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dc.contributor.authorHuld, Frederik Thorbjørn
dc.contributor.authorEleri, Obinna Egwu
dc.contributor.authorLou, Fengliu
dc.contributor.authorYu, Zhixin
dc.date.accessioned2023-12-13T09:02:51Z
dc.date.available2023-12-13T09:02:51Z
dc.date.created2023-11-09T13:12:26Z
dc.date.issued2023
dc.identifier.citationHuld, F. T., Eleri, O.E., Lou, F. & Yu, Z. (2023) New Insights into the Behaviour of Commercial Silicon Electrode Materials via Empirical Fitting of Galvanostatic Charge-Discharge Curves. ChemElectroChem, 10 (21), e202300393en_US
dc.identifier.issn2196-0216
dc.identifier.urihttps://hdl.handle.net/11250/3107279
dc.description.abstractSilicon (Si) materials for use in Lithium ion batteries (LIBs) are of continued interest to battery manufacturers. With an increasing number of commercially available Si materials, evaluating their performance becomes a challenge. Here, we use an empirical fitting function presented earlier to aid in the analysis of galvanostatic charge-discharge data of commercial Si half-cells with relatively high loading. We find that the fitting procedure is capable of detecting dynamic changes in the cell, such as reversible capacity fade of the Si electrode. This fading is found to be due to the highly lithiated Li2Siurn:x-wiley:21960216:media:celc202300393:celc202300393-math-0001 Li3.5Si phase and that the behaviour is strongly dependent on the potential of this phase. EIS reveals that the Si electrode is responsible for the reversible behaviour due to progressive loss of Li+ leading to increasing resistance. SEM/EDX and XPS characterization are also employed to determine the origin of the irreversible resistance growth on the Si electrodes.en_US
dc.language.isoengen_US
dc.publisherWiley-VCH GmbHen_US
dc.rightsNavngivelse 4.0 Internasjonal*
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/deed.no*
dc.subjectlitium-ion batterieren_US
dc.subjectlitiumbatterieren_US
dc.titleNew Insights into the Behaviour of Commercial Silicon Electrode Materials via Empirical Fitting of Galvanostatic Charge-Discharge Curvesen_US
dc.typePeer revieweden_US
dc.typeJournal articleen_US
dc.description.versionpublishedVersionen_US
dc.rights.holder© 2023 The Authorsen_US
dc.subject.nsiVDP::Matematikk og Naturvitenskap: 400::Kjemi: 440en_US
dc.source.pagenumber0en_US
dc.source.volume10en_US
dc.source.journalChemElectroChemen_US
dc.source.issue21en_US
dc.identifier.doi10.1002/celc.202300393
dc.identifier.cristin2194575
dc.source.articlenumbere202300393en_US
cristin.ispublishedtrue
cristin.fulltextoriginal
cristin.qualitycode1


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