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dc.contributor.authorKjelstrup, Signe Helene
dc.contributor.authorGunnarshaug, Astrid Fagertun
dc.contributor.authorGullbrekken, Øystein
dc.contributor.authorSchnell, Sondre Kvalvåg
dc.contributor.authorLervik, Anders
dc.date.accessioned2023-11-30T15:16:44Z
dc.date.available2023-11-30T15:16:44Z
dc.date.created2023-07-24T08:41:14Z
dc.date.issued2023
dc.identifier.citationJournal of Chemical Physics. 2023, 159 (3), 035104-035116.en_US
dc.identifier.issn0021-9606
dc.identifier.urihttps://hdl.handle.net/11250/3105481
dc.description.abstractTransport properties are essential for the understanding and modeling of electrochemical cells, in particular complex systems like lithium-ion batteries. In this study, we demonstrate how a certain degree of freedom in the choice of variables allows us to efficiently determine a complete set of transport properties. We apply the entropy production invariance condition to different sets of electrolyte variables and obtain a general set of formulas. We demonstrate the application of these formulas to an electrolyte typical for lithium-ion batteries, 1M lithium hexafluoro-phosphate in a 1:1 wt. % mixture of ethylene and diethyl carbonates. While simplifications can be introduced, they provide inadequate predictions of conductivity and transport numbers, and we argue that a full matrix of Onsager coefficients is needed for adequate property predictions. Our findings highlight the importance of a complete set of transport coefficients for accurate modeling of complex electrochemical systems and the need for careful consideration of the choice of variables used to determine these properties.en_US
dc.language.isoengen_US
dc.publisherAIP Publishingen_US
dc.titleTransport coefficients for ion and solvent coupling. The case of the lithium-ion battery electrolyteen_US
dc.title.alternativeTransport coefficients for ion and solvent coupling. The case of the lithium-ion battery electrolyteen_US
dc.typePeer revieweden_US
dc.typeJournal articleen_US
dc.description.versionpublishedVersionen_US
dc.rights.holder© 2023 The Electrochemical Societyen_US
dc.subject.nsiVDP::Fysikalsk kjemi: 443en_US
dc.subject.nsiVDP::Physical chemistry: 443en_US
dc.subject.nsiVDP::Fysikalsk kjemi: 443en_US
dc.subject.nsiVDP::Physical chemistry: 443en_US
dc.source.pagenumber035104-035116en_US
dc.source.volume159en_US
dc.source.journalJournal of Chemical Physicsen_US
dc.source.issue3en_US
dc.identifier.doi10.1063/5.0158623
dc.identifier.cristin2163171
dc.relation.projectNorges forskningsråd: 262644en_US
dc.relation.projectSigma2: NN9718Ken_US
cristin.ispublishedtrue
cristin.fulltextoriginal
cristin.qualitycode1


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