :electrochemistry_22725105_c941_4b14_a4a2_fcb627958607 ], - :electrochemistry_5548f188_df00_4c05_ae98_7846e92efe36 ; - skos:prefLabel "GalvanostaticProcess"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a process in which the electric current is kept constant"@en . +:electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 a owl:Class ; + rdfs:label "ActiveMaterial"@en ; + rdfs:comment "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; + rdfs:subClassOf :electrochemistry_b5ea31c9_bb10_4276_980e_c3eceb1efc82, + :electrochemistry_ebdb68e9_c4b5_4d57_a042_c0f51d446755 ; + skos:altLabel "ActiveElectrochemicalMaterial"@en, + "ElectrochemicallyActiveMaterial"@en ; + skos:prefLabel "ActiveMaterial"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q120907375" ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-33", + "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-14"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; + emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "material which reacts chemically to produce electric energy when the cell discharges", + "in secondary cells, the active material is restored to its original state during charge"@en . :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 a owl:Class ; rdfs:label "PotentiometricStrippingAnalysis"@en ; @@ -4601,20 +4615,15 @@ schema:Person a owl:Class ; "The electrode (or interfacial) reaction involves all the processes (chemical reaction, structural reorganization, adsorption) accompanying the charge transfer step."@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1351/goldbook.E01960"@en . -:electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 a owl:Class ; - rdfs:label "ActiveMaterial"@en ; - rdfs:comment "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; - rdfs:subClassOf :electrochemistry_b5ea31c9_bb10_4276_980e_c3eceb1efc82, - :electrochemistry_ebdb68e9_c4b5_4d57_a042_c0f51d446755 ; - skos:altLabel "ActiveElectrochemicalMaterial"@en, - "ElectrochemicallyActiveMaterial"@en ; - skos:prefLabel "ActiveMaterial"@en ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q120907375" ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-33", - "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-14"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "material which reacts chemically to produce electric energy when the cell discharges", - "in secondary cells, the active material is restored to its original state during charge"@en . +:electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 a owl:Class ; + rdfs:label "GalvanostaticProcess"@en ; + rdfs:comment "a process in which the electric current is kept constant"@en ; + rdfs:subClassOf [ a owl:Restriction ; + owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; + owl:someValuesFrom :electrochemistry_22725105_c941_4b14_a4a2_fcb627958607 ], + :electrochemistry_5548f188_df00_4c05_ae98_7846e92efe36 ; + skos:prefLabel "GalvanostaticProcess"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a process in which the electric current is kept constant"@en . :electrochemistry_8a1c9a7b_978c_4421_a9c1_d0b07b42aab9 a owl:Class ; rdfs:label "ChemicalReaction"@en ; @@ -4953,9 +4962,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "extremely resistant to many chemicals, impermeable to gases and liquids, and has good electrical conductivity, high hardness and strength, and biocompatibility"@en . + owl:annotatedTarget "electrode made of glassy carbon material with an intertwined graphitic ribbon structure, formed by pyrolysis of a resol precursor at temperatures up to 3000 °C"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -4976,28 +4985,22 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "A disc electrode that is embedded in the centre of a cylinder which rotates in solution around the longitudinal cylinder axis."@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "composite system in which the supplied electric energy mainly produces chemical reactions or, conversely, in which the energy released by chemical reactions is mainly delivered by the system as electric energy"@en . + owl:annotatedTarget "a system containing two electrodes that allow transport of electrons, separated by an electrolyte that allows movement of ions but blocks movement of electrons."@en . [] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "system that consists of at least two electron conductors (electrodes) in contact with ionic conductors (electrolytes)"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" . + owl:annotatedTarget "composite system in which the supplied electric energy mainly produces chemical reactions or, conversely, in which the energy released by chemical reactions is mainly delivered by the system as electric energy"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "glassy carbon combines glass-like mechanical characteristics with physical properties similar to graphite, owing to its “graphene ribbon” structure"@en . - -[] a owl:Axiom ; - dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "a system containing two electrodes that allow transport of electrons, separated by an electrolyte that allows movement of ions but blocks movement of electrons."@en . + owl:annotatedTarget "extremely resistant to many chemicals, impermeable to gases and liquids, and has good electrical conductivity, high hardness and strength, and biocompatibility"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5033,13 +5036,13 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "one of the most frequently used working electrodes"@en . + owl:annotatedTarget "glassy carbon combines glass-like mechanical characteristics with physical properties similar to graphite, owing to its “graphene ribbon” structure"@en . [] a owl:Axiom ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; - owl:annotatedTarget "in secondary cells, the active material is restored to its original state during charge"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedTarget "material that is oxidized or reduced at an electrode in an electrochemical cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5047,12 +5050,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; owl:annotatedTarget "material which reacts chemically to produce electric energy when the cell discharges" . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; - owl:annotatedTarget "material that is oxidized or reduced at an electrode in an electrochemical cell"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5061,9 +5058,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "electrode made of glassy carbon material with an intertwined graphitic ribbon structure, formed by pyrolysis of a resol precursor at temperatures up to 3000 °C"@en . + owl:annotatedTarget "one of the most frequently used working electrodes"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5083,18 +5080,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_83f2b1e9_cb67_4dbf_977f_ba54bbae374f ; owl:annotatedTarget "charge during which the electric current is maintained at a constant value regardless of the battery voltage or temperature"@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; - owl:annotatedTarget "Electrolyte solution in the anodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the anode is placed."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; owl:annotatedTarget "electrolyte on the anode side of an electrochemical cell that is divided into compartments"@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; + owl:annotatedTarget "Electrolyte solution in the anodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the anode is placed."@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5133,15 +5130,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_8d3bf304_78e4_4e99_abe1_6ab429e44ed1 ; - owl:annotatedTarget "a sealed cell may be equipped with a safety device to prevent a dangerously high internal pressure and is designed to operate during its life in its original sealed state"@en . + owl:annotatedTarget "cell which remains closed and does not release either gas or liquid when operated within the limits specified by the manufacturer"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_8d3bf304_78e4_4e99_abe1_6ab429e44ed1 ; - owl:annotatedTarget "cell which remains closed and does not release either gas or liquid when operated within the limits specified by the manufacturer"@en . + owl:annotatedTarget "a sealed cell may be equipped with a safety device to prevent a dangerously high internal pressure and is designed to operate during its life in its original sealed state"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5150,10 +5147,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "capacitor consisting of a metallic plate as first conductor, a very thin oxide film formed on the metal as the dielectric and an electrolyte as second conductor"@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_06d8e1ee_924a_4915_998d_33a69f41dadc ; - owl:annotatedTarget "operation during which an electrochemical cell supplies electric energy as the result of chemical changes within the cell"@en . + owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; + owl:annotatedTarget "two-step electrochemical measurement in which 1) material is accumulated at an electrode and 2) the material is removed by chemical reaction or electrochemically at constant current with measurement of electrode potential"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5161,6 +5158,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; owl:annotatedTarget "historically for the analysis of metal ions, mercury ions were added to the test solution to form a mercury amalgam when reduced. Alternatively, an HMDE or MFE was used and the oxidizing agent added after amalgam formation. However, the toxicity of mercury and its compounds have all but precluded the present-day use of mercury"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_06d8e1ee_924a_4915_998d_33a69f41dadc ; + owl:annotatedTarget "operation during which an electrochemical cell supplies electric energy as the result of chemical changes within the cell"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5179,12 +5182,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; owl:annotatedTarget "the time between changes in potential in step 2 is related to the concentration of analyte in the solution"@en . -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; - owl:annotatedTarget "two-step electrochemical measurement in which 1) material is accumulated at an electrode and 2) the material is removed by chemical reaction or electrochemically at constant current with measurement of electrode potential"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5211,15 +5208,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_9ee6e728_e8f5_4b36_a045_d63da69dfc85 ; - owl:annotatedTarget "overcharge is also the act of charging beyond a certain limit specified by the manufacturer"@en . + owl:annotatedTarget "continued charging of a fully charged secondary cell or battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_9ee6e728_e8f5_4b36_a045_d63da69dfc85 ; - owl:annotatedTarget "continued charging of a fully charged secondary cell or battery"@en . + owl:annotatedTarget "overcharge is also the act of charging beyond a certain limit specified by the manufacturer"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5227,6 +5224,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_9f466223_e20a_474d_ac4d_6d4b6131c275 ; owl:annotatedTarget "an electrode that holds its potential essentially constant by efficiently allowing electric current to pass"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_a0580fa9_5073_44af_b33e_7adbc83892d0 ; + owl:annotatedTarget "electrode reaction in which oxidation occurs at the anode"@en . + [] a owl:Axiom ; dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5242,14 +5245,14 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0580fa9_5073_44af_b33e_7adbc83892d0 ; - owl:annotatedTarget "electrode reaction in which oxidation occurs at the anode"@en . + owl:annotatedSource :electrochemistry_a0a619d7_da95_41f0_8bc3_9c19d636d543 ; + owl:annotatedTarget "electrode that serves only as a source or sink for electrons without playing a chemical role in the electrode reaction"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0a619d7_da95_41f0_8bc3_9c19d636d543 ; - owl:annotatedTarget "electrode that serves only as a source or sink for electrons without playing a chemical role in the electrode reaction"@en . + owl:annotatedSource :electrochemistry_a0fcb105_587f_45d8_a89a_46dc8f745069 ; + owl:annotatedTarget "partial or complete external covering of a cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5260,14 +5263,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0fcb105_587f_45d8_a89a_46dc8f745069 ; - owl:annotatedTarget "partial or complete external covering of a cell"@en . - -[] a owl:Axiom ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c ; - owl:annotatedTarget "plate in which the active material is applied as a paste to a conductive current collector"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedSource :electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e ; + owl:annotatedTarget "process inside an electrolytic cell used to coat a conductive object with a layer of a material"@en . [] a owl:Axiom ; dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; @@ -5278,8 +5275,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e ; - owl:annotatedTarget "process inside an electrolytic cell used to coat a conductive object with a layer of a material"@en . + owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; + owl:annotatedTarget "component of a cell which permits the flow of gas in one direction only"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5287,12 +5284,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; owl:annotatedTarget "a valve has a characteristic venting or opening and closing pressure"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; - owl:annotatedTarget "component of a cell which permits the flow of gas in one direction only"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5305,6 +5296,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a462859d_d8bd_48ea_8bde_1576f1248a1e ; owl:annotatedTarget "electrode in the form of foil, mesh, wire, rod, tube, powder, pellets, or single crystal of silver"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; + owl:annotatedTarget "a chemical reaction in an electrolyte involving a transfer of electrons between chemical components or between chemical components and an electrode"@en . + [] a owl:Axiom ; dcterms:source "Bockris, J. O'M. and Despić, . Aleksandar R. (2011, December 15). Electrochemical reaction. Encyclopedia Britannica. https://www.britannica.com/science/electrochemical-reaction" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5317,12 +5314,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; owl:annotatedTarget "the electrode reaction can also involve other chemical reactions including subreactions on a cell electrode"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; - owl:annotatedTarget "a chemical reaction in an electrolyte involving a transfer of electrons between chemical components or between chemical components and an electrode"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5355,15 +5346,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_ae56cce3_7a7c_4e53_bb58_31e0d642d47e ; - owl:annotatedTarget "this flame front may originate from a spark or an external naked flame igniting combustible electrolysis gas"@en . + owl:annotatedTarget "vent of special design which provides protection against the propagation of a flame front from or into the interior of a secondary cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_ae56cce3_7a7c_4e53_bb58_31e0d642d47e ; - owl:annotatedTarget "vent of special design which provides protection against the propagation of a flame front from or into the interior of a secondary cell"@en . + owl:annotatedTarget "this flame front may originate from a spark or an external naked flame igniting combustible electrolysis gas"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5395,6 +5386,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_b525a629_a679_464f_bc5b_b49d2fc82686 ; owl:annotatedTarget "an electrochemical cell for conductivity measurements"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; + owl:annotatedTarget "by convention, cell electrode at which an oxidation reaction occurs"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5419,12 +5416,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; owl:annotatedTarget "the concepts of “anode” and “cathode” are related only to the direction of electron flow, not to the polarity of the electrodes"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; - owl:annotatedTarget "by convention, cell electrode at which an oxidation reaction occurs"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5433,15 +5424,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_b79d4f9e_5727_4895_8d7f_5fc18d83eb90 ; - owl:annotatedTarget "in a galvanic cell, parasitic reactions may cause inefficiencies or loss of performance"@en . + owl:annotatedTarget "an unwanted side reaction"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_b79d4f9e_5727_4895_8d7f_5fc18d83eb90 ; - owl:annotatedTarget "an unwanted side reaction"@en . + owl:annotatedTarget "in a galvanic cell, parasitic reactions may cause inefficiencies or loss of performance"@en . [] a owl:Axiom ; dcterms:source "IEEE Standard Glossary of Stationary Battery Terminology (2016), https://doi.org/10.1109/IEEESTD.2016.7552407" ; @@ -5481,12 +5472,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_bbae1ef4_0a95_4e7d_9932_1bf939129eef ; owl:annotatedTarget "current-potential curve in a voltammetry experiment"@en . -[] a owl:Axiom ; - dcterms:source "https://en.wikipedia.org/wiki/Square_wave" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0e33278b_639f_412d_9abd_64c3790026ef ; - owl:annotatedTarget "Periodic potential where the amplitude alternates at a steady frequency between fixed minimum and maximum values, with the same duration at minimum and maximum."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5500,10 +5485,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "part which insures insulation between the plate (electrode) edges and adjacent plates (electrodes) and the container side walls"@en . [] a owl:Axiom ; + dcterms:source "https://en.wikipedia.org/wiki/Square_wave" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d ; - owl:annotatedTarget "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedSource :electrochemistry_0e33278b_639f_412d_9abd_64c3790026ef ; + owl:annotatedTarget "Periodic potential where the amplitude alternates at a steady frequency between fixed minimum and maximum values, with the same duration at minimum and maximum."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5535,12 +5520,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_c3f4b34a_0e2c_46f3_baab_4ebd2682d26f ; owl:annotatedTarget "An ionic liquid is an electrolyte composed of a salt that is liquid below 100 °C. Ionic liquids have found uses in electrochemical analysis, because their unconventional properties include a negligible vapor pressure, a high thermal and electrochemical stability, and exceptional dissolution properties for both organic and inorganic chemical species."@en . -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; - owl:annotatedTarget "Electron conductor in an electrochemical cell connected to the external circuit."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5553,6 +5532,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_c55ec02c_b727_4df1_97ce_91d7bb5d5e91 ; owl:annotatedTarget "unplanned escape of electrolyte, gas or other material from a cell or battery"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_c610d869_cc03_44f0_b40d_ca86e945b9c9 ; + owl:annotatedTarget "cell from which electrolyte cannot escape regardless of its orientation"@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5562,8 +5547,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_c610d869_cc03_44f0_b40d_ca86e945b9c9 ; - owl:annotatedTarget "cell from which electrolyte cannot escape regardless of its orientation"@en . + owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; + owl:annotatedTarget "electronically conductive part in electric contact with a medium of lower electronic conductivity and intended to perform one or more of the functions of emitting charge carriers to or receiving charge carriers from that medium or to establish an electric field in that medium"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5579,21 +5564,21 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; - owl:annotatedTarget "by convention, an oxidation reaction occurs during discharge"@en . + owl:annotatedTarget "for a device having two electrodes, that electrode having the lower electric potential"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; - owl:annotatedTarget "electronically conductive part in electric contact with a medium of lower electronic conductivity and intended to perform one or more of the functions of emitting charge carriers to or receiving charge carriers from that medium or to establish an electric field in that medium"@en . + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; + owl:annotatedTarget "by convention, an oxidation reaction occurs during discharge"@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; - owl:annotatedTarget "for a device having two electrodes, that electrode having the lower electric potential"@en . + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; + owl:annotatedTarget "Electron conductor in an electrochemical cell connected to the external circuit."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5604,8 +5589,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0f827b54_370d_4c63_99a6_80f13b24e55e ; - owl:annotatedTarget "evolution of gas resulting from electrolysis of the water in the electrolyte of a cell"@en . + owl:annotatedSource :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; + owl:annotatedTarget "set of operations that is carried out on a secondary cell or battery and is repeated regularly in the same sequence."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5622,14 +5607,14 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; - owl:annotatedTarget "set of operations that is carried out on a secondary cell or battery and is repeated regularly in the same sequence."@en . + owl:annotatedSource :electrochemistry_d5da9948_e95b_4f12_a2d2_10a48f390c52 ; + owl:annotatedTarget "arrangement of cells or batteries wherein parallel connected cells or batteries are connected in series."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_d5da9948_e95b_4f12_a2d2_10a48f390c52 ; - owl:annotatedTarget "arrangement of cells or batteries wherein parallel connected cells or batteries are connected in series."@en . + owl:annotatedSource :electrochemistry_0f827b54_370d_4c63_99a6_80f13b24e55e ; + owl:annotatedTarget "evolution of gas resulting from electrolysis of the water in the electrolyte of a cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5655,18 +5640,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_df78745e_f9db_4830_88f0_8ce074fcb8ff ; owl:annotatedTarget "liquid metal electrode used in polarography"@en . +[] a owl:Axiom ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; + owl:annotatedTarget "electrochemical cell in which chemical reactions occur spontaneously and chemical energy is converted into electrical energy."@en . + [] a owl:Axiom ; dcterms:references "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; owl:annotatedTarget "An electrochemical cell that spontaneously produces work."@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_113e0469_8ae0_407f_892d_4b988f8d8a08 ; - owl:annotatedTarget "electrochemical cell that has two half-cells separated by a wall permeable to ions, both containing the same electrolyte differing only in their temperatures."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5674,16 +5659,22 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "Electrochemical cell intended to produce electric energy."@en . [] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; - owl:annotatedTarget "electrochemical cell in which chemical reactions occur spontaneously and chemical energy is converted into electrical energy."@en . + owl:annotatedSource :electrochemistry_e2a1dae1_05e4_4bd1_a39d_0eb10db482bc ; + owl:annotatedTarget "method of separating and neutralizing ions by an electric current in an electrolytic cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e2a1dae1_05e4_4bd1_a39d_0eb10db482bc ; - owl:annotatedTarget "method of separating and neutralizing ions by an electric current in an electrolytic cell"@en . + owl:annotatedSource :electrochemistry_113e0469_8ae0_407f_892d_4b988f8d8a08 ; + owl:annotatedTarget "electrochemical cell that has two half-cells separated by a wall permeable to ions, both containing the same electrolyte differing only in their temperatures."@en . + +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; + owl:annotatedTarget "electrochemical cell intended to produce chemical reactions"@en . [] a owl:Axiom ; dcterms:references "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; @@ -5697,18 +5688,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; owl:annotatedTarget "Electrochemical cell in which electrical energy is converted into chemical energy."@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; - owl:annotatedTarget "electrochemical cell intended to produce chemical reactions"@en . - -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_1152ae6b_8b57_4d99_912e_40c6a29342fb ; - owl:annotatedTarget "mass m of electrochemically-transformed substance is proportional to the charge Q passed, m ∝ Q."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5721,6 +5700,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_ec1dce8b_bb46_41a9_b532_6bed381aa557 ; owl:annotatedTarget "secondary cell having a cover provided with an opening through which products of electrolysis and evaporation are allowed to escape freely from the cell to the atmosphere"@en . +[] a owl:Axiom ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_1152ae6b_8b57_4d99_912e_40c6a29342fb ; + owl:annotatedTarget "mass m of electrochemically-transformed substance is proportional to the charge Q passed, m ∝ Q."@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5739,12 +5724,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f0c24970_4c14_4207_bd78_5f2181a67085 ; owl:annotatedTarget "the process of forming a film or a bulk material using an electrochemical process where the electrons are supplied by an external power supply"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_1355816f_a2b5_4800_8001_fc888f5d6b1b ; - owl:annotatedTarget "instrument intended to measure the value of a voltage."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5757,6 +5736,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f47611a2_e081_47f0_b287_3fda5f706154 ; owl:annotatedTarget "chemical reaction which occurs in addition to the main process"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; + owl:annotatedTarget "electrode reaction in which reduction occurs at the cathode"@en . + +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_1355816f_a2b5_4800_8001_fc888f5d6b1b ; + owl:annotatedTarget "instrument intended to measure the value of a voltage."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5769,12 +5760,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; owl:annotatedTarget "electrode reaction, where the energy of electrons in the working electrode is higher than the LUMO orbital of the substrate"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; - owl:annotatedTarget "electrode reaction in which reduction occurs at the cathode"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5782,10 +5767,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "electrode that responds to one, or more than one, species in the solution being investigated, with no appreciable change of bulk solution composition during the measurement"@en . [] a owl:Axiom ; - dcterms:source "IUPAC. Compendium of Chemical Terminology, 2nd ed. (the \"Gold Book\"). Compiled by A. D. McNaught and A. Wilkinson. Blackwell Scientific Publications, Oxford (1997). Online version (2019-) created by S. J. Chalk. ISBN 0-9678550-9-8. https://doi.org/10.1351/goldbook." ; + dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_15325775_6d4c_4192_82f1_e4feca9de426 ; - owl:annotatedTarget "A membrane having ion-exchange groups:"@en . + owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; + owl:annotatedTarget "a material in which the mobile species are ions and free movement of electrons is blocked."@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5799,18 +5784,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; owl:annotatedTarget "liquid or solid substance containing mobile ions that render it conductive"@en . +[] a owl:Axiom ; + dcterms:source "IUPAC. Compendium of Chemical Terminology, 2nd ed. (the \"Gold Book\"). Compiled by A. D. McNaught and A. Wilkinson. Blackwell Scientific Publications, Oxford (1997). Online version (2019-) created by S. J. Chalk. ISBN 0-9678550-9-8. https://doi.org/10.1351/goldbook." ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_15325775_6d4c_4192_82f1_e4feca9de426 ; + owl:annotatedTarget "A membrane having ion-exchange groups:"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; owl:annotatedTarget "substance that provides ions on dissolution in a solvent or on melting"@en . -[] a owl:Axiom ; - dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; - owl:annotatedTarget "a material in which the mobile species are ions and free movement of electrons is blocked."@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5823,18 +5808,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_fb9bf7cb_dd4b_4391_99a1_628263dd6940 ; owl:annotatedTarget "measuring instrument to obtain the electrical charge passed in an experiment, or to produce a known amount of substance in a titration."@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; - owl:annotatedTarget "Electrolyte solution in the cathodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the cathode is placed."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; owl:annotatedTarget "electrolyte on the cathode side of an electrochemical cell that is divided into compartments."@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; + owl:annotatedTarget "Electrolyte solution in the cathodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the cathode is placed."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5931,18 +5916,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_2d32a81a_2148_41bd_84fb_467aa8de4a8f ; owl:annotatedTarget "foil, wire, disc, or mesh electrode made of platinum, which is the most commonly used metallic working electrode in electrochemistry"@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; - owl:annotatedTarget "An interfacial reaction that necessarily involves a charge-transfer step."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; owl:annotatedTarget "electrochemical reaction involving the transfer of electrons between electrolyte and electrode"@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; + owl:annotatedTarget "An interfacial reaction that necessarily involves a charge-transfer step."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5957,15 +5942,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_328c6e36_3706_4d92_abae_432fa3adb2a0 ; - owl:annotatedTarget "a cell baffle has a second function in protecting the plate pack from damage by objects inserted through the filling hole"@en . + owl:annotatedTarget "internal component used to reduce the amount of electrolyte loss due to electrolyte spray being carried in the gas and/or by electrolyte movement"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_328c6e36_3706_4d92_abae_432fa3adb2a0 ; - owl:annotatedTarget "internal component used to reduce the amount of electrolyte loss due to electrolyte spray being carried in the gas and/or by electrolyte movement"@en . + owl:annotatedTarget "a cell baffle has a second function in protecting the plate pack from damage by objects inserted through the filling hole"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5979,6 +5964,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_34bc54e3_de4c_41f8_8d3a_d77c951ee23a ; owl:annotatedTarget "needle-like or tree-like formation of crystalline growth formed during deposition of a material"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; + owl:annotatedTarget "by convention, cell electrode at which, a reduction reaction occurs"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5997,12 +5988,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; owl:annotatedTarget "the concepts of “anode” and “cathode” are related only to the direction of electron flow, not to the polarity of the electrodes"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; - owl:annotatedTarget "by convention, cell electrode at which, a reduction reaction occurs"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -6023,15 +6008,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_3f6c9e09_5f23_41cc_9f85_7de365cef089 ; - owl:annotatedTarget "electrolyte creep is sometimes indicated by the presence of a visible solid deposit or wet spots"@en . + owl:annotatedTarget "gradual and slow spreading of an electrolyte film on the external surface of a cell or battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_3f6c9e09_5f23_41cc_9f85_7de365cef089 ; - owl:annotatedTarget "gradual and slow spreading of an electrolyte film on the external surface of a cell or battery"@en . + owl:annotatedTarget "electrolyte creep is sometimes indicated by the presence of a visible solid deposit or wet spots"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -6041,9 +6026,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_04f28ce3_251d_429e_aa85_ab3eb45bbcd2 ; - owl:annotatedTarget "in lithium batteries thermal runaway may cause melting of lithium"@en . + owl:annotatedTarget "unstable condition arising during constant voltage charge in which the rate of heat dissipation capability, causing a continuous temperature increase with resulting further charge current increase, which can lead to the destruction of the battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -6077,9 +6062,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_04f28ce3_251d_429e_aa85_ab3eb45bbcd2 ; - owl:annotatedTarget "unstable condition arising during constant voltage charge in which the rate of heat dissipation capability, causing a continuous temperature increase with resulting further charge current increase, which can lead to the destruction of the battery"@en . + owl:annotatedTarget "in lithium batteries thermal runaway may cause melting of lithium"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; diff --git a/versions/v0.8.0-alpha/context/context.json b/versions/v0.8.0-alpha/context/context.json index ac1b0bb..2006ca7 100644 --- a/versions/v0.8.0-alpha/context/context.json +++ b/versions/v0.8.0-alpha/context/context.json @@ -1076,7 +1076,6 @@ "ButlerVolmerEquation": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d48ea516_5cac_4f86_bc88_21b6276c0938", "C": "https://w3id.org/emmo#EMMO_36a9bf69_483b_42fd_8a0c_7ac9206320bc", "CASRN": "https://w3id.org/emmo#EMMO_d2a47cd8_662f_438f_855a_b4378eb992ff", - "CCCVCycling": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e", "CPlusPlus": "https://w3id.org/emmo#EMMO_64aba1e5_24b7_4140_8eb4_676c35698e79", "CRate": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_e1fd84eb_acdb_4b2c_b90c_e899d552a3ee", "CSharp": "https://w3id.org/emmo#EMMO_268a8a97_3a6f_4022_93da_962a66827cdc", @@ -1285,7 +1284,7 @@ "CoatingThickness": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3b938708_e7e4_4ac0_a959_9c04306302e7", "Cobalt": "https://w3id.org/emmo/domain/chemical-substance#substance_8f857eb2_7cc8_4294_954d_e69f2842c084", "CobaltAtom": "https://w3id.org/emmo#EMMO_3fe9d899_f1f1_5657_b176_ac6afff2e93d", - "CobaltBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_838c115b_6bc9_4ce8_9f8d_86a6bf67742a", + "CobaltBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7b811780_7251_481b_a4d3_97d437955099", "CobaltHydroxide": "https://w3id.org/emmo/domain/chemical-substance#substance_29b1c15d_2632_40d7_88f7_43575b68b988", "CobaltIIAcetate": "https://w3id.org/emmo/domain/chemical-substance#substance_4310c690_9810_4a95_8d62_7e78e0b84437", "CobaltIIBistrifluoromethanesulfonylimide": "https://w3id.org/emmo/domain/chemical-substance#substance_f4dffee2_c642_4114_a748_5e93b3908380", @@ -1358,6 +1357,7 @@ "ConstantCurrentCharging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_83f2b1e9_cb67_4dbf_977f_ba54bbae374f", "ConstantCurrentChargingCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_37c38b7e_9ded_481a_85fd_a467f1ee2b9f", "ConstantCurrentConstantVoltageCharging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0cc8f231_0ce5_467e_9c76_29b2c80349ad", + "ConstantCurrentConstantVoltageCycling": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e", "ConstantCurrentDischarging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_53fe3f58_0802_41cf_af69_4784fc42cc30", "ConstantCurrentDischargingCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_08833ed2_6324_411a_b34b_fe64c44cd5ef", "ConstantPotentialPulses": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_84d37a37_88bd_47db_9425_31f73a81d38c", @@ -1590,7 +1590,7 @@ "DeviceTemperature": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_463950b9_fd8d_48de_a52d_b29cab026391", "DewPointTemperature": "https://w3id.org/emmo#EMMO_a383e332_a271_463f_9e44_559604547220", "Diameter": "https://w3id.org/emmo#EMMO_c1c8ac3c_8a1c_4777_8e0b_14c1f9f9b0c6", - "Dichloromethane": "https://w3id.org/emmo/domain/chemical-substance#substance_8385c3c4_5906_48f6_b6b6_4bb60dccc27a", + "Dichloromethane": "https://w3id.org/emmo/domain/chemical-substance#substance_a6feec60_5fe7_4687_b427_3bf2ed06008d", "DieCasting": "https://w3id.org/emmo#EMMO_a85d0b8a_588e_423f_b799_97b0890e9183", "DielectricAndImpedanceSpectroscopy": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#DielectricAndImpedanceSpectroscopy", "Dielectrometry": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Dielectrometry", @@ -1624,7 +1624,7 @@ "Dimethoxyethane": "https://w3id.org/emmo/domain/chemical-substance#substance_b6ecabf9_14a4_4808_a139_55329e70ad42", "Dimethoxymethane": "https://w3id.org/emmo/domain/chemical-substance#substance_21954b0b_c05c_42db_b276_3a931d8aabb1", "DimethylCarbonate": "https://w3id.org/emmo/domain/chemical-substance#substance_c4a7d7bd_497e_457e_b858_ff73254266d0", - "DimethylSulfoxide": "https://w3id.org/emmo/domain/chemical-substance#substance_b593b5dd_7957_4b85_856a_dd59775210b6", + "DimethylSulfoxide": "https://w3id.org/emmo/domain/chemical-substance#substance_ea68e1a4_6be8_4686_8701_ba88b40d00b7", "Dimethylformamide": "https://w3id.org/emmo/domain/chemical-substance#substance_769bdc09_f533_4fde_bb53_20339d5bfcb7", "Dimethylpropyleneurea": "https://w3id.org/emmo/domain/chemical-substance#substance_945c68da_3baf_4da6_b794_dca7aebc4ca7", "Dimethylsulfate": "https://w3id.org/emmo/domain/chemical-substance#substance_3c8fb431_7d9d_4a89_a494_708df34f44d3", @@ -1837,7 +1837,7 @@ "ElectronicModel": "https://w3id.org/emmo#EMMO_6eca09be_17e9_445e_abc9_000aa61b7a11", "ElectronvoltPerMetre": "https://w3id.org/emmo#ElectronvoltPerMetre", "Electroosmosis": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_5641910f_6e69_4ce4_be84_4b1bf14b8916", - "Electroplating": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e", + "Electroplating": "https://w3id.org/emmo#EMMO_30e3edb5_0977_4b9b_9aed_5a4d16c1c07c", "ElementalMaterial": "https://w3id.org/emmo#EMMO_a086af15_a7c3_404c_b4ce_c8e4466f1b4b", "ElementalSubstance": "https://w3id.org/emmo#EMMO_436b11bd_1756_4821_9f14_c9ed6b67552e", "ElementaryBoson": "https://w3id.org/emmo#EMMO_cafd0f10_ce85_48b9_9a36_2b0af141ce21", @@ -2192,11 +2192,12 @@ "ISQBaseQuantity": "https://w3id.org/emmo#EMMO_1a4c1a97_88a7_4d8e_b2f9_2ca58e92dde4", "ISQDerivedQuantity": "https://w3id.org/emmo#EMMO_2946d40b_24a1_47fa_8176_e3f79bb45064", "ISQDimensionlessQuantity": "https://w3id.org/emmo#EMMO_a66427d1_9932_4363_9ec5_7d91f2bfda1e", - "IUPACName": "https://w3id.org/emmo#EMMO_16a3bd5c_75f0_42b3_b000_cb0d018f840e", + "IUPACName": "https://w3id.org/emmo#EMMO_f652e7d2_0b33_4d10_8d0f_2f70089982ba", "IUPACNomencalture": "https://w3id.org/emmo#EMMO_91a0635a_a89a_46de_8928_04a777d145c7", "Icon": "https://w3id.org/emmo#EMMO_d7788d1a_020d_4c78_85a1_13563fcec168", "Illuminance": "https://w3id.org/emmo#EMMO_b51fbd00_a857_4132_9711_0ef70e7bdd20", "IlluminanceTimeUnit": "https://w3id.org/emmo#EMMO_e467cc3f_676c_432e_b70e_19237d1bcc78", + "ImaginaryElectricImpedance": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626", "Impedimetry": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Impedimetry", "InChI": "https://w3id.org/emmo#EMMO_d74ed682_894f_46c5_87cb_167f60926965", "IncreasingPotentialPulses": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_77be01ef_49bd_4f2e_bec8_eec0894b8562", @@ -2288,7 +2289,7 @@ "IridiumSymbol": "https://w3id.org/emmo#EMMO_b8aab013_b729_51f1_bc14_5302e7f97cbe", "Iron": "https://w3id.org/emmo/domain/chemical-substance#substance_89fd13e8_8061_41da_83f4_634144116425", "IronAtom": "https://w3id.org/emmo#EMMO_a4839f08_1080_53bf_9cb3_101e20c2656b", - "IronBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_cc4e178c_bc1f_4502_b6c2_33f304ef6bab", + "IronBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_5e1136d3_df00_40f7_a4bc_8259341053a1", "IronDisulfide": "https://w3id.org/emmo/domain/chemical-substance#substance_c728b6b9_449a_45ff_b5ae_6b7968708f0d", "IronDisulfideElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d2726dd5_69f0_4cb1_bd3c_4c48813e57e7", "IronIIIHydroxide": "https://w3id.org/emmo/domain/chemical-substance#substance_323a2e39_d7d5_4802_884a_9aa41a280986", @@ -2556,6 +2557,7 @@ "LossFactor": "https://w3id.org/emmo#EMMO_c3796906_8063_47d4_92af_890ae08f25fa", "LowPressureCasting": "https://w3id.org/emmo#EMMO_8b2fd84c_8f51_4731_9bd7_830545e78b23", "LowerCriticalMagneticFluxDensity": "https://w3id.org/emmo#EMMO_fd4a6307_f9f7_4b54_b044_caa04e620232", + "LowerCurrentLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea", "LowerFrequencyLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_b66d6553_6136_4754_902a_707e414210c2", "LowerVoltageLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_534dd59c_904c_45d9_8550_ae9d2eb6bbc9", "Lumen": "https://w3id.org/emmo#Lumen", @@ -2608,7 +2610,7 @@ "MagnesiumTriflate": "https://w3id.org/emmo/domain/chemical-substance#substance_df24fad8_7ef0_4330_a3f2_c4d65d9a3be8", "MagnesiumTrifluoromethanesulfonyloxalatoborate": "https://w3id.org/emmo/domain/chemical-substance#substance_2b7473ba_9156_489a_880f_3a2f746cd104", "MagneticDipoleMoment": "https://w3id.org/emmo#EMMO_81e767f1_59b1_4d7a_bf69_17f322241831", - "MagneticDipoleMomentUnit": "https://w3id.org/emmo#EMMO_5073dc80_aec2_4a3b_8057_fababfcbfe11", + "MagneticDipoleMomentUnit": "https://w3id.org/emmo#EMMO_1c2226a9_22f0_40c8_8928_5a01d398f96e", "MagneticFieldStrength": "https://w3id.org/emmo#EMMO_b4895f75_41c8_4fd9_b6d6_4d5f7c99c423", "MagneticFieldStrengthUnit": "https://w3id.org/emmo#EMMO_e6b83139_ba92_4fbd_a8b2_c8dde55844a1", "MagneticFlux": "https://w3id.org/emmo#EMMO_3b931698_937e_49be_ab1b_36fa52d91181", @@ -2676,7 +2678,7 @@ "MassExcess": "https://w3id.org/emmo#EMMO_7dd84949_0afa_4313_9b89_7bb0dd2e7771", "MassFlow": "https://w3id.org/emmo#EMMO_6d61ee3c_c5b6_4452_bc11_e9c33af992a7", "MassFluxUnit": "https://w3id.org/emmo#EMMO_e35d4936_b2e3_4cd6_a437_f1c864b3d450", - "MassFraction": "https://w3id.org/emmo/disciplines/units/coherentsiunits#EMMO_089f13b1_ceb3_4d2a_8795_b4a2d92916da", + "MassFraction": "https://w3id.org/emmo#EMMO_7c055d65_2929_40e1_af4f_4bf10995ad50", "MassFractionOfDryMatter": "https://w3id.org/emmo#EMMO_8f171308_f902_42c5_ac1d_d5259022e9c1", "MassFractionOfWater": "https://w3id.org/emmo#EMMO_cac16ce6_2cef_405d_ac63_0f918db4875e", "MassFractionUnit": "https://w3id.org/emmo#EMMO_18448443_dcf1_49b8_a321_cf46e2c393e1", @@ -3027,6 +3029,7 @@ "NobeliumAtom": "https://w3id.org/emmo#EMMO_49eb0790_50c2_5691_a8bf_dfa6f4a9f6c7", "NobeliumSymbol": "https://w3id.org/emmo#EMMO_c1bb775c_0888_5b88_9cce_c49bae1d298b", "NobleGasElementalSubstance": "https://w3id.org/emmo/domain/chemical-substance#substance_cac14194_2d5f_4fe6_b794_a9319f6d76ee", + "NominalCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100", "NominalProperty": "https://w3id.org/emmo#EMMO_909415d1_7c43_4d5e_bbeb_7e1910159f66", "NominalVoltage": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_639b844a_e801_436b_985d_28926129ead6", "NonActivePower": "https://w3id.org/emmo#EMMO_83318add_d05e_40fc_93ea_c6cd605df437", @@ -3061,6 +3064,7 @@ "NumberOfFiniteVolumeCellsInX": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_e73586eb_8475_4879_a43e_087c702ea6bf", "NumberOfFiniteVolumeCellsInY": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_c2a85d02_c6b4_42df_b5ed_a9904ec34a5c", "NumberOfFiniteVolumeCellsInZ": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a5e00e3a_736c_4200_8d04_ed222fe07037", + "NumberOfIterations": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_88dd2bce_fb17_4705_905d_892681812290", "NumberOfTurnsInAWinding": "https://w3id.org/emmo#EMMO_eefaa0ef_e7d4_4633_bf79_655bb55f4a49", "Numeral": "https://w3id.org/emmo#EMMO_74b05aed_66bf_43c8_aa2c_752a9ca8be03", "Numerical": "https://w3id.org/emmo#EMMO_4ce76d7f_03f8_45b6_9003_90052a79bfaa", @@ -3211,7 +3215,7 @@ "Permittivity": "https://w3id.org/emmo#EMMO_0ee5779e_d798_4ee5_9bfe_c392d5bea112", "PermittivityUnit": "https://w3id.org/emmo#EMMO_5f89cb0c_3171_47ee_b2ab_027a07c34c4b", "Persistence": "https://w3id.org/emmo#EMMO_e04884d9_eda6_487e_93d5_7722d7eda96b", - "Person": "http://xmlns.com/foaf/0.1/Person", + "Person": "https://schema.org/Person", "Perspective": "https://w3id.org/emmo#EMMO_49267eba_5548_4163_8f36_518d65b583f9", "Peta": "https://w3id.org/emmo#EMMO_d7c74480_a568_4470_acff_f18b499cc850", "PetaPrefixedUnit": "https://w3id.org/emmo#EMMO_43a6b269_da31_4bb6_a537_c97df4fff32a", @@ -3298,7 +3302,7 @@ "Porosity": "https://w3id.org/emmo#EMMO_3a6578ac_aee0_43b9_9bc6_1eb208c8c9a9", "PorousElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3663991d_9319_4f7a_922b_f0e428b58801", "PorousSeparator": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_58413d4e_2885_459e_ac06_8d45e661cf91", - "PositionVector": "https://w3id.org/emmo#EMMO_4312cae4_03ba_457e_b35d_0671a7db350c", + "PositionVector": "https://w3id.org/emmo#EMMO_44da6d75_54a4_4aa8_bd3a_156f6e9abb8e", "PositiveElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_aff732a9_238a_4734_977c_b2ba202af126", "PositiveTerminal": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_522f0c0b_cf33_4328_af71_12e38dae6798", "Positron": "https://w3id.org/emmo#EMMO_26a38b26_38ea_4acf_b212_db9e34c71b7a", @@ -3483,7 +3487,7 @@ "R54215": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_fc9e7ba3_5084_4c2a_b488_c6a96af99232", "R616": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_dc019f3f_e5f3_4eeb_bab9_a845a02223a0", "R621": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_15ec346a_6d3c_4161_95e1_9cf889965f85", - "R626": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_68c1c36e_1548_4247_bae2_fe7102a2c4ff", + "R626": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6b275583_433f_46f7_aafd_ebc9409257cc", "R712": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_bb2faf17_b819_4876_b17f_fa82917cf85d", "R716": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_34cb7ea7_2436_46e0_806e_a3c7835ae228", "R721": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3279f575_1c62_4bf2_a6e8_de4c7ff36f8e", @@ -3535,6 +3539,7 @@ "ReactivePower": "https://w3id.org/emmo#EMMO_d8030875_6d89_4645_9728_bbc3b8690609", "ReactorTimeConstant": "https://w3id.org/emmo#EMMO_b03dfad7_eab8_4949_9d10_dd4fd12faaef", "Real": "https://w3id.org/emmo#EMMO_18d180e4_5e3e_42f7_820c_e08951223486", + "RealElectricImpedance": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f", "ReciprocalAmountPerVolumeUnit": "https://w3id.org/emmo#EMMO_aef218f9_6ded_4db9_9263_e78eed55e5d6", "ReciprocalCentiMetre": "https://w3id.org/emmo#ReciprocalCentiMetre", "ReciprocalCubicCentiMetre": "https://w3id.org/emmo#ReciprocalCubicCentiMetre", @@ -3637,6 +3642,7 @@ "ResponseTimeAtAnISE": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_1a104474_c326_4a29_ac26_26a05ac8f72c", "RestEnergy": "https://w3id.org/emmo#EMMO_5117c5fe_f661_46f8_83c3_b48947f1532a", "RestMass": "https://w3id.org/emmo#EMMO_3c947caf_4070_4c79_a3a3_e53274ac9944", + "Resting": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b", "RestingTime": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_2678a656_4a27_4706_8dde_b0a93e9b92fa", "ReversibleHydrogenElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0d9ba00d_04bc_4bdc_85af_3380694f6f68", "RevolutionPerMinute": "https://w3id.org/emmo#RevolutionPerMinute", @@ -3790,7 +3796,7 @@ "SiemensSquareMetrePerMole": "https://w3id.org/emmo#SiemensSquareMetrePerMole", "Sievert": "https://w3id.org/emmo#Sievert", "Sign": "https://w3id.org/emmo#EMMO_b21a56ed_f969_4612_a6ec_cb7766f7f31d", - "Signal": "https://w3id.org/emmo/domain/chameo#Signal", + "Signal": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Signal", "SignalReferencePotential": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_68059d94_4c21_4065_b329_07faeebc7e87", "Silicon": "https://w3id.org/emmo/domain/chemical-substance#substance_68c0876b_cb62_41cd_846d_95cc9d9a8733", "SiliconAtom": "https://w3id.org/emmo#EMMO_798b0c96_82ca_5ce8_8d5f_f9f72668cf5d", @@ -4318,6 +4324,7 @@ "UpQuark": "https://w3id.org/emmo#EMMO_0a3f04a6_ba3a_49d9_99da_08b0e26f51f0", "UpQuarkType": "https://w3id.org/emmo#EMMO_fc47b76f_ad01_4cd0_8fc6_55532000e7c8", "UpperCriticalMagneticFluxDensity": "https://w3id.org/emmo#EMMO_6bfe6ad2_96ba_4478_81e5_d8881c550757", + "UpperCurrentLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45", "UpperFrequencyLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_666f0b69_9c74_49a3_80b3_96a188332462", "UpperVoltageLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6dcd5baf_58cd_43f5_a692_51508e036c88", "UraniumAtom": "https://w3id.org/emmo#EMMO_b233f8c0_37d8_51ae_9264_560e6649e246", diff --git a/versions/v0.8.0-alpha/electrochemicalquantities.ttl b/versions/v0.8.0-alpha/electrochemicalquantities.ttl index 882a543..96cb275 100644 --- a/versions/v0.8.0-alpha/electrochemicalquantities.ttl +++ b/versions/v0.8.0-alpha/electrochemicalquantities.ttl @@ -24,8 +24,6 @@ emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f a owl:AnnotationProperty . emmo:EMMO_5c78b424_087b_4e31_8c91_6422f1be1e86 owl:equivalentClass :electrochemistry_9c657fdc_b9d3_4964_907c_f9a6e8c5f52b . -emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 :electrochemistry_097ea615_c209_4edd_a1a1_5eea71d98fe8 "acimp/ohms"@en . - emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry_37b24a94_cae0_4d7a_9519_9f7692dec607 ; skos:altLabel "MassDiffusivity"@en ; emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q604008"@en ; @@ -101,6 +99,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "D40ParticleSize"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 40% of the sample's particles fall."@en . +:electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626 a owl:Class ; + rdfs:label "ImaginaryElectricImpedance"@en ; + rdfs:comment "the imaginary part of the complex electric impedance"@en ; + rdfs:subClassOf emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 ; + skos:prefLabel "ImaginaryElectricImpedance"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the imaginary part of the complex electric impedance"@en . + :electrochemistry_02d2d1d1_241c_429b_b4e7_31f2c3dc4835 a owl:Class ; rdfs:label "D95ParticleSize"@en ; rdfs:comment "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 95% of the sample's particles fall."@en ; @@ -381,6 +386,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "D50ParticleSize"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 50% of the sample's particles fall."@en . +:electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45 a owl:Class ; + rdfs:label "UpperCurrentLimit"@en ; + rdfs:comment "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en ; + rdfs:subClassOf :electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 ; + skos:prefLabel "UpperCurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + :electrochemistry_3e54f9e3_a31d_4821_9bfb_ef953a42c35b a owl:Class ; rdfs:label "MaximumPulseDischargingCurrent"@en ; rdfs:comment "the maximum current approved for pulse discharge of an electrochemical device"@en ; @@ -608,6 +620,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "ChargingCurrent"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electric current applied to an electrochemical device during a charging process"@en . +:electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea a owl:Class ; + rdfs:label "LowerCurrentLimit"@en ; + rdfs:comment "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en ; + rdfs:subClassOf :electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 ; + skos:prefLabel "LowerCurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + :electrochemistry_7f073272_8925_4344_995c_a5a6dd1fcde6 a owl:Class ; rdfs:label "ChargingConstantCurrentPercentage"@en ; rdfs:comment "the percentage of the total charge capacity that is obtained during a constant current charge process"@en ; @@ -705,6 +724,20 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "DischargingSpecificCapacity"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "quotient of the capacity of a cell or battery [ or electrode or active material ] obtained during a discharge process by its mass."@en . +:electrochemistry_88dd2bce_fb17_4705_905d_892681812290 a owl:Class ; + rdfs:label "NumberOfIterations"@en ; + rdfs:comment "the number of times an iterative process should occur"@en ; + rdfs:subClassOf emmo:EMMO_ba882f34_0d71_4e4f_9d92_0c076c633a2c ; + skos:prefLabel "NumberOfIterations"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the number of times an iterative process should occur"@en . + +:electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100 a owl:Class ; + rdfs:label "NominalCapacity"@en ; + rdfs:comment "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en ; + rdfs:subClassOf :electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 ; + skos:prefLabel "NominalCapacity"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en . + :electrochemistry_8e943e12_ecc0_4093_899e_7226be6be7f2 a owl:Class ; rdfs:label "D90ParticleSize"@en ; rdfs:comment "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 90% of the sample's particles fall."@en ; @@ -820,6 +853,15 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the celsius temperature of the ambient environment"@en ; :electrochemistry_1b717a20_17e3_4480_8c60_c4ae94058f05 "Environmental_Temperature (C)"@en . +:electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f a owl:Class ; + rdfs:label "RealElectricImpedance"@en ; + rdfs:comment "the imaginary part of the complex electric impedance"@en ; + rdfs:subClassOf emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 ; + skos:altLabel "ACResistance"@en ; + skos:prefLabel "RealElectricImpedance"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q1048490"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the imaginary part of the complex electric impedance"@en . + :electrochemistry_ae108db7_8765_4329_9908_059277dee586 a owl:Class ; rdfs:label "StepCapacity"@en ; rdfs:comment "the amount of charge that has passed through an electrochemical device within the time interval of a given testing step"@en ; @@ -1084,8 +1126,8 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry ; dcterms:license "https://creativecommons.org/licenses/by/4.0/legalcode" ; owl:imports ; - owl:versionIRI ; - owl:versionInfo "0.17.0-beta" . + owl:versionIRI ; + owl:versionInfo "0.18.0-beta" . a owl:NamedIndividual, foaf:Person ; @@ -1866,6 +1908,8 @@ In either case, the magnitude of the catalytic current depends on the applied po emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electric potential of an ion-selective electrode (ISE) and activity of an analyte ion at which the potential of the ISE is independent of temperature"@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1351/goldbook.I03304"@en . +emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 :electrochemistry_097ea615_c209_4edd_a1a1_5eea71d98fe8 "acimp/ohms"@en . + emmo:EMMO_e218c625_6a39_47a9_8d08_a2ef41c152a9 rdfs:subClassOf :electrochemistry_02eb0465_4f94_453c_8c1f_5ddf80134634 ; skos:altLabel "GravimetricEnergyDensity"@en ; :electrochemistry_811aafc3_0c6d_470e_b67e_ff5c82992609 "CmpEng(mWh/g)"@en . @@ -1997,14 +2041,6 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog skos:prefLabel "TemperatureLimit"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the temperature of a system"@en . -:electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 a owl:Class ; - rdfs:label "RatedCapacity"@en ; - rdfs:comment "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en ; - rdfs:subClassOf :electrochemistry_791c1915_a791_4450_acd8_7f94764743b5 ; - skos:prefLabel "RatedCapacity"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-03-15"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en . - :electrochemistry_9ed7210c_c4fa_467b_822d_ba12f885bdf4 a owl:Class ; rdfs:label "ConcentrationOverpotential"@en ; rdfs:comment "The concentration overpotential of an electrode reaction at a given electrode current density (c.d.) is basically the difference in equilibrium potentials across the diffusion layer. More precisely, it is the potential of a reference electrode (of the same electrode reaction as the working electrode ) with the interfacial concentrations which establish themselves at c.d., relative to the potential of a similar reference electrode with the concentrations of the bulk solution. From such a measured potential difference, with c.d. flowing, one needs to subtract the ohmic potential drop prevailing between the two electrodes."@en, @@ -2110,6 +2146,14 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog skos:prefLabel "NumberOfFiniteVolumeCells"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "number of discrete finite volume cells in a grid or sub-grid"@en . +:electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 a owl:Class ; + rdfs:label "RatedCapacity"@en ; + rdfs:comment "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en ; + rdfs:subClassOf :electrochemistry_791c1915_a791_4450_acd8_7f94764743b5 ; + skos:prefLabel "RatedCapacity"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-03-15"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en . + :electrochemistry_cc519a19_b8d5_4e3f_b893_3a884888ad79 a owl:Class ; rdfs:label "MaximumTemperature"@en ; rdfs:comment "the maximum allowable temperature"@en ; @@ -2186,14 +2230,6 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa :electrochemistry_a07dd85b_d0df_4d5d_8b0c_14d20ea3fe45 "current"@en ; :electrochemistry_ea9f4dba_8ca2_419e_9cdf_ce54e9ebbd46 "Current (A)"@en . -:electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 a owl:Class ; - rdfs:label "CurrentLimit"@en ; - rdfs:comment "limit on the electric current of an electrical system"@en ; - rdfs:subClassOf emmo:EMMO_c995ae70_3b84_4ebb_bcfc_69e6a281bb88, - :electrochemistry_b395a244_3a75_4737_be38_981bfa1277fe ; - skos:prefLabel "CurrentLimit"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the electric current of an electrical system"@en . - :electrochemistry_900e357f_2ee3_425a_a0b6_322661117787 a owl:Class ; rdfs:label "ElectrochemicalProperty"@en ; rdfs:subClassOf emmo:EMMO_909415d1_7c43_4d5e_bbeb_7e1910159f66 ; @@ -2292,6 +2328,14 @@ foaf:Person a owl:Class ; emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Faradaic_current"@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://goldbook.iupac.org/terms/view/F02321"@en . +:electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 a owl:Class ; + rdfs:label "CurrentLimit"@en ; + rdfs:comment "limit on the electric current of an electrical system"@en ; + rdfs:subClassOf emmo:EMMO_c995ae70_3b84_4ebb_bcfc_69e6a281bb88, + :electrochemistry_b395a244_3a75_4737_be38_981bfa1277fe ; + skos:prefLabel "CurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the electric current of an electrical system"@en . + :electrochemistry_1cd1d777_e67b_47eb_81f1_edac35d9f2c6 a owl:Class ; rdfs:label "Overpotential"@en ; rdfs:comment "difference between the electrode potential with current flow, and the electrode potential without current flow, i.e. the equilibrium potential"@en, diff --git a/versions/v0.8.0-alpha/electrochemistry-inferred.ttl b/versions/v0.8.0-alpha/electrochemistry-inferred.ttl index f4fa0f9..c704a22 100644 --- a/versions/v0.8.0-alpha/electrochemistry-inferred.ttl +++ b/versions/v0.8.0-alpha/electrochemistry-inferred.ttl @@ -7,7 +7,7 @@ @base . rdf:type owl:Ontology ; - owl:versionIRI ; + owl:versionIRI ; ""@en , "CHAMEO is a domain ontology designed to model the common aspects across the different characterisation techniques and methodologies."@en , """Defines physical quantities in the International System of Quantities (ISQ). ISQ was made an official ISO standard in 2009 and is defined in the ISO/IEC 80000 standard. @@ -146,12 +146,12 @@ The symbolic module includes symbols, symbolic constructs and formal languages." "https://w3id.org/emmo/domain/characterisation-methodology/chameo" ; "2024-04-12" , "2024-06-23"^^xsd:date , - "2024-07-03"^^xsd:date ; + "2024-07-05"^^xsd:date ; "https://creativecommons.org/licenses/by/4.0/legalcode" , "https://creativecommons.org/licenses/by/4.0/legalcode"@en ; "2024-04-12" , "2024-06-23"^^xsd:date , - "2024-07-03"^^xsd:date ; + "2024-07-05"^^xsd:date ; "EMMC ASBL" , "EMMC ASBL"@en , """EMMC ASBL @@ -241,11 +241,11 @@ We kindly acknowledge NIST for reusing their content, including the selection of "You can contact EMMO Authors via emmo@emmc.eu"@en ; owl:backwardCompatibleWith "" , " " , - "0.16.0-beta" ; - owl:priorVersion "0.16.0-beta" , + "0.17.0-beta" ; + owl:priorVersion "0.17.0-beta" , "0.5.0-beta" , "1.0.0-beta2" ; - owl:versionInfo "0.17.0-beta" , + owl:versionInfo "0.18.0-beta" , "0.6.0-beta" , "1.0.0-beta3" , "1.0.0-beta7" ; @@ -2333,7 +2333,7 @@ While the EMMO FOL introduces the quantum causality relation C(x,y) as primitive rdf:type owl:ObjectProperty ; rdfs:subPropertyOf ; rdfs:domain ; - rdfs:range ; + rdfs:range ; "hasSolvent"@en . @@ -2364,7 +2364,7 @@ While the EMMO FOL introduces the quantum causality relation C(x,y) as primitive rdf:type owl:ObjectProperty ; rdfs:subPropertyOf ; rdfs:domain ; - rdfs:range ; + rdfs:range ; "hasSolute"@en . @@ -34532,7 +34532,7 @@ Wikipedia"""@en ; , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "ZincElectrode"@en ; "an electrode in which the main active material is zinc metal"@en ; @@ -34555,7 +34555,7 @@ Wikipedia"""@en ; rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "LithiumElectrode"@en ; "an electrode in which the active material is lithium metal" . @@ -44391,164 +44391,11 @@ Wear is defined as the progressive removal of the material from a solid surface "InChI=1S/Pb" . -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0139937b_2724_4864_84fb_f14bcfb83538 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0bdf0bb9_41fc_455d_af11_a249e24acdf6 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0f2f65a7_5cc4_4c86_a4d0_676771c646f1 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_250fa43e_1f26_4ed8_b787_91a2325a8e7b - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_25f6ff4c_53ad_4837_97c4_aa6f06099bb5 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_2a540939_3908_4f85_92f9_c46da7d4e9cb - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_2a87ca10_fc6a_4d61_b48c_d9790a566ee3 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_3899a9c9_9b34_443e_8ce6_0257589bb38a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_3ac62305_acd6_4312_9e31_4f824bd2530d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_4126ee09_b9c6_4694_bf33_0d8970e05f72 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_4c62d334_a124_40b3_9fd1_fe713d01a6af - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_5088ad54_b37d_4ee1_a086_d6c17e644f9a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_5cee19d2_f916_4264_a8ed_efed13a808d2 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_68c0876b_cb62_41cd_846d_95cc9d9a8733 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_68f9b85e_340f_46ec_96da_ebb6bd62f5fd - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_73d4606c_7460_4a5c_9413_793bdf35753e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_7dc738d6_74f2_489e_ae84_a6dbdf627f2e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_848003a2_71ee_4967_8039_354c907ec7f4 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_97439fbb_155f_433d_9edd_d510cd491f24 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_9bd78e1c_a4dc_41b6_8013_adb51df1ffdc - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_9da78aea_d436_40e2_a68f_c3dee32b825e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_aa8e9cc4_5f66_4307_b1c8_26fac7653a90 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_acdb232f_8041_4e11_8a11_5db2d2baae4d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_b01771a9_218a_4b01_b20f_4021cfa0b7d5 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_b3815a7f_f64a_48f6_b0ce_d0032578c699 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c109ca45_08c7_4436_a818_a9c575785e2f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c28a0967_ed23_48cc_a14e_a651d75a19db - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c5582dae_ccff_4fbe_adaa_078091054640 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c728b6b9_449a_45ff_b5ae_6b7968708f0d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_cd17ca33_ae3d_4738_8930_547673bf6c1f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_cdd18f0c_e7b3_4d09_b3dd_c09fe4b1adba - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_d53259a7_0d9c_48b9_a6c1_4418169df303 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_d673ceb2_3045_4e2e_8cad_56f5169b542f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_db74b6b7_09fc_40db_a7d5_6eb86b69192a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_dc5fb846_1824_40f8_9834_81f118aa1c2d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_dcdbdbed_2e20_40d1_a7a5_5761de7f0618 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_e1e6ff98_0725_4d27_ab21_2ca5a95371f0 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_e8fafdc8_6cd3_4dd0_9630_10ca8e3f1827 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_f3e7979a_e3ef_450a_8762_7d8778afe478 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_f7525766_90cf_43e9_8932_7cb3b14f676f - rdf:type owl:Class . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626 + rdf:type owl:Class ; + rdfs:subClassOf ; + "ImaginaryElectricImpedance"@en ; + "the imaginary part of the complex electric impedance"@en . ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_01260656_ac32_472e_9513_a607366538ec @@ -44872,11 +44719,11 @@ Wear is defined as the progressive removal of the material from a solid surface rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCLCOElectrode"@en ; @@ -45639,7 +45486,7 @@ and t* through mathematical models, provided that the long-time potential- deter , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LFPElectrode"@en ; @@ -46241,7 +46088,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "PtElectrode"@en ; "PlatinumElectrode"@en ; @@ -46343,7 +46190,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SiliconOxideGraphiteElectrode"@en ; @@ -46477,7 +46324,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "FTOElectrode"@en ; @@ -46500,7 +46347,7 @@ Aluminum foil"""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "NiOOHElectrode"@en , "NickelOxyhydroxideElectrode"@en ; @@ -46544,6 +46391,14 @@ Aluminum foil"""@en . "a coin case with a nominal diameter of 7.9 mm and a height of 1.65 mm"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b + rdf:type owl:Class ; + rdfs:subClassOf , + ; + "Resting"@en ; + "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 rdf:type owl:Class ; rdfs:subClassOf ; @@ -46811,6 +46666,13 @@ Aluminum foil"""@en . "A material relation in electrochemistry."@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45 + rdf:type owl:Class ; + rdfs:subClassOf ; + "UpperCurrentLimit"@en ; + "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3e54f9e3_a31d_4821_9bfb_ef953a42c35b rdf:type owl:Class ; rdfs:subClassOf , @@ -46981,7 +46843,7 @@ Aluminum foil"""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNMOElectrode"@en ; @@ -47201,11 +47063,11 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCLMOElectrode"@en ; @@ -47294,7 +47156,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumNickelPhosphateElectrode"@en ; @@ -47549,7 +47411,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumIronPhosphateElectrode"@en ; @@ -47904,7 +47766,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "CarbonMonofluorideElectrode"@en ; "electrode in which the active material is carbon monofluoride"@en ; @@ -48131,7 +47993,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "HardCarbonElectrode"@en ; "electrode in which the active material is hard carbon"@en . @@ -48291,7 +48153,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "SAE"@en ; "SolidAmalgamElectrode"@en ; @@ -48426,7 +48288,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LTOElectrode"@en ; @@ -48518,20 +48380,13 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ] . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "system that consists of at least two electron conductors (electrodes) in contact with ionic conductors (electrolytes)"@en ; - "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6fec8cc1_4e6c_428e_8343_6cf3c286a185 rdf:type owl:Class ; rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "AuElectrode"@en ; "GoldElectrode"@en ; @@ -48691,7 +48546,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NiOElectrode"@en ; @@ -48721,7 +48576,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "TiO2Electrode"@en ; @@ -48915,13 +48770,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ] . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "in secondary cells, the active material is restored to its original state during charge"@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - [ rdf:type owl:Axiom ; owl:annotatedSource ; owl:annotatedProperty ; @@ -48965,6 +48813,13 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s "an electrode in which the primary active material consists of caesium or caesium compounds"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea + rdf:type owl:Class ; + rdfs:subClassOf ; + "LowerCurrentLimit"@en ; + "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7f073272_8925_4344_995c_a5a6dd1fcde6 rdf:type owl:Class ; rdfs:subClassOf ; @@ -49118,7 +48973,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "LiquidGalliumElectrode"@en ; "a liquid electrode with an active material of gallium"@en . @@ -49188,7 +49043,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "ZnOElectrode"@en ; @@ -49446,6 +49301,13 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "an electrode in which the primary active material consists of sulfur or sulfur compounds"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_88dd2bce_fb17_4705_905d_892681812290 + rdf:type owl:Class ; + rdfs:subClassOf ; + "NumberOfIterations"@en ; + "the number of times an iterative process should occur"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8968eb7a_9a65_4286_a596_c31b998df329 rdf:type owl:Class ; rdfs:subClassOf ; @@ -49504,6 +49366,13 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "substance that increases chemical reaction speed, and which is conserved after the reaction"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100 + rdf:type owl:Class ; + rdfs:subClassOf ; + "NominalCapacity"@en ; + "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8b40856f_1ca2_4137_9616_7fb624671909 rdf:type owl:Class ; rdfs:subClassOf , @@ -50109,7 +49978,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumCobaltPhosphateElectrode"@en ; @@ -50298,13 +50167,6 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; "plate in which the active material is applied as a paste to a conductive current collector"@en . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "plate in which the active material is applied as a paste to a conductive current collector"@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a24f8581_a5a4_41a4_bb45_d0fdd5c0d810 rdf:type owl:Class ; @@ -50397,7 +50259,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "SilverOxideElectrode"@en ; "an electrode in which the primary active material consists of manganese dioxide or vmanganese dioxide compounds"@en ; @@ -50427,7 +50289,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "AgElectrode"@en ; "SilverElectrode"@en ; @@ -50662,7 +50524,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "CupricOxideElectrode"@en ; "CopperOxideElectrode"@en ; @@ -50751,6 +50613,15 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "Environmental_Temperature (C)"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f + rdf:type owl:Class ; + rdfs:subClassOf ; + "ACResistance"@en ; + "RealElectricImpedance"@en ; + "https://www.wikidata.org/wiki/Q1048490"@en ; + "the imaginary part of the complex electric impedance"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abfadc99_6e43_4d37_9b04_7fc5b0f327ae rdf:type owl:Class ; rdfs:subClassOf , @@ -50782,7 +50653,8 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e rdf:type owl:Class ; rdfs:subClassOf ; - "CCCVCycling"@en ; + "CCCVCycling"@en ; + "ConstantCurrentConstantVoltageCycling"@en ; "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en . @@ -51030,7 +50902,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCElectrode"@en ; @@ -51360,11 +51232,11 @@ of other configurations are used."""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNMOLFPElectrode"@en ; @@ -51466,13 +51338,6 @@ of other configurations are used."""@en . "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; "https://en.wikipedia.org/wiki/Fuel_cell"@en . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_bea04148_10d9_4eda_9cd5_8f609d7e9ff8 rdf:type owl:Class ; @@ -51568,7 +51433,7 @@ of other configurations are used."""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LMOElectrode"@en ; @@ -51751,11 +51616,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "ITO"@en ; @@ -51809,7 +51674,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "GraphiteElectrode"@en ; "electrode in which the active material is graphite"@en . @@ -51928,7 +51793,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "MnO2Electrode"@en ; "ManganeseDioxideElectrode"@en ; @@ -51943,7 +51808,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNOElectrode"@en ; @@ -51963,7 +51828,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "IrO2Electrode"@en ; @@ -51977,7 +51842,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumManganesePhosphateElectrode"@en ; @@ -52146,7 +52011,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "IronDisulfideElectrode"@en ; "an electrode in which the primary active material consists of iron disulfide or iron disulfide compounds."@en ; @@ -52509,7 +52374,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "HgElectrode"@en ; "MercuryElectrode"@en ; @@ -52785,11 +52650,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SiliconGraphiteElectrode"@en ; @@ -52802,7 +52667,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumManganeseOxideElectrode"@en ; @@ -53004,7 +52869,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumCobaltOxideElectrode"@en ; @@ -53096,7 +52961,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NCAElectrode"@en ; @@ -53315,7 +53180,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "PbOElectrode"@en ; @@ -53401,7 +53266,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumChromiumOxideElectrode"@en ; @@ -53621,7 +53486,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LCOElectrode"@en ; @@ -53672,11 +53537,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LMOLFPElectrode"@en ; @@ -53808,10 +53673,10 @@ In either case, the magnitude of the catalytic current depends on the applied po "The universe is considered as a causally self-connected object, encompassing all other objects. For this reason is unique."@en . -[ owl:qualifiedCardinality "3"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "3"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "4"^^xsd:nonNegativeInteger @@ -53835,10 +53700,10 @@ In either case, the magnitude of the catalytic current depends on the applied po [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:minQualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:minQualifiedCardinality "2"^^xsd:nonNegativeInteger +[ owl:minQualifiedCardinality "1"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger @@ -53850,7 +53715,7 @@ In either case, the magnitude of the catalytic current depends on the applied po [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:minQualifiedCardinality "2"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger diff --git a/versions/v0.8.0-alpha/electrochemistry.ttl b/versions/v0.8.0-alpha/electrochemistry.ttl index baa1206..d442e3c 100644 --- a/versions/v0.8.0-alpha/electrochemistry.ttl +++ b/versions/v0.8.0-alpha/electrochemistry.ttl @@ -1,6 +1,6 @@ @prefix : . @prefix bibo: . -@prefix chemsub: . +@prefix chemsub: . @prefix dcterms: . @prefix emmo: . @prefix foaf: . @@ -54,9 +54,9 @@ schema:name a owl:AnnotationProperty . dcterms:created "2022-11-25"^^xsd:date ; dcterms:creator , ; - dcterms:issued "2024-07-03"^^xsd:date ; + dcterms:issued "2024-07-05"^^xsd:date ; dcterms:license "https://creativecommons.org/licenses/by/4.0/legalcode" ; - dcterms:modified "2024-07-03"^^xsd:date ; + dcterms:modified "2024-07-05"^^xsd:date ; dcterms:publisher "EMMO" ; dcterms:source , , @@ -67,13 +67,13 @@ schema:name a owl:AnnotationProperty . bibo:status "unstable" ; vann:preferredNamespacePrefix "echem" ; vann:preferredNamespaceUri "https://w3id.org/emmo/domain/electrochemistry" ; - owl:backwardCompatibleWith "0.16.0-beta" ; + owl:backwardCompatibleWith "0.17.0-beta" ; owl:imports , , - ; - owl:priorVersion "0.16.0-beta" ; - owl:versionIRI ; - owl:versionInfo "0.17.0-beta" ; + ; + owl:priorVersion "0.17.0-beta" ; + owl:versionIRI ; + owl:versionInfo "0.18.0-beta" ; foaf:logo "https://raw.githubusercontent.com/emmo-repo/domain-electrochemistry/gh-pages/assets/img/fig/png/domain-electrochemistry-logo.png" . :electrochemistry_027d437e_3bbf_4eda_940b_e509f8d2b993 a owl:Class ; @@ -535,6 +535,14 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "R716" ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a coin case with a nominal diameter of 7.9 mm and a height of 1.65 mm"@en . +:electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b a owl:Class ; + rdfs:label "Resting"@en ; + rdfs:comment "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en ; + rdfs:subClassOf , + :electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 ; + skos:prefLabel "Resting"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en . + :electrochemistry_36444184_1100_4271_869f_7f2d983aaecb a owl:Class ; rdfs:label "P45173115" ; rdfs:comment "a prismatic case with a nominal length of 45 mm, width of 173 mm, and height of 115 mm"@en ; @@ -1564,6 +1572,15 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "TinBasedElectrode"@en ; emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "an electrode in which the primary active material consists of tin or tin compounds"@en . +:electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c a owl:Class ; + rdfs:label "PastedPlate"@en ; + rdfs:comment "plate in which the active material is applied as a paste to a conductive current collector"@en ; + rdfs:subClassOf :electrochemistry_92147e31_d015_4889_a092_04fbab033f15 ; + skos:altLabel "PastedElectrode"@en ; + skos:prefLabel "PastedPlate"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "plate in which the active material is applied as a paste to a conductive current collector"@en . + :electrochemistry_a277e420_2483_44d5_a2bc_4e421dea231a a owl:Class ; rdfs:label "R926" ; rdfs:comment "a coin case with a nominal diameter of 9.5 mm and a height of 2.6 mm"@en ; @@ -1658,10 +1675,11 @@ schema:name a owl:AnnotationProperty . emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a coin case with a nominal diameter of 11.6 mm and a height of 4.2 mm"@en . :electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e a owl:Class ; - rdfs:label "CCCVCycling"@en ; + rdfs:label "ConstantCurrentConstantVoltageCycling"@en ; rdfs:comment "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en ; rdfs:subClassOf :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; - skos:prefLabel "CCCVCycling"@en ; + skos:altLabel "CCCVCycling"@en ; + skos:prefLabel "ConstantCurrentConstantVoltageCycling"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en . :electrochemistry_ad9cdad6_66e8_471e_a7c6_b79f37c20814 a owl:Class ; @@ -1783,6 +1801,17 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "P20100141" ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a prismatic case with a nominal length of 20 mm, width of 100 mm, and height of 141 mm"@en . +:electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d a owl:Class ; + rdfs:label "FuelCell"@en ; + rdfs:comment "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; + rdfs:subClassOf :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; + skos:prefLabel "FuelCell"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q180253"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-05"@en ; + emmo:EMMO_6dd685dd_1895_46e4_b227_be9f7d643c25 "https://dbpedia.org/page/Fuel_cell"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; + emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Fuel_cell"@en . + :electrochemistry_bea04148_10d9_4eda_9cd5_8f609d7e9ff8 a owl:Class ; rdfs:label "CelsiusTemperatureMeasurement"@en ; rdfs:comment "measurement of temperature"@en ; @@ -3335,15 +3364,6 @@ schema:name a owl:AnnotationProperty . "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-26"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "interface between an electrolyte and an electrode where an electrode reaction takes place."@en . -:electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c a owl:Class ; - rdfs:label "PastedPlate"@en ; - rdfs:comment "plate in which the active material is applied as a paste to a conductive current collector"@en ; - rdfs:subClassOf :electrochemistry_92147e31_d015_4889_a092_04fbab033f15 ; - skos:altLabel "PastedElectrode"@en ; - skos:prefLabel "PastedPlate"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "plate in which the active material is applied as a paste to a conductive current collector"@en . - :electrochemistry_a462859d_d8bd_48ea_8bde_1576f1248a1e a owl:Class ; rdfs:label "SilverElectrode"@en ; rdfs:comment "electrode in the form of foil, mesh, wire, rod, tube, powder, pellets, or single crystal of silver"@en ; @@ -3459,17 +3479,6 @@ of other configurations are used."""@en . emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-19"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "part which insures insulation between the plate (electrode) edges and adjacent plates (electrodes) and the container side walls"@en . -:electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d a owl:Class ; - rdfs:label "FuelCell"@en ; - rdfs:comment "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - rdfs:subClassOf :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; - skos:prefLabel "FuelCell"@en ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q180253"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-05"@en ; - emmo:EMMO_6dd685dd_1895_46e4_b227_be9f7d643c25 "https://dbpedia.org/page/Fuel_cell"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Fuel_cell"@en . - :electrochemistry_bed5b5f9_b89d_45e3_a8c2_81b70ae21847 a owl:Class ; rdfs:label "SeriesParallelConnection"@en ; rdfs:comment "arrangement of cells or batteries wherein in series connected cells or batteries are connected in parallel."@en ; @@ -4518,15 +4527,20 @@ schema:Person a owl:Class ; skos:prefLabel "BimetallicOxideElectrode"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "an electrode consisting of two metal oxide active materials"@en . -:electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 a owl:Class ; - rdfs:label "GalvanostaticProcess"@en ; - rdfs:comment "a process in which the electric current is kept constant"@en ; - rdfs:subClassOf [ a owl:Restriction ; - owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; - owl:someValuesFrom :electrochemistry_22725105_c941_4b14_a4a2_fcb627958607 ], - :electrochemistry_5548f188_df00_4c05_ae98_7846e92efe36 ; - skos:prefLabel "GalvanostaticProcess"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a process in which the electric current is kept constant"@en . +:electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 a owl:Class ; + rdfs:label "ActiveMaterial"@en ; + rdfs:comment "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; + rdfs:subClassOf :electrochemistry_b5ea31c9_bb10_4276_980e_c3eceb1efc82, + :electrochemistry_ebdb68e9_c4b5_4d57_a042_c0f51d446755 ; + skos:altLabel "ActiveElectrochemicalMaterial"@en, + "ElectrochemicallyActiveMaterial"@en ; + skos:prefLabel "ActiveMaterial"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q120907375" ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-33", + "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-14"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; + emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "material which reacts chemically to produce electric energy when the cell discharges", + "in secondary cells, the active material is restored to its original state during charge"@en . :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 a owl:Class ; rdfs:label "PotentiometricStrippingAnalysis"@en ; @@ -4601,20 +4615,15 @@ schema:Person a owl:Class ; "The electrode (or interfacial) reaction involves all the processes (chemical reaction, structural reorganization, adsorption) accompanying the charge transfer step."@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1351/goldbook.E01960"@en . -:electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 a owl:Class ; - rdfs:label "ActiveMaterial"@en ; - rdfs:comment "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; - rdfs:subClassOf :electrochemistry_b5ea31c9_bb10_4276_980e_c3eceb1efc82, - :electrochemistry_ebdb68e9_c4b5_4d57_a042_c0f51d446755 ; - skos:altLabel "ActiveElectrochemicalMaterial"@en, - "ElectrochemicallyActiveMaterial"@en ; - skos:prefLabel "ActiveMaterial"@en ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q120907375" ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-33", - "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-14"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "material which reacts chemically to produce electric energy when the cell discharges", - "in secondary cells, the active material is restored to its original state during charge"@en . +:electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 a owl:Class ; + rdfs:label "GalvanostaticProcess"@en ; + rdfs:comment "a process in which the electric current is kept constant"@en ; + rdfs:subClassOf [ a owl:Restriction ; + owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; + owl:someValuesFrom :electrochemistry_22725105_c941_4b14_a4a2_fcb627958607 ], + :electrochemistry_5548f188_df00_4c05_ae98_7846e92efe36 ; + skos:prefLabel "GalvanostaticProcess"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a process in which the electric current is kept constant"@en . :electrochemistry_8a1c9a7b_978c_4421_a9c1_d0b07b42aab9 a owl:Class ; rdfs:label "ChemicalReaction"@en ; @@ -4953,9 +4962,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "extremely resistant to many chemicals, impermeable to gases and liquids, and has good electrical conductivity, high hardness and strength, and biocompatibility"@en . + owl:annotatedTarget "electrode made of glassy carbon material with an intertwined graphitic ribbon structure, formed by pyrolysis of a resol precursor at temperatures up to 3000 °C"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -4976,28 +4985,22 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "A disc electrode that is embedded in the centre of a cylinder which rotates in solution around the longitudinal cylinder axis."@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "composite system in which the supplied electric energy mainly produces chemical reactions or, conversely, in which the energy released by chemical reactions is mainly delivered by the system as electric energy"@en . + owl:annotatedTarget "a system containing two electrodes that allow transport of electrons, separated by an electrolyte that allows movement of ions but blocks movement of electrons."@en . [] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "system that consists of at least two electron conductors (electrodes) in contact with ionic conductors (electrolytes)"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" . + owl:annotatedTarget "composite system in which the supplied electric energy mainly produces chemical reactions or, conversely, in which the energy released by chemical reactions is mainly delivered by the system as electric energy"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "glassy carbon combines glass-like mechanical characteristics with physical properties similar to graphite, owing to its “graphene ribbon” structure"@en . - -[] a owl:Axiom ; - dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "a system containing two electrodes that allow transport of electrons, separated by an electrolyte that allows movement of ions but blocks movement of electrons."@en . + owl:annotatedTarget "extremely resistant to many chemicals, impermeable to gases and liquids, and has good electrical conductivity, high hardness and strength, and biocompatibility"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5033,13 +5036,13 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "one of the most frequently used working electrodes"@en . + owl:annotatedTarget "glassy carbon combines glass-like mechanical characteristics with physical properties similar to graphite, owing to its “graphene ribbon” structure"@en . [] a owl:Axiom ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; - owl:annotatedTarget "in secondary cells, the active material is restored to its original state during charge"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedTarget "material that is oxidized or reduced at an electrode in an electrochemical cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5047,12 +5050,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; owl:annotatedTarget "material which reacts chemically to produce electric energy when the cell discharges" . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; - owl:annotatedTarget "material that is oxidized or reduced at an electrode in an electrochemical cell"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5061,9 +5058,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "electrode made of glassy carbon material with an intertwined graphitic ribbon structure, formed by pyrolysis of a resol precursor at temperatures up to 3000 °C"@en . + owl:annotatedTarget "one of the most frequently used working electrodes"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5083,18 +5080,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_83f2b1e9_cb67_4dbf_977f_ba54bbae374f ; owl:annotatedTarget "charge during which the electric current is maintained at a constant value regardless of the battery voltage or temperature"@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; - owl:annotatedTarget "Electrolyte solution in the anodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the anode is placed."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; owl:annotatedTarget "electrolyte on the anode side of an electrochemical cell that is divided into compartments"@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; + owl:annotatedTarget "Electrolyte solution in the anodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the anode is placed."@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5133,15 +5130,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_8d3bf304_78e4_4e99_abe1_6ab429e44ed1 ; - owl:annotatedTarget "a sealed cell may be equipped with a safety device to prevent a dangerously high internal pressure and is designed to operate during its life in its original sealed state"@en . + owl:annotatedTarget "cell which remains closed and does not release either gas or liquid when operated within the limits specified by the manufacturer"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_8d3bf304_78e4_4e99_abe1_6ab429e44ed1 ; - owl:annotatedTarget "cell which remains closed and does not release either gas or liquid when operated within the limits specified by the manufacturer"@en . + owl:annotatedTarget "a sealed cell may be equipped with a safety device to prevent a dangerously high internal pressure and is designed to operate during its life in its original sealed state"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5150,10 +5147,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "capacitor consisting of a metallic plate as first conductor, a very thin oxide film formed on the metal as the dielectric and an electrolyte as second conductor"@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_06d8e1ee_924a_4915_998d_33a69f41dadc ; - owl:annotatedTarget "operation during which an electrochemical cell supplies electric energy as the result of chemical changes within the cell"@en . + owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; + owl:annotatedTarget "two-step electrochemical measurement in which 1) material is accumulated at an electrode and 2) the material is removed by chemical reaction or electrochemically at constant current with measurement of electrode potential"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5161,6 +5158,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; owl:annotatedTarget "historically for the analysis of metal ions, mercury ions were added to the test solution to form a mercury amalgam when reduced. Alternatively, an HMDE or MFE was used and the oxidizing agent added after amalgam formation. However, the toxicity of mercury and its compounds have all but precluded the present-day use of mercury"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_06d8e1ee_924a_4915_998d_33a69f41dadc ; + owl:annotatedTarget "operation during which an electrochemical cell supplies electric energy as the result of chemical changes within the cell"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5179,12 +5182,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; owl:annotatedTarget "the time between changes in potential in step 2 is related to the concentration of analyte in the solution"@en . -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; - owl:annotatedTarget "two-step electrochemical measurement in which 1) material is accumulated at an electrode and 2) the material is removed by chemical reaction or electrochemically at constant current with measurement of electrode potential"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5211,15 +5208,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_9ee6e728_e8f5_4b36_a045_d63da69dfc85 ; - owl:annotatedTarget "overcharge is also the act of charging beyond a certain limit specified by the manufacturer"@en . + owl:annotatedTarget "continued charging of a fully charged secondary cell or battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_9ee6e728_e8f5_4b36_a045_d63da69dfc85 ; - owl:annotatedTarget "continued charging of a fully charged secondary cell or battery"@en . + owl:annotatedTarget "overcharge is also the act of charging beyond a certain limit specified by the manufacturer"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5227,6 +5224,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_9f466223_e20a_474d_ac4d_6d4b6131c275 ; owl:annotatedTarget "an electrode that holds its potential essentially constant by efficiently allowing electric current to pass"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_a0580fa9_5073_44af_b33e_7adbc83892d0 ; + owl:annotatedTarget "electrode reaction in which oxidation occurs at the anode"@en . + [] a owl:Axiom ; dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5242,14 +5245,14 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0580fa9_5073_44af_b33e_7adbc83892d0 ; - owl:annotatedTarget "electrode reaction in which oxidation occurs at the anode"@en . + owl:annotatedSource :electrochemistry_a0a619d7_da95_41f0_8bc3_9c19d636d543 ; + owl:annotatedTarget "electrode that serves only as a source or sink for electrons without playing a chemical role in the electrode reaction"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0a619d7_da95_41f0_8bc3_9c19d636d543 ; - owl:annotatedTarget "electrode that serves only as a source or sink for electrons without playing a chemical role in the electrode reaction"@en . + owl:annotatedSource :electrochemistry_a0fcb105_587f_45d8_a89a_46dc8f745069 ; + owl:annotatedTarget "partial or complete external covering of a cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5260,14 +5263,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0fcb105_587f_45d8_a89a_46dc8f745069 ; - owl:annotatedTarget "partial or complete external covering of a cell"@en . - -[] a owl:Axiom ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c ; - owl:annotatedTarget "plate in which the active material is applied as a paste to a conductive current collector"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedSource :electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e ; + owl:annotatedTarget "process inside an electrolytic cell used to coat a conductive object with a layer of a material"@en . [] a owl:Axiom ; dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; @@ -5278,8 +5275,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e ; - owl:annotatedTarget "process inside an electrolytic cell used to coat a conductive object with a layer of a material"@en . + owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; + owl:annotatedTarget "component of a cell which permits the flow of gas in one direction only"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5287,12 +5284,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; owl:annotatedTarget "a valve has a characteristic venting or opening and closing pressure"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; - owl:annotatedTarget "component of a cell which permits the flow of gas in one direction only"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5305,6 +5296,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a462859d_d8bd_48ea_8bde_1576f1248a1e ; owl:annotatedTarget "electrode in the form of foil, mesh, wire, rod, tube, powder, pellets, or single crystal of silver"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; + owl:annotatedTarget "a chemical reaction in an electrolyte involving a transfer of electrons between chemical components or between chemical components and an electrode"@en . + [] a owl:Axiom ; dcterms:source "Bockris, J. O'M. and Despić, . Aleksandar R. (2011, December 15). Electrochemical reaction. Encyclopedia Britannica. https://www.britannica.com/science/electrochemical-reaction" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5317,12 +5314,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; owl:annotatedTarget "the electrode reaction can also involve other chemical reactions including subreactions on a cell electrode"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; - owl:annotatedTarget "a chemical reaction in an electrolyte involving a transfer of electrons between chemical components or between chemical components and an electrode"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5355,15 +5346,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_ae56cce3_7a7c_4e53_bb58_31e0d642d47e ; - owl:annotatedTarget "this flame front may originate from a spark or an external naked flame igniting combustible electrolysis gas"@en . + owl:annotatedTarget "vent of special design which provides protection against the propagation of a flame front from or into the interior of a secondary cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_ae56cce3_7a7c_4e53_bb58_31e0d642d47e ; - owl:annotatedTarget "vent of special design which provides protection against the propagation of a flame front from or into the interior of a secondary cell"@en . + owl:annotatedTarget "this flame front may originate from a spark or an external naked flame igniting combustible electrolysis gas"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5395,6 +5386,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_b525a629_a679_464f_bc5b_b49d2fc82686 ; owl:annotatedTarget "an electrochemical cell for conductivity measurements"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; + owl:annotatedTarget "by convention, cell electrode at which an oxidation reaction occurs"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5419,12 +5416,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; owl:annotatedTarget "the concepts of “anode” and “cathode” are related only to the direction of electron flow, not to the polarity of the electrodes"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; - owl:annotatedTarget "by convention, cell electrode at which an oxidation reaction occurs"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5433,15 +5424,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_b79d4f9e_5727_4895_8d7f_5fc18d83eb90 ; - owl:annotatedTarget "in a galvanic cell, parasitic reactions may cause inefficiencies or loss of performance"@en . + owl:annotatedTarget "an unwanted side reaction"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_b79d4f9e_5727_4895_8d7f_5fc18d83eb90 ; - owl:annotatedTarget "an unwanted side reaction"@en . + owl:annotatedTarget "in a galvanic cell, parasitic reactions may cause inefficiencies or loss of performance"@en . [] a owl:Axiom ; dcterms:source "IEEE Standard Glossary of Stationary Battery Terminology (2016), https://doi.org/10.1109/IEEESTD.2016.7552407" ; @@ -5481,12 +5472,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_bbae1ef4_0a95_4e7d_9932_1bf939129eef ; owl:annotatedTarget "current-potential curve in a voltammetry experiment"@en . -[] a owl:Axiom ; - dcterms:source "https://en.wikipedia.org/wiki/Square_wave" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0e33278b_639f_412d_9abd_64c3790026ef ; - owl:annotatedTarget "Periodic potential where the amplitude alternates at a steady frequency between fixed minimum and maximum values, with the same duration at minimum and maximum."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5500,10 +5485,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "part which insures insulation between the plate (electrode) edges and adjacent plates (electrodes) and the container side walls"@en . [] a owl:Axiom ; + dcterms:source "https://en.wikipedia.org/wiki/Square_wave" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d ; - owl:annotatedTarget "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedSource :electrochemistry_0e33278b_639f_412d_9abd_64c3790026ef ; + owl:annotatedTarget "Periodic potential where the amplitude alternates at a steady frequency between fixed minimum and maximum values, with the same duration at minimum and maximum."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5535,12 +5520,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_c3f4b34a_0e2c_46f3_baab_4ebd2682d26f ; owl:annotatedTarget "An ionic liquid is an electrolyte composed of a salt that is liquid below 100 °C. Ionic liquids have found uses in electrochemical analysis, because their unconventional properties include a negligible vapor pressure, a high thermal and electrochemical stability, and exceptional dissolution properties for both organic and inorganic chemical species."@en . -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; - owl:annotatedTarget "Electron conductor in an electrochemical cell connected to the external circuit."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5553,6 +5532,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_c55ec02c_b727_4df1_97ce_91d7bb5d5e91 ; owl:annotatedTarget "unplanned escape of electrolyte, gas or other material from a cell or battery"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_c610d869_cc03_44f0_b40d_ca86e945b9c9 ; + owl:annotatedTarget "cell from which electrolyte cannot escape regardless of its orientation"@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5562,8 +5547,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_c610d869_cc03_44f0_b40d_ca86e945b9c9 ; - owl:annotatedTarget "cell from which electrolyte cannot escape regardless of its orientation"@en . + owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; + owl:annotatedTarget "electronically conductive part in electric contact with a medium of lower electronic conductivity and intended to perform one or more of the functions of emitting charge carriers to or receiving charge carriers from that medium or to establish an electric field in that medium"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5579,21 +5564,21 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; - owl:annotatedTarget "by convention, an oxidation reaction occurs during discharge"@en . + owl:annotatedTarget "for a device having two electrodes, that electrode having the lower electric potential"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; - owl:annotatedTarget "electronically conductive part in electric contact with a medium of lower electronic conductivity and intended to perform one or more of the functions of emitting charge carriers to or receiving charge carriers from that medium or to establish an electric field in that medium"@en . + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; + owl:annotatedTarget "by convention, an oxidation reaction occurs during discharge"@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; - owl:annotatedTarget "for a device having two electrodes, that electrode having the lower electric potential"@en . + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; + owl:annotatedTarget "Electron conductor in an electrochemical cell connected to the external circuit."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5604,8 +5589,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0f827b54_370d_4c63_99a6_80f13b24e55e ; - owl:annotatedTarget "evolution of gas resulting from electrolysis of the water in the electrolyte of a cell"@en . + owl:annotatedSource :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; + owl:annotatedTarget "set of operations that is carried out on a secondary cell or battery and is repeated regularly in the same sequence."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5622,14 +5607,14 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; - owl:annotatedTarget "set of operations that is carried out on a secondary cell or battery and is repeated regularly in the same sequence."@en . + owl:annotatedSource :electrochemistry_d5da9948_e95b_4f12_a2d2_10a48f390c52 ; + owl:annotatedTarget "arrangement of cells or batteries wherein parallel connected cells or batteries are connected in series."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_d5da9948_e95b_4f12_a2d2_10a48f390c52 ; - owl:annotatedTarget "arrangement of cells or batteries wherein parallel connected cells or batteries are connected in series."@en . + owl:annotatedSource :electrochemistry_0f827b54_370d_4c63_99a6_80f13b24e55e ; + owl:annotatedTarget "evolution of gas resulting from electrolysis of the water in the electrolyte of a cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5655,18 +5640,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_df78745e_f9db_4830_88f0_8ce074fcb8ff ; owl:annotatedTarget "liquid metal electrode used in polarography"@en . +[] a owl:Axiom ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; + owl:annotatedTarget "electrochemical cell in which chemical reactions occur spontaneously and chemical energy is converted into electrical energy."@en . + [] a owl:Axiom ; dcterms:references "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; owl:annotatedTarget "An electrochemical cell that spontaneously produces work."@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_113e0469_8ae0_407f_892d_4b988f8d8a08 ; - owl:annotatedTarget "electrochemical cell that has two half-cells separated by a wall permeable to ions, both containing the same electrolyte differing only in their temperatures."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5674,16 +5659,22 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "Electrochemical cell intended to produce electric energy."@en . [] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; - owl:annotatedTarget "electrochemical cell in which chemical reactions occur spontaneously and chemical energy is converted into electrical energy."@en . + owl:annotatedSource :electrochemistry_e2a1dae1_05e4_4bd1_a39d_0eb10db482bc ; + owl:annotatedTarget "method of separating and neutralizing ions by an electric current in an electrolytic cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e2a1dae1_05e4_4bd1_a39d_0eb10db482bc ; - owl:annotatedTarget "method of separating and neutralizing ions by an electric current in an electrolytic cell"@en . + owl:annotatedSource :electrochemistry_113e0469_8ae0_407f_892d_4b988f8d8a08 ; + owl:annotatedTarget "electrochemical cell that has two half-cells separated by a wall permeable to ions, both containing the same electrolyte differing only in their temperatures."@en . + +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; + owl:annotatedTarget "electrochemical cell intended to produce chemical reactions"@en . [] a owl:Axiom ; dcterms:references "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; @@ -5697,18 +5688,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; owl:annotatedTarget "Electrochemical cell in which electrical energy is converted into chemical energy."@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; - owl:annotatedTarget "electrochemical cell intended to produce chemical reactions"@en . - -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_1152ae6b_8b57_4d99_912e_40c6a29342fb ; - owl:annotatedTarget "mass m of electrochemically-transformed substance is proportional to the charge Q passed, m ∝ Q."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5721,6 +5700,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_ec1dce8b_bb46_41a9_b532_6bed381aa557 ; owl:annotatedTarget "secondary cell having a cover provided with an opening through which products of electrolysis and evaporation are allowed to escape freely from the cell to the atmosphere"@en . +[] a owl:Axiom ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_1152ae6b_8b57_4d99_912e_40c6a29342fb ; + owl:annotatedTarget "mass m of electrochemically-transformed substance is proportional to the charge Q passed, m ∝ Q."@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5739,12 +5724,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f0c24970_4c14_4207_bd78_5f2181a67085 ; owl:annotatedTarget "the process of forming a film or a bulk material using an electrochemical process where the electrons are supplied by an external power supply"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_1355816f_a2b5_4800_8001_fc888f5d6b1b ; - owl:annotatedTarget "instrument intended to measure the value of a voltage."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5757,6 +5736,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f47611a2_e081_47f0_b287_3fda5f706154 ; owl:annotatedTarget "chemical reaction which occurs in addition to the main process"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; + owl:annotatedTarget "electrode reaction in which reduction occurs at the cathode"@en . + +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_1355816f_a2b5_4800_8001_fc888f5d6b1b ; + owl:annotatedTarget "instrument intended to measure the value of a voltage."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5769,12 +5760,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; owl:annotatedTarget "electrode reaction, where the energy of electrons in the working electrode is higher than the LUMO orbital of the substrate"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; - owl:annotatedTarget "electrode reaction in which reduction occurs at the cathode"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5782,10 +5767,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "electrode that responds to one, or more than one, species in the solution being investigated, with no appreciable change of bulk solution composition during the measurement"@en . [] a owl:Axiom ; - dcterms:source "IUPAC. Compendium of Chemical Terminology, 2nd ed. (the \"Gold Book\"). Compiled by A. D. McNaught and A. Wilkinson. Blackwell Scientific Publications, Oxford (1997). Online version (2019-) created by S. J. Chalk. ISBN 0-9678550-9-8. https://doi.org/10.1351/goldbook." ; + dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_15325775_6d4c_4192_82f1_e4feca9de426 ; - owl:annotatedTarget "A membrane having ion-exchange groups:"@en . + owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; + owl:annotatedTarget "a material in which the mobile species are ions and free movement of electrons is blocked."@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5799,18 +5784,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; owl:annotatedTarget "liquid or solid substance containing mobile ions that render it conductive"@en . +[] a owl:Axiom ; + dcterms:source "IUPAC. Compendium of Chemical Terminology, 2nd ed. (the \"Gold Book\"). Compiled by A. D. McNaught and A. Wilkinson. Blackwell Scientific Publications, Oxford (1997). Online version (2019-) created by S. J. Chalk. ISBN 0-9678550-9-8. https://doi.org/10.1351/goldbook." ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_15325775_6d4c_4192_82f1_e4feca9de426 ; + owl:annotatedTarget "A membrane having ion-exchange groups:"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; owl:annotatedTarget "substance that provides ions on dissolution in a solvent or on melting"@en . -[] a owl:Axiom ; - dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; - owl:annotatedTarget "a material in which the mobile species are ions and free movement of electrons is blocked."@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5823,18 +5808,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_fb9bf7cb_dd4b_4391_99a1_628263dd6940 ; owl:annotatedTarget "measuring instrument to obtain the electrical charge passed in an experiment, or to produce a known amount of substance in a titration."@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; - owl:annotatedTarget "Electrolyte solution in the cathodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the cathode is placed."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; owl:annotatedTarget "electrolyte on the cathode side of an electrochemical cell that is divided into compartments."@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; + owl:annotatedTarget "Electrolyte solution in the cathodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the cathode is placed."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5931,18 +5916,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_2d32a81a_2148_41bd_84fb_467aa8de4a8f ; owl:annotatedTarget "foil, wire, disc, or mesh electrode made of platinum, which is the most commonly used metallic working electrode in electrochemistry"@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; - owl:annotatedTarget "An interfacial reaction that necessarily involves a charge-transfer step."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; owl:annotatedTarget "electrochemical reaction involving the transfer of electrons between electrolyte and electrode"@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; + owl:annotatedTarget "An interfacial reaction that necessarily involves a charge-transfer step."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5957,15 +5942,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_328c6e36_3706_4d92_abae_432fa3adb2a0 ; - owl:annotatedTarget "a cell baffle has a second function in protecting the plate pack from damage by objects inserted through the filling hole"@en . + owl:annotatedTarget "internal component used to reduce the amount of electrolyte loss due to electrolyte spray being carried in the gas and/or by electrolyte movement"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_328c6e36_3706_4d92_abae_432fa3adb2a0 ; - owl:annotatedTarget "internal component used to reduce the amount of electrolyte loss due to electrolyte spray being carried in the gas and/or by electrolyte movement"@en . + owl:annotatedTarget "a cell baffle has a second function in protecting the plate pack from damage by objects inserted through the filling hole"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5979,6 +5964,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_34bc54e3_de4c_41f8_8d3a_d77c951ee23a ; owl:annotatedTarget "needle-like or tree-like formation of crystalline growth formed during deposition of a material"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; + owl:annotatedTarget "by convention, cell electrode at which, a reduction reaction occurs"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5997,12 +5988,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; owl:annotatedTarget "the concepts of “anode” and “cathode” are related only to the direction of electron flow, not to the polarity of the electrodes"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; - owl:annotatedTarget "by convention, cell electrode at which, a reduction reaction occurs"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -6023,15 +6008,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_3f6c9e09_5f23_41cc_9f85_7de365cef089 ; - owl:annotatedTarget "electrolyte creep is sometimes indicated by the presence of a visible solid deposit or wet spots"@en . + owl:annotatedTarget "gradual and slow spreading of an electrolyte film on the external surface of a cell or battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_3f6c9e09_5f23_41cc_9f85_7de365cef089 ; - owl:annotatedTarget "gradual and slow spreading of an electrolyte film on the external surface of a cell or battery"@en . + owl:annotatedTarget "electrolyte creep is sometimes indicated by the presence of a visible solid deposit or wet spots"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -6041,9 +6026,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_04f28ce3_251d_429e_aa85_ab3eb45bbcd2 ; - owl:annotatedTarget "in lithium batteries thermal runaway may cause melting of lithium"@en . + owl:annotatedTarget "unstable condition arising during constant voltage charge in which the rate of heat dissipation capability, causing a continuous temperature increase with resulting further charge current increase, which can lead to the destruction of the battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -6077,9 +6062,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_04f28ce3_251d_429e_aa85_ab3eb45bbcd2 ; - owl:annotatedTarget "unstable condition arising during constant voltage charge in which the rate of heat dissipation capability, causing a continuous temperature increase with resulting further charge current increase, which can lead to the destruction of the battery"@en . + owl:annotatedTarget "in lithium batteries thermal runaway may cause melting of lithium"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; diff --git a/versions/v0.9.0-beta/context/context.json b/versions/v0.9.0-beta/context/context.json index ac1b0bb..2006ca7 100644 --- a/versions/v0.9.0-beta/context/context.json +++ b/versions/v0.9.0-beta/context/context.json @@ -1076,7 +1076,6 @@ "ButlerVolmerEquation": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d48ea516_5cac_4f86_bc88_21b6276c0938", "C": "https://w3id.org/emmo#EMMO_36a9bf69_483b_42fd_8a0c_7ac9206320bc", "CASRN": "https://w3id.org/emmo#EMMO_d2a47cd8_662f_438f_855a_b4378eb992ff", - "CCCVCycling": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e", "CPlusPlus": "https://w3id.org/emmo#EMMO_64aba1e5_24b7_4140_8eb4_676c35698e79", "CRate": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_e1fd84eb_acdb_4b2c_b90c_e899d552a3ee", "CSharp": "https://w3id.org/emmo#EMMO_268a8a97_3a6f_4022_93da_962a66827cdc", @@ -1285,7 +1284,7 @@ "CoatingThickness": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3b938708_e7e4_4ac0_a959_9c04306302e7", "Cobalt": "https://w3id.org/emmo/domain/chemical-substance#substance_8f857eb2_7cc8_4294_954d_e69f2842c084", "CobaltAtom": "https://w3id.org/emmo#EMMO_3fe9d899_f1f1_5657_b176_ac6afff2e93d", - "CobaltBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_838c115b_6bc9_4ce8_9f8d_86a6bf67742a", + "CobaltBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7b811780_7251_481b_a4d3_97d437955099", "CobaltHydroxide": "https://w3id.org/emmo/domain/chemical-substance#substance_29b1c15d_2632_40d7_88f7_43575b68b988", "CobaltIIAcetate": "https://w3id.org/emmo/domain/chemical-substance#substance_4310c690_9810_4a95_8d62_7e78e0b84437", "CobaltIIBistrifluoromethanesulfonylimide": "https://w3id.org/emmo/domain/chemical-substance#substance_f4dffee2_c642_4114_a748_5e93b3908380", @@ -1358,6 +1357,7 @@ "ConstantCurrentCharging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_83f2b1e9_cb67_4dbf_977f_ba54bbae374f", "ConstantCurrentChargingCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_37c38b7e_9ded_481a_85fd_a467f1ee2b9f", "ConstantCurrentConstantVoltageCharging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0cc8f231_0ce5_467e_9c76_29b2c80349ad", + "ConstantCurrentConstantVoltageCycling": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e", "ConstantCurrentDischarging": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_53fe3f58_0802_41cf_af69_4784fc42cc30", "ConstantCurrentDischargingCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_08833ed2_6324_411a_b34b_fe64c44cd5ef", "ConstantPotentialPulses": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_84d37a37_88bd_47db_9425_31f73a81d38c", @@ -1590,7 +1590,7 @@ "DeviceTemperature": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_463950b9_fd8d_48de_a52d_b29cab026391", "DewPointTemperature": "https://w3id.org/emmo#EMMO_a383e332_a271_463f_9e44_559604547220", "Diameter": "https://w3id.org/emmo#EMMO_c1c8ac3c_8a1c_4777_8e0b_14c1f9f9b0c6", - "Dichloromethane": "https://w3id.org/emmo/domain/chemical-substance#substance_8385c3c4_5906_48f6_b6b6_4bb60dccc27a", + "Dichloromethane": "https://w3id.org/emmo/domain/chemical-substance#substance_a6feec60_5fe7_4687_b427_3bf2ed06008d", "DieCasting": "https://w3id.org/emmo#EMMO_a85d0b8a_588e_423f_b799_97b0890e9183", "DielectricAndImpedanceSpectroscopy": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#DielectricAndImpedanceSpectroscopy", "Dielectrometry": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Dielectrometry", @@ -1624,7 +1624,7 @@ "Dimethoxyethane": "https://w3id.org/emmo/domain/chemical-substance#substance_b6ecabf9_14a4_4808_a139_55329e70ad42", "Dimethoxymethane": "https://w3id.org/emmo/domain/chemical-substance#substance_21954b0b_c05c_42db_b276_3a931d8aabb1", "DimethylCarbonate": "https://w3id.org/emmo/domain/chemical-substance#substance_c4a7d7bd_497e_457e_b858_ff73254266d0", - "DimethylSulfoxide": "https://w3id.org/emmo/domain/chemical-substance#substance_b593b5dd_7957_4b85_856a_dd59775210b6", + "DimethylSulfoxide": "https://w3id.org/emmo/domain/chemical-substance#substance_ea68e1a4_6be8_4686_8701_ba88b40d00b7", "Dimethylformamide": "https://w3id.org/emmo/domain/chemical-substance#substance_769bdc09_f533_4fde_bb53_20339d5bfcb7", "Dimethylpropyleneurea": "https://w3id.org/emmo/domain/chemical-substance#substance_945c68da_3baf_4da6_b794_dca7aebc4ca7", "Dimethylsulfate": "https://w3id.org/emmo/domain/chemical-substance#substance_3c8fb431_7d9d_4a89_a494_708df34f44d3", @@ -1837,7 +1837,7 @@ "ElectronicModel": "https://w3id.org/emmo#EMMO_6eca09be_17e9_445e_abc9_000aa61b7a11", "ElectronvoltPerMetre": "https://w3id.org/emmo#ElectronvoltPerMetre", "Electroosmosis": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_5641910f_6e69_4ce4_be84_4b1bf14b8916", - "Electroplating": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e", + "Electroplating": "https://w3id.org/emmo#EMMO_30e3edb5_0977_4b9b_9aed_5a4d16c1c07c", "ElementalMaterial": "https://w3id.org/emmo#EMMO_a086af15_a7c3_404c_b4ce_c8e4466f1b4b", "ElementalSubstance": "https://w3id.org/emmo#EMMO_436b11bd_1756_4821_9f14_c9ed6b67552e", "ElementaryBoson": "https://w3id.org/emmo#EMMO_cafd0f10_ce85_48b9_9a36_2b0af141ce21", @@ -2192,11 +2192,12 @@ "ISQBaseQuantity": "https://w3id.org/emmo#EMMO_1a4c1a97_88a7_4d8e_b2f9_2ca58e92dde4", "ISQDerivedQuantity": "https://w3id.org/emmo#EMMO_2946d40b_24a1_47fa_8176_e3f79bb45064", "ISQDimensionlessQuantity": "https://w3id.org/emmo#EMMO_a66427d1_9932_4363_9ec5_7d91f2bfda1e", - "IUPACName": "https://w3id.org/emmo#EMMO_16a3bd5c_75f0_42b3_b000_cb0d018f840e", + "IUPACName": "https://w3id.org/emmo#EMMO_f652e7d2_0b33_4d10_8d0f_2f70089982ba", "IUPACNomencalture": "https://w3id.org/emmo#EMMO_91a0635a_a89a_46de_8928_04a777d145c7", "Icon": "https://w3id.org/emmo#EMMO_d7788d1a_020d_4c78_85a1_13563fcec168", "Illuminance": "https://w3id.org/emmo#EMMO_b51fbd00_a857_4132_9711_0ef70e7bdd20", "IlluminanceTimeUnit": "https://w3id.org/emmo#EMMO_e467cc3f_676c_432e_b70e_19237d1bcc78", + "ImaginaryElectricImpedance": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626", "Impedimetry": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Impedimetry", "InChI": "https://w3id.org/emmo#EMMO_d74ed682_894f_46c5_87cb_167f60926965", "IncreasingPotentialPulses": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_77be01ef_49bd_4f2e_bec8_eec0894b8562", @@ -2288,7 +2289,7 @@ "IridiumSymbol": "https://w3id.org/emmo#EMMO_b8aab013_b729_51f1_bc14_5302e7f97cbe", "Iron": "https://w3id.org/emmo/domain/chemical-substance#substance_89fd13e8_8061_41da_83f4_634144116425", "IronAtom": "https://w3id.org/emmo#EMMO_a4839f08_1080_53bf_9cb3_101e20c2656b", - "IronBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_cc4e178c_bc1f_4502_b6c2_33f304ef6bab", + "IronBasedElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_5e1136d3_df00_40f7_a4bc_8259341053a1", "IronDisulfide": "https://w3id.org/emmo/domain/chemical-substance#substance_c728b6b9_449a_45ff_b5ae_6b7968708f0d", "IronDisulfideElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_d2726dd5_69f0_4cb1_bd3c_4c48813e57e7", "IronIIIHydroxide": "https://w3id.org/emmo/domain/chemical-substance#substance_323a2e39_d7d5_4802_884a_9aa41a280986", @@ -2556,6 +2557,7 @@ "LossFactor": "https://w3id.org/emmo#EMMO_c3796906_8063_47d4_92af_890ae08f25fa", "LowPressureCasting": "https://w3id.org/emmo#EMMO_8b2fd84c_8f51_4731_9bd7_830545e78b23", "LowerCriticalMagneticFluxDensity": "https://w3id.org/emmo#EMMO_fd4a6307_f9f7_4b54_b044_caa04e620232", + "LowerCurrentLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea", "LowerFrequencyLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_b66d6553_6136_4754_902a_707e414210c2", "LowerVoltageLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_534dd59c_904c_45d9_8550_ae9d2eb6bbc9", "Lumen": "https://w3id.org/emmo#Lumen", @@ -2608,7 +2610,7 @@ "MagnesiumTriflate": "https://w3id.org/emmo/domain/chemical-substance#substance_df24fad8_7ef0_4330_a3f2_c4d65d9a3be8", "MagnesiumTrifluoromethanesulfonyloxalatoborate": "https://w3id.org/emmo/domain/chemical-substance#substance_2b7473ba_9156_489a_880f_3a2f746cd104", "MagneticDipoleMoment": "https://w3id.org/emmo#EMMO_81e767f1_59b1_4d7a_bf69_17f322241831", - "MagneticDipoleMomentUnit": "https://w3id.org/emmo#EMMO_5073dc80_aec2_4a3b_8057_fababfcbfe11", + "MagneticDipoleMomentUnit": "https://w3id.org/emmo#EMMO_1c2226a9_22f0_40c8_8928_5a01d398f96e", "MagneticFieldStrength": "https://w3id.org/emmo#EMMO_b4895f75_41c8_4fd9_b6d6_4d5f7c99c423", "MagneticFieldStrengthUnit": "https://w3id.org/emmo#EMMO_e6b83139_ba92_4fbd_a8b2_c8dde55844a1", "MagneticFlux": "https://w3id.org/emmo#EMMO_3b931698_937e_49be_ab1b_36fa52d91181", @@ -2676,7 +2678,7 @@ "MassExcess": "https://w3id.org/emmo#EMMO_7dd84949_0afa_4313_9b89_7bb0dd2e7771", "MassFlow": "https://w3id.org/emmo#EMMO_6d61ee3c_c5b6_4452_bc11_e9c33af992a7", "MassFluxUnit": "https://w3id.org/emmo#EMMO_e35d4936_b2e3_4cd6_a437_f1c864b3d450", - "MassFraction": "https://w3id.org/emmo/disciplines/units/coherentsiunits#EMMO_089f13b1_ceb3_4d2a_8795_b4a2d92916da", + "MassFraction": "https://w3id.org/emmo#EMMO_7c055d65_2929_40e1_af4f_4bf10995ad50", "MassFractionOfDryMatter": "https://w3id.org/emmo#EMMO_8f171308_f902_42c5_ac1d_d5259022e9c1", "MassFractionOfWater": "https://w3id.org/emmo#EMMO_cac16ce6_2cef_405d_ac63_0f918db4875e", "MassFractionUnit": "https://w3id.org/emmo#EMMO_18448443_dcf1_49b8_a321_cf46e2c393e1", @@ -3027,6 +3029,7 @@ "NobeliumAtom": "https://w3id.org/emmo#EMMO_49eb0790_50c2_5691_a8bf_dfa6f4a9f6c7", "NobeliumSymbol": "https://w3id.org/emmo#EMMO_c1bb775c_0888_5b88_9cce_c49bae1d298b", "NobleGasElementalSubstance": "https://w3id.org/emmo/domain/chemical-substance#substance_cac14194_2d5f_4fe6_b794_a9319f6d76ee", + "NominalCapacity": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100", "NominalProperty": "https://w3id.org/emmo#EMMO_909415d1_7c43_4d5e_bbeb_7e1910159f66", "NominalVoltage": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_639b844a_e801_436b_985d_28926129ead6", "NonActivePower": "https://w3id.org/emmo#EMMO_83318add_d05e_40fc_93ea_c6cd605df437", @@ -3061,6 +3064,7 @@ "NumberOfFiniteVolumeCellsInX": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_e73586eb_8475_4879_a43e_087c702ea6bf", "NumberOfFiniteVolumeCellsInY": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_c2a85d02_c6b4_42df_b5ed_a9904ec34a5c", "NumberOfFiniteVolumeCellsInZ": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a5e00e3a_736c_4200_8d04_ed222fe07037", + "NumberOfIterations": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_88dd2bce_fb17_4705_905d_892681812290", "NumberOfTurnsInAWinding": "https://w3id.org/emmo#EMMO_eefaa0ef_e7d4_4633_bf79_655bb55f4a49", "Numeral": "https://w3id.org/emmo#EMMO_74b05aed_66bf_43c8_aa2c_752a9ca8be03", "Numerical": "https://w3id.org/emmo#EMMO_4ce76d7f_03f8_45b6_9003_90052a79bfaa", @@ -3211,7 +3215,7 @@ "Permittivity": "https://w3id.org/emmo#EMMO_0ee5779e_d798_4ee5_9bfe_c392d5bea112", "PermittivityUnit": "https://w3id.org/emmo#EMMO_5f89cb0c_3171_47ee_b2ab_027a07c34c4b", "Persistence": "https://w3id.org/emmo#EMMO_e04884d9_eda6_487e_93d5_7722d7eda96b", - "Person": "http://xmlns.com/foaf/0.1/Person", + "Person": "https://schema.org/Person", "Perspective": "https://w3id.org/emmo#EMMO_49267eba_5548_4163_8f36_518d65b583f9", "Peta": "https://w3id.org/emmo#EMMO_d7c74480_a568_4470_acff_f18b499cc850", "PetaPrefixedUnit": "https://w3id.org/emmo#EMMO_43a6b269_da31_4bb6_a537_c97df4fff32a", @@ -3298,7 +3302,7 @@ "Porosity": "https://w3id.org/emmo#EMMO_3a6578ac_aee0_43b9_9bc6_1eb208c8c9a9", "PorousElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3663991d_9319_4f7a_922b_f0e428b58801", "PorousSeparator": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_58413d4e_2885_459e_ac06_8d45e661cf91", - "PositionVector": "https://w3id.org/emmo#EMMO_4312cae4_03ba_457e_b35d_0671a7db350c", + "PositionVector": "https://w3id.org/emmo#EMMO_44da6d75_54a4_4aa8_bd3a_156f6e9abb8e", "PositiveElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_aff732a9_238a_4734_977c_b2ba202af126", "PositiveTerminal": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_522f0c0b_cf33_4328_af71_12e38dae6798", "Positron": "https://w3id.org/emmo#EMMO_26a38b26_38ea_4acf_b212_db9e34c71b7a", @@ -3483,7 +3487,7 @@ "R54215": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_fc9e7ba3_5084_4c2a_b488_c6a96af99232", "R616": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_dc019f3f_e5f3_4eeb_bab9_a845a02223a0", "R621": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_15ec346a_6d3c_4161_95e1_9cf889965f85", - "R626": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_68c1c36e_1548_4247_bae2_fe7102a2c4ff", + "R626": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6b275583_433f_46f7_aafd_ebc9409257cc", "R712": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_bb2faf17_b819_4876_b17f_fa82917cf85d", "R716": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_34cb7ea7_2436_46e0_806e_a3c7835ae228", "R721": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3279f575_1c62_4bf2_a6e8_de4c7ff36f8e", @@ -3535,6 +3539,7 @@ "ReactivePower": "https://w3id.org/emmo#EMMO_d8030875_6d89_4645_9728_bbc3b8690609", "ReactorTimeConstant": "https://w3id.org/emmo#EMMO_b03dfad7_eab8_4949_9d10_dd4fd12faaef", "Real": "https://w3id.org/emmo#EMMO_18d180e4_5e3e_42f7_820c_e08951223486", + "RealElectricImpedance": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f", "ReciprocalAmountPerVolumeUnit": "https://w3id.org/emmo#EMMO_aef218f9_6ded_4db9_9263_e78eed55e5d6", "ReciprocalCentiMetre": "https://w3id.org/emmo#ReciprocalCentiMetre", "ReciprocalCubicCentiMetre": "https://w3id.org/emmo#ReciprocalCubicCentiMetre", @@ -3637,6 +3642,7 @@ "ResponseTimeAtAnISE": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_1a104474_c326_4a29_ac26_26a05ac8f72c", "RestEnergy": "https://w3id.org/emmo#EMMO_5117c5fe_f661_46f8_83c3_b48947f1532a", "RestMass": "https://w3id.org/emmo#EMMO_3c947caf_4070_4c79_a3a3_e53274ac9944", + "Resting": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b", "RestingTime": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_2678a656_4a27_4706_8dde_b0a93e9b92fa", "ReversibleHydrogenElectrode": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0d9ba00d_04bc_4bdc_85af_3380694f6f68", "RevolutionPerMinute": "https://w3id.org/emmo#RevolutionPerMinute", @@ -3790,7 +3796,7 @@ "SiemensSquareMetrePerMole": "https://w3id.org/emmo#SiemensSquareMetrePerMole", "Sievert": "https://w3id.org/emmo#Sievert", "Sign": "https://w3id.org/emmo#EMMO_b21a56ed_f969_4612_a6ec_cb7766f7f31d", - "Signal": "https://w3id.org/emmo/domain/chameo#Signal", + "Signal": "https://w3id.org/emmo/domain/characterisation-methodology/chameo#Signal", "SignalReferencePotential": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_68059d94_4c21_4065_b329_07faeebc7e87", "Silicon": "https://w3id.org/emmo/domain/chemical-substance#substance_68c0876b_cb62_41cd_846d_95cc9d9a8733", "SiliconAtom": "https://w3id.org/emmo#EMMO_798b0c96_82ca_5ce8_8d5f_f9f72668cf5d", @@ -4318,6 +4324,7 @@ "UpQuark": "https://w3id.org/emmo#EMMO_0a3f04a6_ba3a_49d9_99da_08b0e26f51f0", "UpQuarkType": "https://w3id.org/emmo#EMMO_fc47b76f_ad01_4cd0_8fc6_55532000e7c8", "UpperCriticalMagneticFluxDensity": "https://w3id.org/emmo#EMMO_6bfe6ad2_96ba_4478_81e5_d8881c550757", + "UpperCurrentLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45", "UpperFrequencyLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_666f0b69_9c74_49a3_80b3_96a188332462", "UpperVoltageLimit": "https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6dcd5baf_58cd_43f5_a692_51508e036c88", "UraniumAtom": "https://w3id.org/emmo#EMMO_b233f8c0_37d8_51ae_9264_560e6649e246", diff --git a/versions/v0.9.0-beta/electrochemicalquantities.ttl b/versions/v0.9.0-beta/electrochemicalquantities.ttl index 882a543..96cb275 100644 --- a/versions/v0.9.0-beta/electrochemicalquantities.ttl +++ b/versions/v0.9.0-beta/electrochemicalquantities.ttl @@ -24,8 +24,6 @@ emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f a owl:AnnotationProperty . emmo:EMMO_5c78b424_087b_4e31_8c91_6422f1be1e86 owl:equivalentClass :electrochemistry_9c657fdc_b9d3_4964_907c_f9a6e8c5f52b . -emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 :electrochemistry_097ea615_c209_4edd_a1a1_5eea71d98fe8 "acimp/ohms"@en . - emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry_37b24a94_cae0_4d7a_9519_9f7692dec607 ; skos:altLabel "MassDiffusivity"@en ; emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q604008"@en ; @@ -101,6 +99,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "D40ParticleSize"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 40% of the sample's particles fall."@en . +:electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626 a owl:Class ; + rdfs:label "ImaginaryElectricImpedance"@en ; + rdfs:comment "the imaginary part of the complex electric impedance"@en ; + rdfs:subClassOf emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 ; + skos:prefLabel "ImaginaryElectricImpedance"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the imaginary part of the complex electric impedance"@en . + :electrochemistry_02d2d1d1_241c_429b_b4e7_31f2c3dc4835 a owl:Class ; rdfs:label "D95ParticleSize"@en ; rdfs:comment "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 95% of the sample's particles fall."@en ; @@ -381,6 +386,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "D50ParticleSize"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 50% of the sample's particles fall."@en . +:electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45 a owl:Class ; + rdfs:label "UpperCurrentLimit"@en ; + rdfs:comment "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en ; + rdfs:subClassOf :electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 ; + skos:prefLabel "UpperCurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + :electrochemistry_3e54f9e3_a31d_4821_9bfb_ef953a42c35b a owl:Class ; rdfs:label "MaximumPulseDischargingCurrent"@en ; rdfs:comment "the maximum current approved for pulse discharge of an electrochemical device"@en ; @@ -608,6 +620,13 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "ChargingCurrent"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electric current applied to an electrochemical device during a charging process"@en . +:electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea a owl:Class ; + rdfs:label "LowerCurrentLimit"@en ; + rdfs:comment "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en ; + rdfs:subClassOf :electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 ; + skos:prefLabel "LowerCurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + :electrochemistry_7f073272_8925_4344_995c_a5a6dd1fcde6 a owl:Class ; rdfs:label "ChargingConstantCurrentPercentage"@en ; rdfs:comment "the percentage of the total charge capacity that is obtained during a constant current charge process"@en ; @@ -705,6 +724,20 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry skos:prefLabel "DischargingSpecificCapacity"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "quotient of the capacity of a cell or battery [ or electrode or active material ] obtained during a discharge process by its mass."@en . +:electrochemistry_88dd2bce_fb17_4705_905d_892681812290 a owl:Class ; + rdfs:label "NumberOfIterations"@en ; + rdfs:comment "the number of times an iterative process should occur"@en ; + rdfs:subClassOf emmo:EMMO_ba882f34_0d71_4e4f_9d92_0c076c633a2c ; + skos:prefLabel "NumberOfIterations"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the number of times an iterative process should occur"@en . + +:electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100 a owl:Class ; + rdfs:label "NominalCapacity"@en ; + rdfs:comment "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en ; + rdfs:subClassOf :electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 ; + skos:prefLabel "NominalCapacity"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en . + :electrochemistry_8e943e12_ecc0_4093_899e_7226be6be7f2 a owl:Class ; rdfs:label "D90ParticleSize"@en ; rdfs:comment "a statistical measure used in particle size distribution analysis, indicating the particle diameter below which 90% of the sample's particles fall."@en ; @@ -820,6 +853,15 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the celsius temperature of the ambient environment"@en ; :electrochemistry_1b717a20_17e3_4480_8c60_c4ae94058f05 "Environmental_Temperature (C)"@en . +:electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f a owl:Class ; + rdfs:label "RealElectricImpedance"@en ; + rdfs:comment "the imaginary part of the complex electric impedance"@en ; + rdfs:subClassOf emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 ; + skos:altLabel "ACResistance"@en ; + skos:prefLabel "RealElectricImpedance"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q1048490"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "the imaginary part of the complex electric impedance"@en . + :electrochemistry_ae108db7_8765_4329_9908_059277dee586 a owl:Class ; rdfs:label "StepCapacity"@en ; rdfs:comment "the amount of charge that has passed through an electrochemical device within the time interval of a given testing step"@en ; @@ -1084,8 +1126,8 @@ emmo:EMMO_931a725b_926d_4f60_8955_61fe17fce98b rdfs:subClassOf :electrochemistry ; dcterms:license "https://creativecommons.org/licenses/by/4.0/legalcode" ; owl:imports ; - owl:versionIRI ; - owl:versionInfo "0.17.0-beta" . + owl:versionIRI ; + owl:versionInfo "0.18.0-beta" . a owl:NamedIndividual, foaf:Person ; @@ -1866,6 +1908,8 @@ In either case, the magnitude of the catalytic current depends on the applied po emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "electric potential of an ion-selective electrode (ISE) and activity of an analyte ion at which the potential of the ISE is independent of temperature"@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1351/goldbook.I03304"@en . +emmo:EMMO_79a02de5_b884_4eab_bc18_f67997d597a2 :electrochemistry_097ea615_c209_4edd_a1a1_5eea71d98fe8 "acimp/ohms"@en . + emmo:EMMO_e218c625_6a39_47a9_8d08_a2ef41c152a9 rdfs:subClassOf :electrochemistry_02eb0465_4f94_453c_8c1f_5ddf80134634 ; skos:altLabel "GravimetricEnergyDensity"@en ; :electrochemistry_811aafc3_0c6d_470e_b67e_ff5c82992609 "CmpEng(mWh/g)"@en . @@ -1997,14 +2041,6 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog skos:prefLabel "TemperatureLimit"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the temperature of a system"@en . -:electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 a owl:Class ; - rdfs:label "RatedCapacity"@en ; - rdfs:comment "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en ; - rdfs:subClassOf :electrochemistry_791c1915_a791_4450_acd8_7f94764743b5 ; - skos:prefLabel "RatedCapacity"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-03-15"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en . - :electrochemistry_9ed7210c_c4fa_467b_822d_ba12f885bdf4 a owl:Class ; rdfs:label "ConcentrationOverpotential"@en ; rdfs:comment "The concentration overpotential of an electrode reaction at a given electrode current density (c.d.) is basically the difference in equilibrium potentials across the diffusion layer. More precisely, it is the potential of a reference electrode (of the same electrode reaction as the working electrode ) with the interfacial concentrations which establish themselves at c.d., relative to the potential of a similar reference electrode with the concentrations of the bulk solution. From such a measured potential difference, with c.d. flowing, one needs to subtract the ohmic potential drop prevailing between the two electrodes."@en, @@ -2110,6 +2146,14 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog skos:prefLabel "NumberOfFiniteVolumeCells"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "number of discrete finite volume cells in a grid or sub-grid"@en . +:electrochemistry_9b3b4668_0795_4a35_9965_2af383497a26 a owl:Class ; + rdfs:label "RatedCapacity"@en ; + rdfs:comment "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en ; + rdfs:subClassOf :electrochemistry_791c1915_a791_4450_acd8_7f94764743b5 ; + skos:prefLabel "RatedCapacity"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-03-15"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "capacity value of a battery [or electrode or electrochemical device] determined under specified conditions and declared by the manufacturer"@en . + :electrochemistry_cc519a19_b8d5_4e3f_b893_3a884888ad79 a owl:Class ; rdfs:label "MaximumTemperature"@en ; rdfs:comment "the maximum allowable temperature"@en ; @@ -2186,14 +2230,6 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa :electrochemistry_a07dd85b_d0df_4d5d_8b0c_14d20ea3fe45 "current"@en ; :electrochemistry_ea9f4dba_8ca2_419e_9cdf_ce54e9ebbd46 "Current (A)"@en . -:electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 a owl:Class ; - rdfs:label "CurrentLimit"@en ; - rdfs:comment "limit on the electric current of an electrical system"@en ; - rdfs:subClassOf emmo:EMMO_c995ae70_3b84_4ebb_bcfc_69e6a281bb88, - :electrochemistry_b395a244_3a75_4737_be38_981bfa1277fe ; - skos:prefLabel "CurrentLimit"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the electric current of an electrical system"@en . - :electrochemistry_900e357f_2ee3_425a_a0b6_322661117787 a owl:Class ; rdfs:label "ElectrochemicalProperty"@en ; rdfs:subClassOf emmo:EMMO_909415d1_7c43_4d5e_bbeb_7e1910159f66 ; @@ -2292,6 +2328,14 @@ foaf:Person a owl:Class ; emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Faradaic_current"@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://goldbook.iupac.org/terms/view/F02321"@en . +:electrochemistry_74de2c33_84fc_4c2f_afe1_56d169149114 a owl:Class ; + rdfs:label "CurrentLimit"@en ; + rdfs:comment "limit on the electric current of an electrical system"@en ; + rdfs:subClassOf emmo:EMMO_c995ae70_3b84_4ebb_bcfc_69e6a281bb88, + :electrochemistry_b395a244_3a75_4737_be38_981bfa1277fe ; + skos:prefLabel "CurrentLimit"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "limit on the electric current of an electrical system"@en . + :electrochemistry_1cd1d777_e67b_47eb_81f1_edac35d9f2c6 a owl:Class ; rdfs:label "Overpotential"@en ; rdfs:comment "difference between the electrode potential with current flow, and the electrode potential without current flow, i.e. the equilibrium potential"@en, diff --git a/versions/v0.9.0-beta/electrochemistry-inferred.ttl b/versions/v0.9.0-beta/electrochemistry-inferred.ttl index f4fa0f9..c704a22 100644 --- a/versions/v0.9.0-beta/electrochemistry-inferred.ttl +++ b/versions/v0.9.0-beta/electrochemistry-inferred.ttl @@ -7,7 +7,7 @@ @base . rdf:type owl:Ontology ; - owl:versionIRI ; + owl:versionIRI ; ""@en , "CHAMEO is a domain ontology designed to model the common aspects across the different characterisation techniques and methodologies."@en , """Defines physical quantities in the International System of Quantities (ISQ). ISQ was made an official ISO standard in 2009 and is defined in the ISO/IEC 80000 standard. @@ -146,12 +146,12 @@ The symbolic module includes symbols, symbolic constructs and formal languages." "https://w3id.org/emmo/domain/characterisation-methodology/chameo" ; "2024-04-12" , "2024-06-23"^^xsd:date , - "2024-07-03"^^xsd:date ; + "2024-07-05"^^xsd:date ; "https://creativecommons.org/licenses/by/4.0/legalcode" , "https://creativecommons.org/licenses/by/4.0/legalcode"@en ; "2024-04-12" , "2024-06-23"^^xsd:date , - "2024-07-03"^^xsd:date ; + "2024-07-05"^^xsd:date ; "EMMC ASBL" , "EMMC ASBL"@en , """EMMC ASBL @@ -241,11 +241,11 @@ We kindly acknowledge NIST for reusing their content, including the selection of "You can contact EMMO Authors via emmo@emmc.eu"@en ; owl:backwardCompatibleWith "" , " " , - "0.16.0-beta" ; - owl:priorVersion "0.16.0-beta" , + "0.17.0-beta" ; + owl:priorVersion "0.17.0-beta" , "0.5.0-beta" , "1.0.0-beta2" ; - owl:versionInfo "0.17.0-beta" , + owl:versionInfo "0.18.0-beta" , "0.6.0-beta" , "1.0.0-beta3" , "1.0.0-beta7" ; @@ -2333,7 +2333,7 @@ While the EMMO FOL introduces the quantum causality relation C(x,y) as primitive rdf:type owl:ObjectProperty ; rdfs:subPropertyOf ; rdfs:domain ; - rdfs:range ; + rdfs:range ; "hasSolvent"@en . @@ -2364,7 +2364,7 @@ While the EMMO FOL introduces the quantum causality relation C(x,y) as primitive rdf:type owl:ObjectProperty ; rdfs:subPropertyOf ; rdfs:domain ; - rdfs:range ; + rdfs:range ; "hasSolute"@en . @@ -34532,7 +34532,7 @@ Wikipedia"""@en ; , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "ZincElectrode"@en ; "an electrode in which the main active material is zinc metal"@en ; @@ -34555,7 +34555,7 @@ Wikipedia"""@en ; rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "LithiumElectrode"@en ; "an electrode in which the active material is lithium metal" . @@ -44391,164 +44391,11 @@ Wear is defined as the progressive removal of the material from a solid surface "InChI=1S/Pb" . -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0139937b_2724_4864_84fb_f14bcfb83538 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0bdf0bb9_41fc_455d_af11_a249e24acdf6 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_0f2f65a7_5cc4_4c86_a4d0_676771c646f1 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_250fa43e_1f26_4ed8_b787_91a2325a8e7b - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_25f6ff4c_53ad_4837_97c4_aa6f06099bb5 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_2a540939_3908_4f85_92f9_c46da7d4e9cb - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_2a87ca10_fc6a_4d61_b48c_d9790a566ee3 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_3899a9c9_9b34_443e_8ce6_0257589bb38a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_3ac62305_acd6_4312_9e31_4f824bd2530d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_4126ee09_b9c6_4694_bf33_0d8970e05f72 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_4c62d334_a124_40b3_9fd1_fe713d01a6af - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_5088ad54_b37d_4ee1_a086_d6c17e644f9a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_5cee19d2_f916_4264_a8ed_efed13a808d2 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_68c0876b_cb62_41cd_846d_95cc9d9a8733 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_68f9b85e_340f_46ec_96da_ebb6bd62f5fd - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_73d4606c_7460_4a5c_9413_793bdf35753e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_7dc738d6_74f2_489e_ae84_a6dbdf627f2e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_848003a2_71ee_4967_8039_354c907ec7f4 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_97439fbb_155f_433d_9edd_d510cd491f24 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_9bd78e1c_a4dc_41b6_8013_adb51df1ffdc - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_9da78aea_d436_40e2_a68f_c3dee32b825e - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_aa8e9cc4_5f66_4307_b1c8_26fac7653a90 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_acdb232f_8041_4e11_8a11_5db2d2baae4d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_b01771a9_218a_4b01_b20f_4021cfa0b7d5 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_b3815a7f_f64a_48f6_b0ce_d0032578c699 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c109ca45_08c7_4436_a818_a9c575785e2f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c28a0967_ed23_48cc_a14e_a651d75a19db - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c5582dae_ccff_4fbe_adaa_078091054640 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_c728b6b9_449a_45ff_b5ae_6b7968708f0d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_cd17ca33_ae3d_4738_8930_547673bf6c1f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_cdd18f0c_e7b3_4d09_b3dd_c09fe4b1adba - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_d53259a7_0d9c_48b9_a6c1_4418169df303 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_d673ceb2_3045_4e2e_8cad_56f5169b542f - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_db74b6b7_09fc_40db_a7d5_6eb86b69192a - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_dc5fb846_1824_40f8_9834_81f118aa1c2d - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_dcdbdbed_2e20_40d1_a7a5_5761de7f0618 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_e1e6ff98_0725_4d27_ab21_2ca5a95371f0 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_e8fafdc8_6cd3_4dd0_9630_10ca8e3f1827 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_f3e7979a_e3ef_450a_8762_7d8778afe478 - rdf:type owl:Class . - - -### https://w3id.org/emmo/domain/chemicalsubstance#substance_f7525766_90cf_43e9_8932_7cb3b14f676f - rdf:type owl:Class . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_0089729b_5890_4c15_aa09_1244d41f8626 + rdf:type owl:Class ; + rdfs:subClassOf ; + "ImaginaryElectricImpedance"@en ; + "the imaginary part of the complex electric impedance"@en . ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_01260656_ac32_472e_9513_a607366538ec @@ -44872,11 +44719,11 @@ Wear is defined as the progressive removal of the material from a solid surface rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCLCOElectrode"@en ; @@ -45639,7 +45486,7 @@ and t* through mathematical models, provided that the long-time potential- deter , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LFPElectrode"@en ; @@ -46241,7 +46088,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "PtElectrode"@en ; "PlatinumElectrode"@en ; @@ -46343,7 +46190,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SiliconOxideGraphiteElectrode"@en ; @@ -46477,7 +46324,7 @@ Aluminum foil"""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "FTOElectrode"@en ; @@ -46500,7 +46347,7 @@ Aluminum foil"""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "NiOOHElectrode"@en , "NickelOxyhydroxideElectrode"@en ; @@ -46544,6 +46391,14 @@ Aluminum foil"""@en . "a coin case with a nominal diameter of 7.9 mm and a height of 1.65 mm"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b + rdf:type owl:Class ; + rdfs:subClassOf , + ; + "Resting"@en ; + "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 rdf:type owl:Class ; rdfs:subClassOf ; @@ -46811,6 +46666,13 @@ Aluminum foil"""@en . "A material relation in electrochemistry."@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3dac5115_6337_40a6_a2ab_317087fe3b45 + rdf:type owl:Class ; + rdfs:subClassOf ; + "UpperCurrentLimit"@en ; + "the upper bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_3e54f9e3_a31d_4821_9bfb_ef953a42c35b rdf:type owl:Class ; rdfs:subClassOf , @@ -46981,7 +46843,7 @@ Aluminum foil"""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNMOElectrode"@en ; @@ -47201,11 +47063,11 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCLMOElectrode"@en ; @@ -47294,7 +47156,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumNickelPhosphateElectrode"@en ; @@ -47549,7 +47411,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumIronPhosphateElectrode"@en ; @@ -47904,7 +47766,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "CarbonMonofluorideElectrode"@en ; "electrode in which the active material is carbon monofluoride"@en ; @@ -48131,7 +47993,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "HardCarbonElectrode"@en ; "electrode in which the active material is hard carbon"@en . @@ -48291,7 +48153,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "SAE"@en ; "SolidAmalgamElectrode"@en ; @@ -48426,7 +48288,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LTOElectrode"@en ; @@ -48518,20 +48380,13 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ] . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "system that consists of at least two electron conductors (electrodes) in contact with ionic conductors (electrolytes)"@en ; - "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_6fec8cc1_4e6c_428e_8343_6cf3c286a185 rdf:type owl:Class ; rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "AuElectrode"@en ; "GoldElectrode"@en ; @@ -48691,7 +48546,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NiOElectrode"@en ; @@ -48721,7 +48576,7 @@ The real (true) area, A_{real}, takes into account non-idealities of the interfa , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "TiO2Electrode"@en ; @@ -48915,13 +48770,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ] . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "in secondary cells, the active material is restored to its original state during charge"@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - [ rdf:type owl:Axiom ; owl:annotatedSource ; owl:annotatedProperty ; @@ -48965,6 +48813,13 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s "an electrode in which the primary active material consists of caesium or caesium compounds"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7db845e7_0e5b_47d4_b954_2a2b8e85deea + rdf:type owl:Class ; + rdfs:subClassOf ; + "LowerCurrentLimit"@en ; + "the lower bounding limit on the current used in the definition of an electrochemical testing protocol"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_7f073272_8925_4344_995c_a5a6dd1fcde6 rdf:type owl:Class ; rdfs:subClassOf ; @@ -49118,7 +48973,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "LiquidGalliumElectrode"@en ; "a liquid electrode with an active material of gallium"@en . @@ -49188,7 +49043,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "ZnOElectrode"@en ; @@ -49446,6 +49301,13 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "an electrode in which the primary active material consists of sulfur or sulfur compounds"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_88dd2bce_fb17_4705_905d_892681812290 + rdf:type owl:Class ; + rdfs:subClassOf ; + "NumberOfIterations"@en ; + "the number of times an iterative process should occur"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8968eb7a_9a65_4286_a596_c31b998df329 rdf:type owl:Class ; rdfs:subClassOf ; @@ -49504,6 +49366,13 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "substance that increases chemical reaction speed, and which is conserved after the reaction"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8abde9d0_84f6_4b4f_a87e_86028a397100 + rdf:type owl:Class ; + rdfs:subClassOf ; + "NominalCapacity"@en ; + "the rated capacity that is representative of the typical value associated with a cell as stated by the manufacturer"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_8b40856f_1ca2_4137_9616_7fb624671909 rdf:type owl:Class ; rdfs:subClassOf , @@ -50109,7 +49978,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumCobaltPhosphateElectrode"@en ; @@ -50298,13 +50167,6 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; "plate in which the active material is applied as a paste to a conductive current collector"@en . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "plate in which the active material is applied as a paste to a conductive current collector"@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_a24f8581_a5a4_41a4_bb45_d0fdd5c0d810 rdf:type owl:Class ; @@ -50397,7 +50259,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "SilverOxideElectrode"@en ; "an electrode in which the primary active material consists of manganese dioxide or vmanganese dioxide compounds"@en ; @@ -50427,7 +50289,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "AgElectrode"@en ; "SilverElectrode"@en ; @@ -50662,7 +50524,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "CupricOxideElectrode"@en ; "CopperOxideElectrode"@en ; @@ -50751,6 +50613,15 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog "Environmental_Temperature (C)"@en . +### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abf986d2_90d5_4746_b42b_89dc7cc1bf0f + rdf:type owl:Class ; + rdfs:subClassOf ; + "ACResistance"@en ; + "RealElectricImpedance"@en ; + "https://www.wikidata.org/wiki/Q1048490"@en ; + "the imaginary part of the complex electric impedance"@en . + + ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_abfadc99_6e43_4d37_9b04_7fc5b0f327ae rdf:type owl:Class ; rdfs:subClassOf , @@ -50782,7 +50653,8 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e rdf:type owl:Class ; rdfs:subClassOf ; - "CCCVCycling"@en ; + "CCCVCycling"@en ; + "ConstantCurrentConstantVoltageCycling"@en ; "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en . @@ -51030,7 +50902,7 @@ G° or ΔrG , written as a reduction with respect to that of the standard hydrog , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NMCElectrode"@en ; @@ -51360,11 +51232,11 @@ of other configurations are used."""@en . rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNMOLFPElectrode"@en ; @@ -51466,13 +51338,6 @@ of other configurations are used."""@en . "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; "https://en.wikipedia.org/wiki/Fuel_cell"@en . -[ rdf:type owl:Axiom ; - owl:annotatedSource ; - owl:annotatedProperty ; - owl:annotatedTarget "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" - ] . - ### https://w3id.org/emmo/domain/electrochemistry#electrochemistry_bea04148_10d9_4eda_9cd5_8f609d7e9ff8 rdf:type owl:Class ; @@ -51568,7 +51433,7 @@ of other configurations are used."""@en . , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LMOElectrode"@en ; @@ -51751,11 +51616,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "ITO"@en ; @@ -51809,7 +51674,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "GraphiteElectrode"@en ; "electrode in which the active material is graphite"@en . @@ -51928,7 +51793,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "MnO2Electrode"@en ; "ManganeseDioxideElectrode"@en ; @@ -51943,7 +51808,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LNOElectrode"@en ; @@ -51963,7 +51828,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "IrO2Electrode"@en ; @@ -51977,7 +51842,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumManganesePhosphateElectrode"@en ; @@ -52146,7 +52011,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "IronDisulfideElectrode"@en ; "an electrode in which the primary active material consists of iron disulfide or iron disulfide compounds."@en ; @@ -52509,7 +52374,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; "HgElectrode"@en ; "MercuryElectrode"@en ; @@ -52785,11 +52650,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SiliconGraphiteElectrode"@en ; @@ -52802,7 +52667,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumManganeseOxideElectrode"@en ; @@ -53004,7 +52869,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumCobaltOxideElectrode"@en ; @@ -53096,7 +52961,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "NCAElectrode"@en ; @@ -53315,7 +53180,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "PbOElectrode"@en ; @@ -53401,7 +53266,7 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "SodiumChromiumOxideElectrode"@en ; @@ -53621,7 +53486,7 @@ In either case, the magnitude of the catalytic current depends on the applied po , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LCOElectrode"@en ; @@ -53672,11 +53537,11 @@ In either case, the magnitude of the catalytic current depends on the applied po rdfs:subClassOf , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] , [ rdf:type owl:Restriction ; owl:onProperty ; - owl:someValuesFrom + owl:someValuesFrom ] ; owl:deprecated "true"^^xsd:boolean ; "LMOLFPElectrode"@en ; @@ -53808,10 +53673,10 @@ In either case, the magnitude of the catalytic current depends on the applied po "The universe is considered as a causally self-connected object, encompassing all other objects. For this reason is unique."@en . -[ owl:qualifiedCardinality "3"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "3"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "4"^^xsd:nonNegativeInteger @@ -53835,10 +53700,10 @@ In either case, the magnitude of the catalytic current depends on the applied po [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:minQualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:minQualifiedCardinality "2"^^xsd:nonNegativeInteger +[ owl:minQualifiedCardinality "1"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger @@ -53850,7 +53715,7 @@ In either case, the magnitude of the catalytic current depends on the applied po [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger ] . -[ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger +[ owl:minQualifiedCardinality "2"^^xsd:nonNegativeInteger ] . [ owl:qualifiedCardinality "1"^^xsd:nonNegativeInteger diff --git a/versions/v0.9.0-beta/electrochemistry.ttl b/versions/v0.9.0-beta/electrochemistry.ttl index baa1206..d442e3c 100644 --- a/versions/v0.9.0-beta/electrochemistry.ttl +++ b/versions/v0.9.0-beta/electrochemistry.ttl @@ -1,6 +1,6 @@ @prefix : . @prefix bibo: . -@prefix chemsub: . +@prefix chemsub: . @prefix dcterms: . @prefix emmo: . @prefix foaf: . @@ -54,9 +54,9 @@ schema:name a owl:AnnotationProperty . dcterms:created "2022-11-25"^^xsd:date ; dcterms:creator , ; - dcterms:issued "2024-07-03"^^xsd:date ; + dcterms:issued "2024-07-05"^^xsd:date ; dcterms:license "https://creativecommons.org/licenses/by/4.0/legalcode" ; - dcterms:modified "2024-07-03"^^xsd:date ; + dcterms:modified "2024-07-05"^^xsd:date ; dcterms:publisher "EMMO" ; dcterms:source , , @@ -67,13 +67,13 @@ schema:name a owl:AnnotationProperty . bibo:status "unstable" ; vann:preferredNamespacePrefix "echem" ; vann:preferredNamespaceUri "https://w3id.org/emmo/domain/electrochemistry" ; - owl:backwardCompatibleWith "0.16.0-beta" ; + owl:backwardCompatibleWith "0.17.0-beta" ; owl:imports , , - ; - owl:priorVersion "0.16.0-beta" ; - owl:versionIRI ; - owl:versionInfo "0.17.0-beta" ; + ; + owl:priorVersion "0.17.0-beta" ; + owl:versionIRI ; + owl:versionInfo "0.18.0-beta" ; foaf:logo "https://raw.githubusercontent.com/emmo-repo/domain-electrochemistry/gh-pages/assets/img/fig/png/domain-electrochemistry-logo.png" . :electrochemistry_027d437e_3bbf_4eda_940b_e509f8d2b993 a owl:Class ; @@ -535,6 +535,14 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "R716" ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a coin case with a nominal diameter of 7.9 mm and a height of 1.65 mm"@en . +:electrochemistry_35469eeb_7fc3_4317_a4b5_b3be7015444b a owl:Class ; + rdfs:label "Resting"@en ; + rdfs:comment "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en ; + rdfs:subClassOf , + :electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 ; + skos:prefLabel "Resting"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a step in an electrochemical testing workflow in which the electrochemical device is held at open-circuit conditions (i.e. cell current = 0 A) and occuring in series with at least one active (i.e. cell current ~= 0 A) step."@en . + :electrochemistry_36444184_1100_4271_869f_7f2d983aaecb a owl:Class ; rdfs:label "P45173115" ; rdfs:comment "a prismatic case with a nominal length of 45 mm, width of 173 mm, and height of 115 mm"@en ; @@ -1564,6 +1572,15 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "TinBasedElectrode"@en ; emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "an electrode in which the primary active material consists of tin or tin compounds"@en . +:electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c a owl:Class ; + rdfs:label "PastedPlate"@en ; + rdfs:comment "plate in which the active material is applied as a paste to a conductive current collector"@en ; + rdfs:subClassOf :electrochemistry_92147e31_d015_4889_a092_04fbab033f15 ; + skos:altLabel "PastedElectrode"@en ; + skos:prefLabel "PastedPlate"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "plate in which the active material is applied as a paste to a conductive current collector"@en . + :electrochemistry_a277e420_2483_44d5_a2bc_4e421dea231a a owl:Class ; rdfs:label "R926" ; rdfs:comment "a coin case with a nominal diameter of 9.5 mm and a height of 2.6 mm"@en ; @@ -1658,10 +1675,11 @@ schema:name a owl:AnnotationProperty . emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a coin case with a nominal diameter of 11.6 mm and a height of 4.2 mm"@en . :electrochemistry_ac6c2371_995a_4fcb_89a2_15cb6615741e a owl:Class ; - rdfs:label "CCCVCycling"@en ; + rdfs:label "ConstantCurrentConstantVoltageCycling"@en ; rdfs:comment "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en ; rdfs:subClassOf :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; - skos:prefLabel "CCCVCycling"@en ; + skos:altLabel "CCCVCycling"@en ; + skos:prefLabel "ConstantCurrentConstantVoltageCycling"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a cycling protocol in which an electrochemical cell is first put through a CCCV charging process followed by a constant current discharge process"@en . :electrochemistry_ad9cdad6_66e8_471e_a7c6_b79f37c20814 a owl:Class ; @@ -1783,6 +1801,17 @@ schema:name a owl:AnnotationProperty . skos:prefLabel "P20100141" ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a prismatic case with a nominal length of 20 mm, width of 100 mm, and height of 141 mm"@en . +:electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d a owl:Class ; + rdfs:label "FuelCell"@en ; + rdfs:comment "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; + rdfs:subClassOf :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; + skos:prefLabel "FuelCell"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q180253"@en ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-05"@en ; + emmo:EMMO_6dd685dd_1895_46e4_b227_be9f7d643c25 "https://dbpedia.org/page/Fuel_cell"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; + emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Fuel_cell"@en . + :electrochemistry_bea04148_10d9_4eda_9cd5_8f609d7e9ff8 a owl:Class ; rdfs:label "CelsiusTemperatureMeasurement"@en ; rdfs:comment "measurement of temperature"@en ; @@ -3335,15 +3364,6 @@ schema:name a owl:AnnotationProperty . "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-26"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "interface between an electrolyte and an electrode where an electrode reaction takes place."@en . -:electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c a owl:Class ; - rdfs:label "PastedPlate"@en ; - rdfs:comment "plate in which the active material is applied as a paste to a conductive current collector"@en ; - rdfs:subClassOf :electrochemistry_92147e31_d015_4889_a092_04fbab033f15 ; - skos:altLabel "PastedElectrode"@en ; - skos:prefLabel "PastedPlate"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-03"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "plate in which the active material is applied as a paste to a conductive current collector"@en . - :electrochemistry_a462859d_d8bd_48ea_8bde_1576f1248a1e a owl:Class ; rdfs:label "SilverElectrode"@en ; rdfs:comment "electrode in the form of foil, mesh, wire, rod, tube, powder, pellets, or single crystal of silver"@en ; @@ -3459,17 +3479,6 @@ of other configurations are used."""@en . emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-19"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "part which insures insulation between the plate (electrode) edges and adjacent plates (electrodes) and the container side walls"@en . -:electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d a owl:Class ; - rdfs:label "FuelCell"@en ; - rdfs:comment "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - rdfs:subClassOf :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; - skos:prefLabel "FuelCell"@en ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q180253"@en ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-05"@en ; - emmo:EMMO_6dd685dd_1895_46e4_b227_be9f7d643c25 "https://dbpedia.org/page/Fuel_cell"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - emmo:EMMO_c84c6752_6d64_48cc_9500_e54a3c34898d "https://en.wikipedia.org/wiki/Fuel_cell"@en . - :electrochemistry_bed5b5f9_b89d_45e3_a8c2_81b70ae21847 a owl:Class ; rdfs:label "SeriesParallelConnection"@en ; rdfs:comment "arrangement of cells or batteries wherein in series connected cells or batteries are connected in parallel."@en ; @@ -4518,15 +4527,20 @@ schema:Person a owl:Class ; skos:prefLabel "BimetallicOxideElectrode"@en ; emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "an electrode consisting of two metal oxide active materials"@en . -:electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 a owl:Class ; - rdfs:label "GalvanostaticProcess"@en ; - rdfs:comment "a process in which the electric current is kept constant"@en ; - rdfs:subClassOf [ a owl:Restriction ; - owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; - owl:someValuesFrom :electrochemistry_22725105_c941_4b14_a4a2_fcb627958607 ], - :electrochemistry_5548f188_df00_4c05_ae98_7846e92efe36 ; - skos:prefLabel "GalvanostaticProcess"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a process in which the electric current is kept constant"@en . +:electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 a owl:Class ; + rdfs:label "ActiveMaterial"@en ; + rdfs:comment "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; + rdfs:subClassOf :electrochemistry_b5ea31c9_bb10_4276_980e_c3eceb1efc82, + :electrochemistry_ebdb68e9_c4b5_4d57_a042_c0f51d446755 ; + skos:altLabel "ActiveElectrochemicalMaterial"@en, + "ElectrochemicallyActiveMaterial"@en ; + skos:prefLabel "ActiveMaterial"@en ; + emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q120907375" ; + emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-33", + "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-14"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; + emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "material which reacts chemically to produce electric energy when the cell discharges", + "in secondary cells, the active material is restored to its original state during charge"@en . :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 a owl:Class ; rdfs:label "PotentiometricStrippingAnalysis"@en ; @@ -4601,20 +4615,15 @@ schema:Person a owl:Class ; "The electrode (or interfacial) reaction involves all the processes (chemical reaction, structural reorganization, adsorption) accompanying the charge transfer step."@en ; emmo:EMMO_fe015383_afb3_44a6_ae86_043628697aa2 "https://doi.org/10.1351/goldbook.E01960"@en . -:electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 a owl:Class ; - rdfs:label "ActiveMaterial"@en ; - rdfs:comment "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; - rdfs:subClassOf :electrochemistry_b5ea31c9_bb10_4276_980e_c3eceb1efc82, - :electrochemistry_ebdb68e9_c4b5_4d57_a042_c0f51d446755 ; - skos:altLabel "ActiveElectrochemicalMaterial"@en, - "ElectrochemicallyActiveMaterial"@en ; - skos:prefLabel "ActiveMaterial"@en ; - emmo:EMMO_26bf1bef_d192_4da6_b0eb_d2209698fb54 "https://www.wikidata.org/wiki/Q120907375" ; - emmo:EMMO_50c298c2_55a2_4068_b3ac_4e948c33181f "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=482-02-33", - "https://www.electropedia.org/iev/iev.nsf/display?openform&ievref=114-03-14"@en ; - emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "material that is oxidized or reduced at an electrode in an electrochemical cell"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "material which reacts chemically to produce electric energy when the cell discharges", - "in secondary cells, the active material is restored to its original state during charge"@en . +:electrochemistry_78a8f60b_10c2_41ee_9946_d35437e1edb5 a owl:Class ; + rdfs:label "GalvanostaticProcess"@en ; + rdfs:comment "a process in which the electric current is kept constant"@en ; + rdfs:subClassOf [ a owl:Restriction ; + owl:onProperty emmo:EMMO_ae2d1a96_bfa1_409a_a7d2_03d69e8a125a ; + owl:someValuesFrom :electrochemistry_22725105_c941_4b14_a4a2_fcb627958607 ], + :electrochemistry_5548f188_df00_4c05_ae98_7846e92efe36 ; + skos:prefLabel "GalvanostaticProcess"@en ; + emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 "a process in which the electric current is kept constant"@en . :electrochemistry_8a1c9a7b_978c_4421_a9c1_d0b07b42aab9 a owl:Class ; rdfs:label "ChemicalReaction"@en ; @@ -4953,9 +4962,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "extremely resistant to many chemicals, impermeable to gases and liquids, and has good electrical conductivity, high hardness and strength, and biocompatibility"@en . + owl:annotatedTarget "electrode made of glassy carbon material with an intertwined graphitic ribbon structure, formed by pyrolysis of a resol precursor at temperatures up to 3000 °C"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -4976,28 +4985,22 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "A disc electrode that is embedded in the centre of a cylinder which rotates in solution around the longitudinal cylinder axis."@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "composite system in which the supplied electric energy mainly produces chemical reactions or, conversely, in which the energy released by chemical reactions is mainly delivered by the system as electric energy"@en . + owl:annotatedTarget "a system containing two electrodes that allow transport of electrons, separated by an electrolyte that allows movement of ions but blocks movement of electrons."@en . [] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "system that consists of at least two electron conductors (electrodes) in contact with ionic conductors (electrolytes)"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" . + owl:annotatedTarget "composite system in which the supplied electric energy mainly produces chemical reactions or, conversely, in which the energy released by chemical reactions is mainly delivered by the system as electric energy"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "glassy carbon combines glass-like mechanical characteristics with physical properties similar to graphite, owing to its “graphene ribbon” structure"@en . - -[] a owl:Axiom ; - dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_6f2c88c9_5c04_4953_a298_032cc3ab9b77 ; - owl:annotatedTarget "a system containing two electrodes that allow transport of electrons, separated by an electrolyte that allows movement of ions but blocks movement of electrons."@en . + owl:annotatedTarget "extremely resistant to many chemicals, impermeable to gases and liquids, and has good electrical conductivity, high hardness and strength, and biocompatibility"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5033,13 +5036,13 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "one of the most frequently used working electrodes"@en . + owl:annotatedTarget "glassy carbon combines glass-like mechanical characteristics with physical properties similar to graphite, owing to its “graphene ribbon” structure"@en . [] a owl:Axiom ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; - owl:annotatedTarget "in secondary cells, the active material is restored to its original state during charge"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedTarget "material that is oxidized or reduced at an electrode in an electrochemical cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5047,12 +5050,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; owl:annotatedTarget "material which reacts chemically to produce electric energy when the cell discharges" . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_79d1b273_58cd_4be6_a250_434817f7c261 ; - owl:annotatedTarget "material that is oxidized or reduced at an electrode in an electrochemical cell"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5061,9 +5058,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_057bb143_639c_472b_99ed_ffa1867f6e63 ; - owl:annotatedTarget "electrode made of glassy carbon material with an intertwined graphitic ribbon structure, formed by pyrolysis of a resol precursor at temperatures up to 3000 °C"@en . + owl:annotatedTarget "one of the most frequently used working electrodes"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5083,18 +5080,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_83f2b1e9_cb67_4dbf_977f_ba54bbae374f ; owl:annotatedTarget "charge during which the electric current is maintained at a constant value regardless of the battery voltage or temperature"@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; - owl:annotatedTarget "Electrolyte solution in the anodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the anode is placed."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; owl:annotatedTarget "electrolyte on the anode side of an electrochemical cell that is divided into compartments"@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_865a40fc_2187_4549_a7e1_37aa2458448f ; + owl:annotatedTarget "Electrolyte solution in the anodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the anode is placed."@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5133,15 +5130,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_8d3bf304_78e4_4e99_abe1_6ab429e44ed1 ; - owl:annotatedTarget "a sealed cell may be equipped with a safety device to prevent a dangerously high internal pressure and is designed to operate during its life in its original sealed state"@en . + owl:annotatedTarget "cell which remains closed and does not release either gas or liquid when operated within the limits specified by the manufacturer"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_8d3bf304_78e4_4e99_abe1_6ab429e44ed1 ; - owl:annotatedTarget "cell which remains closed and does not release either gas or liquid when operated within the limits specified by the manufacturer"@en . + owl:annotatedTarget "a sealed cell may be equipped with a safety device to prevent a dangerously high internal pressure and is designed to operate during its life in its original sealed state"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5150,10 +5147,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "capacitor consisting of a metallic plate as first conductor, a very thin oxide film formed on the metal as the dielectric and an electrolyte as second conductor"@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_06d8e1ee_924a_4915_998d_33a69f41dadc ; - owl:annotatedTarget "operation during which an electrochemical cell supplies electric energy as the result of chemical changes within the cell"@en . + owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; + owl:annotatedTarget "two-step electrochemical measurement in which 1) material is accumulated at an electrode and 2) the material is removed by chemical reaction or electrochemically at constant current with measurement of electrode potential"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5161,6 +5158,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; owl:annotatedTarget "historically for the analysis of metal ions, mercury ions were added to the test solution to form a mercury amalgam when reduced. Alternatively, an HMDE or MFE was used and the oxidizing agent added after amalgam formation. However, the toxicity of mercury and its compounds have all but precluded the present-day use of mercury"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_06d8e1ee_924a_4915_998d_33a69f41dadc ; + owl:annotatedTarget "operation during which an electrochemical cell supplies electric energy as the result of chemical changes within the cell"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5179,12 +5182,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; owl:annotatedTarget "the time between changes in potential in step 2 is related to the concentration of analyte in the solution"@en . -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_916b1863_f417_4b94_9407_9d749ada9ed5 ; - owl:annotatedTarget "two-step electrochemical measurement in which 1) material is accumulated at an electrode and 2) the material is removed by chemical reaction or electrochemically at constant current with measurement of electrode potential"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5211,15 +5208,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_9ee6e728_e8f5_4b36_a045_d63da69dfc85 ; - owl:annotatedTarget "overcharge is also the act of charging beyond a certain limit specified by the manufacturer"@en . + owl:annotatedTarget "continued charging of a fully charged secondary cell or battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_9ee6e728_e8f5_4b36_a045_d63da69dfc85 ; - owl:annotatedTarget "continued charging of a fully charged secondary cell or battery"@en . + owl:annotatedTarget "overcharge is also the act of charging beyond a certain limit specified by the manufacturer"@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5227,6 +5224,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_9f466223_e20a_474d_ac4d_6d4b6131c275 ; owl:annotatedTarget "an electrode that holds its potential essentially constant by efficiently allowing electric current to pass"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_a0580fa9_5073_44af_b33e_7adbc83892d0 ; + owl:annotatedTarget "electrode reaction in which oxidation occurs at the anode"@en . + [] a owl:Axiom ; dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5242,14 +5245,14 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0580fa9_5073_44af_b33e_7adbc83892d0 ; - owl:annotatedTarget "electrode reaction in which oxidation occurs at the anode"@en . + owl:annotatedSource :electrochemistry_a0a619d7_da95_41f0_8bc3_9c19d636d543 ; + owl:annotatedTarget "electrode that serves only as a source or sink for electrons without playing a chemical role in the electrode reaction"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0a619d7_da95_41f0_8bc3_9c19d636d543 ; - owl:annotatedTarget "electrode that serves only as a source or sink for electrons without playing a chemical role in the electrode reaction"@en . + owl:annotatedSource :electrochemistry_a0fcb105_587f_45d8_a89a_46dc8f745069 ; + owl:annotatedTarget "partial or complete external covering of a cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5260,14 +5263,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a0fcb105_587f_45d8_a89a_46dc8f745069 ; - owl:annotatedTarget "partial or complete external covering of a cell"@en . - -[] a owl:Axiom ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a1ec9e3c_c624_4848_af13_89a6bc54d77c ; - owl:annotatedTarget "plate in which the active material is applied as a paste to a conductive current collector"@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedSource :electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e ; + owl:annotatedTarget "process inside an electrolytic cell used to coat a conductive object with a layer of a material"@en . [] a owl:Axiom ; dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; @@ -5278,8 +5275,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a2b92d2e_4431_411e_8da5_a4c08bac2c0e ; - owl:annotatedTarget "process inside an electrolytic cell used to coat a conductive object with a layer of a material"@en . + owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; + owl:annotatedTarget "component of a cell which permits the flow of gas in one direction only"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5287,12 +5284,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; owl:annotatedTarget "a valve has a characteristic venting or opening and closing pressure"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a2f4dca3_829f_412b_9025_bd7581aad82a ; - owl:annotatedTarget "component of a cell which permits the flow of gas in one direction only"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5305,6 +5296,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a462859d_d8bd_48ea_8bde_1576f1248a1e ; owl:annotatedTarget "electrode in the form of foil, mesh, wire, rod, tube, powder, pellets, or single crystal of silver"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; + owl:annotatedTarget "a chemical reaction in an electrolyte involving a transfer of electrons between chemical components or between chemical components and an electrode"@en . + [] a owl:Axiom ; dcterms:source "Bockris, J. O'M. and Despić, . Aleksandar R. (2011, December 15). Electrochemical reaction. Encyclopedia Britannica. https://www.britannica.com/science/electrochemical-reaction" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5317,12 +5314,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; owl:annotatedTarget "the electrode reaction can also involve other chemical reactions including subreactions on a cell electrode"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_a6a69e90_06b5_45b1_83cf_7c0bf39b2914 ; - owl:annotatedTarget "a chemical reaction in an electrolyte involving a transfer of electrons between chemical components or between chemical components and an electrode"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5355,15 +5346,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_ae56cce3_7a7c_4e53_bb58_31e0d642d47e ; - owl:annotatedTarget "this flame front may originate from a spark or an external naked flame igniting combustible electrolysis gas"@en . + owl:annotatedTarget "vent of special design which provides protection against the propagation of a flame front from or into the interior of a secondary cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_ae56cce3_7a7c_4e53_bb58_31e0d642d47e ; - owl:annotatedTarget "vent of special design which provides protection against the propagation of a flame front from or into the interior of a secondary cell"@en . + owl:annotatedTarget "this flame front may originate from a spark or an external naked flame igniting combustible electrolysis gas"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5395,6 +5386,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_b525a629_a679_464f_bc5b_b49d2fc82686 ; owl:annotatedTarget "an electrochemical cell for conductivity measurements"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; + owl:annotatedTarget "by convention, cell electrode at which an oxidation reaction occurs"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5419,12 +5416,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; owl:annotatedTarget "the concepts of “anode” and “cathode” are related only to the direction of electron flow, not to the polarity of the electrodes"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_b6319c74_d2ce_48c0_a75a_63156776b302 ; - owl:annotatedTarget "by convention, cell electrode at which an oxidation reaction occurs"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5433,15 +5424,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_b79d4f9e_5727_4895_8d7f_5fc18d83eb90 ; - owl:annotatedTarget "in a galvanic cell, parasitic reactions may cause inefficiencies or loss of performance"@en . + owl:annotatedTarget "an unwanted side reaction"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_b79d4f9e_5727_4895_8d7f_5fc18d83eb90 ; - owl:annotatedTarget "an unwanted side reaction"@en . + owl:annotatedTarget "in a galvanic cell, parasitic reactions may cause inefficiencies or loss of performance"@en . [] a owl:Axiom ; dcterms:source "IEEE Standard Glossary of Stationary Battery Terminology (2016), https://doi.org/10.1109/IEEESTD.2016.7552407" ; @@ -5481,12 +5472,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_bbae1ef4_0a95_4e7d_9932_1bf939129eef ; owl:annotatedTarget "current-potential curve in a voltammetry experiment"@en . -[] a owl:Axiom ; - dcterms:source "https://en.wikipedia.org/wiki/Square_wave" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0e33278b_639f_412d_9abd_64c3790026ef ; - owl:annotatedTarget "Periodic potential where the amplitude alternates at a steady frequency between fixed minimum and maximum values, with the same duration at minimum and maximum."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5500,10 +5485,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "part which insures insulation between the plate (electrode) edges and adjacent plates (electrodes) and the container side walls"@en . [] a owl:Axiom ; + dcterms:source "https://en.wikipedia.org/wiki/Square_wave" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_bd33779c_6f40_4354_ab5d_f6c17396414d ; - owl:annotatedTarget "galvanic cell that transforms chemical energy from continuously supplied reactants to electric energy by an electrochemical process."@en ; - emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" . + owl:annotatedSource :electrochemistry_0e33278b_639f_412d_9abd_64c3790026ef ; + owl:annotatedTarget "Periodic potential where the amplitude alternates at a steady frequency between fixed minimum and maximum values, with the same duration at minimum and maximum."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5535,12 +5520,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_c3f4b34a_0e2c_46f3_baab_4ebd2682d26f ; owl:annotatedTarget "An ionic liquid is an electrolyte composed of a salt that is liquid below 100 °C. Ionic liquids have found uses in electrochemical analysis, because their unconventional properties include a negligible vapor pressure, a high thermal and electrochemical stability, and exceptional dissolution properties for both organic and inorganic chemical species."@en . -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; - owl:annotatedTarget "Electron conductor in an electrochemical cell connected to the external circuit."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5553,6 +5532,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_c55ec02c_b727_4df1_97ce_91d7bb5d5e91 ; owl:annotatedTarget "unplanned escape of electrolyte, gas or other material from a cell or battery"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_c610d869_cc03_44f0_b40d_ca86e945b9c9 ; + owl:annotatedTarget "cell from which electrolyte cannot escape regardless of its orientation"@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5562,8 +5547,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_c610d869_cc03_44f0_b40d_ca86e945b9c9 ; - owl:annotatedTarget "cell from which electrolyte cannot escape regardless of its orientation"@en . + owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; + owl:annotatedTarget "electronically conductive part in electric contact with a medium of lower electronic conductivity and intended to perform one or more of the functions of emitting charge carriers to or receiving charge carriers from that medium or to establish an electric field in that medium"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5579,21 +5564,21 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; - owl:annotatedTarget "by convention, an oxidation reaction occurs during discharge"@en . + owl:annotatedTarget "for a device having two electrodes, that electrode having the lower electric potential"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; - owl:annotatedTarget "electronically conductive part in electric contact with a medium of lower electronic conductivity and intended to perform one or more of the functions of emitting charge carriers to or receiving charge carriers from that medium or to establish an electric field in that medium"@en . + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; + owl:annotatedTarget "by convention, an oxidation reaction occurs during discharge"@en . [] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_c94c041b_8ea6_43e7_85cc_d2bce7785b4c ; - owl:annotatedTarget "for a device having two electrodes, that electrode having the lower electric potential"@en . + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_0f007072_a8dd_4798_b865_1bf9363be627 ; + owl:annotatedTarget "Electron conductor in an electrochemical cell connected to the external circuit."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5604,8 +5589,8 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_0f827b54_370d_4c63_99a6_80f13b24e55e ; - owl:annotatedTarget "evolution of gas resulting from electrolysis of the water in the electrolyte of a cell"@en . + owl:annotatedSource :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; + owl:annotatedTarget "set of operations that is carried out on a secondary cell or battery and is repeated regularly in the same sequence."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5622,14 +5607,14 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_d3e2d213_d078_4b9a_8beb_62f063e57d69 ; - owl:annotatedTarget "set of operations that is carried out on a secondary cell or battery and is repeated regularly in the same sequence."@en . + owl:annotatedSource :electrochemistry_d5da9948_e95b_4f12_a2d2_10a48f390c52 ; + owl:annotatedTarget "arrangement of cells or batteries wherein parallel connected cells or batteries are connected in series."@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_d5da9948_e95b_4f12_a2d2_10a48f390c52 ; - owl:annotatedTarget "arrangement of cells or batteries wherein parallel connected cells or batteries are connected in series."@en . + owl:annotatedSource :electrochemistry_0f827b54_370d_4c63_99a6_80f13b24e55e ; + owl:annotatedTarget "evolution of gas resulting from electrolysis of the water in the electrolyte of a cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5655,18 +5640,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_df78745e_f9db_4830_88f0_8ce074fcb8ff ; owl:annotatedTarget "liquid metal electrode used in polarography"@en . +[] a owl:Axiom ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; + owl:annotatedTarget "electrochemical cell in which chemical reactions occur spontaneously and chemical energy is converted into electrical energy."@en . + [] a owl:Axiom ; dcterms:references "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; owl:annotatedTarget "An electrochemical cell that spontaneously produces work."@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_113e0469_8ae0_407f_892d_4b988f8d8a08 ; - owl:annotatedTarget "electrochemical cell that has two half-cells separated by a wall permeable to ions, both containing the same electrolyte differing only in their temperatures."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5674,16 +5659,22 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "Electrochemical cell intended to produce electric energy."@en . [] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e248373f_294f_4ca4_9edf_0ad6653bb64f ; - owl:annotatedTarget "electrochemical cell in which chemical reactions occur spontaneously and chemical energy is converted into electrical energy."@en . + owl:annotatedSource :electrochemistry_e2a1dae1_05e4_4bd1_a39d_0eb10db482bc ; + owl:annotatedTarget "method of separating and neutralizing ions by an electric current in an electrolytic cell"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e2a1dae1_05e4_4bd1_a39d_0eb10db482bc ; - owl:annotatedTarget "method of separating and neutralizing ions by an electric current in an electrolytic cell"@en . + owl:annotatedSource :electrochemistry_113e0469_8ae0_407f_892d_4b988f8d8a08 ; + owl:annotatedTarget "electrochemical cell that has two half-cells separated by a wall permeable to ions, both containing the same electrolyte differing only in their temperatures."@en . + +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; + owl:annotatedTarget "electrochemical cell intended to produce chemical reactions"@en . [] a owl:Axiom ; dcterms:references "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; @@ -5697,18 +5688,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; owl:annotatedTarget "Electrochemical cell in which electrical energy is converted into chemical energy."@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_e931087f_7681_4096_b200_5223bcc47eb4 ; - owl:annotatedTarget "electrochemical cell intended to produce chemical reactions"@en . - -[] a owl:Axiom ; - dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_1152ae6b_8b57_4d99_912e_40c6a29342fb ; - owl:annotatedTarget "mass m of electrochemically-transformed substance is proportional to the charge Q passed, m ∝ Q."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5721,6 +5700,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_ec1dce8b_bb46_41a9_b532_6bed381aa557 ; owl:annotatedTarget "secondary cell having a cover provided with an opening through which products of electrolysis and evaporation are allowed to escape freely from the cell to the atmosphere"@en . +[] a owl:Axiom ; + dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_1152ae6b_8b57_4d99_912e_40c6a29342fb ; + owl:annotatedTarget "mass m of electrochemically-transformed substance is proportional to the charge Q passed, m ∝ Q."@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5739,12 +5724,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f0c24970_4c14_4207_bd78_5f2181a67085 ; owl:annotatedTarget "the process of forming a film or a bulk material using an electrochemical process where the electrons are supplied by an external power supply"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_1355816f_a2b5_4800_8001_fc888f5d6b1b ; - owl:annotatedTarget "instrument intended to measure the value of a voltage."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5757,6 +5736,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f47611a2_e081_47f0_b287_3fda5f706154 ; owl:annotatedTarget "chemical reaction which occurs in addition to the main process"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; + owl:annotatedTarget "electrode reaction in which reduction occurs at the cathode"@en . + +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_1355816f_a2b5_4800_8001_fc888f5d6b1b ; + owl:annotatedTarget "instrument intended to measure the value of a voltage."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5769,12 +5760,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; owl:annotatedTarget "electrode reaction, where the energy of electrons in the working electrode is higher than the LUMO orbital of the substrate"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_f4a1323a_ce2b_4c1a_b89d_c80170110ed6 ; - owl:annotatedTarget "electrode reaction in which reduction occurs at the cathode"@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5782,10 +5767,10 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedTarget "electrode that responds to one, or more than one, species in the solution being investigated, with no appreciable change of bulk solution composition during the measurement"@en . [] a owl:Axiom ; - dcterms:source "IUPAC. Compendium of Chemical Terminology, 2nd ed. (the \"Gold Book\"). Compiled by A. D. McNaught and A. Wilkinson. Blackwell Scientific Publications, Oxford (1997). Online version (2019-) created by S. J. Chalk. ISBN 0-9678550-9-8. https://doi.org/10.1351/goldbook." ; + dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_15325775_6d4c_4192_82f1_e4feca9de426 ; - owl:annotatedTarget "A membrane having ion-exchange groups:"@en . + owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; + owl:annotatedTarget "a material in which the mobile species are ions and free movement of electrons is blocked."@en . [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; @@ -5799,18 +5784,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; owl:annotatedTarget "liquid or solid substance containing mobile ions that render it conductive"@en . +[] a owl:Axiom ; + dcterms:source "IUPAC. Compendium of Chemical Terminology, 2nd ed. (the \"Gold Book\"). Compiled by A. D. McNaught and A. Wilkinson. Blackwell Scientific Publications, Oxford (1997). Online version (2019-) created by S. J. Chalk. ISBN 0-9678550-9-8. https://doi.org/10.1351/goldbook." ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_15325775_6d4c_4192_82f1_e4feca9de426 ; + owl:annotatedTarget "A membrane having ion-exchange groups:"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; owl:annotatedTarget "substance that provides ions on dissolution in a solvent or on melting"@en . -[] a owl:Axiom ; - dcterms:source "J. Newman and K. E. Thmoas-Alyea, Electrochemical Systems, 3rd ed. Hoboken, New Jersey: John Wiley & Sons, 2004." ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_fb0d9eef_92af_4628_8814_e065ca255d59 ; - owl:annotatedTarget "a material in which the mobile species are ions and free movement of electrons is blocked."@en . - [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5823,18 +5808,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_fb9bf7cb_dd4b_4391_99a1_628263dd6940 ; owl:annotatedTarget "measuring instrument to obtain the electrical charge passed in an experiment, or to produce a known amount of substance in a titration."@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; - owl:annotatedTarget "Electrolyte solution in the cathodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the cathode is placed."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; owl:annotatedTarget "electrolyte on the cathode side of an electrochemical cell that is divided into compartments."@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_15b852b5_19cc_49ab_849f_7df6175fb2be ; + owl:annotatedTarget "Electrolyte solution in the cathodic compartment of an electrolysis cell or galvanic cell, i.e., in that part of the cell where the cathode is placed."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5931,18 +5916,18 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_2d32a81a_2148_41bd_84fb_467aa8de4a8f ; owl:annotatedTarget "foil, wire, disc, or mesh electrode made of platinum, which is the most commonly used metallic working electrode in electrochemistry"@en . -[] a owl:Axiom ; - dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; - owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; - owl:annotatedTarget "An interfacial reaction that necessarily involves a charge-transfer step."@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; owl:annotatedTarget "electrochemical reaction involving the transfer of electrons between electrolyte and electrode"@en . +[] a owl:Axiom ; + dcterms:source "A. J. Bard, G. Inzelt, and F. Scholz, Eds., Electrochemical Dictionary, 2nd Edition. Berlin: Springer-Verlag, 2012. DOI: https://doi.org/10.1007/978-3-642-29551-5" ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedSource :electrochemistry_2e3e14f9_4cb8_45b2_908e_47eec893dec8 ; + owl:annotatedTarget "An interfacial reaction that necessarily involves a charge-transfer step."@en . + [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -5957,15 +5942,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_328c6e36_3706_4d92_abae_432fa3adb2a0 ; - owl:annotatedTarget "a cell baffle has a second function in protecting the plate pack from damage by objects inserted through the filling hole"@en . + owl:annotatedTarget "internal component used to reduce the amount of electrolyte loss due to electrolyte spray being carried in the gas and/or by electrolyte movement"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_328c6e36_3706_4d92_abae_432fa3adb2a0 ; - owl:annotatedTarget "internal component used to reduce the amount of electrolyte loss due to electrolyte spray being carried in the gas and/or by electrolyte movement"@en . + owl:annotatedTarget "a cell baffle has a second function in protecting the plate pack from damage by objects inserted through the filling hole"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -5979,6 +5964,12 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_34bc54e3_de4c_41f8_8d3a_d77c951ee23a ; owl:annotatedTarget "needle-like or tree-like formation of crystalline growth formed during deposition of a material"@en . +[] a owl:Axiom ; + dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; + owl:annotatedTarget "by convention, cell electrode at which, a reduction reaction occurs"@en . + [] a owl:Axiom ; dcterms:source "J. M. Pingarrón et al., Terminology of electrochemical methods of analysis (IUPAC Recommendations 2019), Pure and Applied Chemistry, 4, 92, 2020, 641-694. https://doi.org/10.1515/pac-2018-0109" ; owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; @@ -5997,12 +5988,6 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; owl:annotatedTarget "the concepts of “anode” and “cathode” are related only to the direction of electron flow, not to the polarity of the electrodes"@en . -[] a owl:Axiom ; - dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; - owl:annotatedSource :electrochemistry_35c650ab_3b23_4938_b312_1b0dede2e6d5 ; - owl:annotatedTarget "by convention, cell electrode at which, a reduction reaction occurs"@en . - [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; @@ -6023,15 +6008,15 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_3f6c9e09_5f23_41cc_9f85_7de365cef089 ; - owl:annotatedTarget "electrolyte creep is sometimes indicated by the presence of a visible solid deposit or wet spots"@en . + owl:annotatedTarget "gradual and slow spreading of an electrolyte film on the external surface of a cell or battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_3f6c9e09_5f23_41cc_9f85_7de365cef089 ; - owl:annotatedTarget "gradual and slow spreading of an electrolyte film on the external surface of a cell or battery"@en . + owl:annotatedTarget "electrolyte creep is sometimes indicated by the presence of a visible solid deposit or wet spots"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -6041,9 +6026,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; + owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; owl:annotatedSource :electrochemistry_04f28ce3_251d_429e_aa85_ab3eb45bbcd2 ; - owl:annotatedTarget "in lithium batteries thermal runaway may cause melting of lithium"@en . + owl:annotatedTarget "unstable condition arising during constant voltage charge in which the rate of heat dissipation capability, causing a continuous temperature increase with resulting further charge current increase, which can lead to the destruction of the battery"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; @@ -6077,9 +6062,9 @@ Cl2, Hg | Hg2SO4, and Hg | HgO, can be used as reference electrodes in aqueous s [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ; - owl:annotatedProperty emmo:EMMO_967080e5_2f42_4eb2_a3a9_c58143e835f9 ; + owl:annotatedProperty emmo:EMMO_c7b62dd7_063a_4c2a_8504_42f7264ba83f ; owl:annotatedSource :electrochemistry_04f28ce3_251d_429e_aa85_ab3eb45bbcd2 ; - owl:annotatedTarget "unstable condition arising during constant voltage charge in which the rate of heat dissipation capability, causing a continuous temperature increase with resulting further charge current increase, which can lead to the destruction of the battery"@en . + owl:annotatedTarget "in lithium batteries thermal runaway may cause melting of lithium"@en . [] a owl:Axiom ; dcterms:source "International Electrotechnical Commission (IEC), IEC 60050 - International Electrotechnical Vocabulary, retrieved from: https://www.electropedia.org" ;