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From Atoms to Cells: Multiscale Modeling of LiNixMnyCozO2Cathodes for Li-Ion Batteries

dc.contributor.authorMorgan, Lucy M.
dc.contributor.authorIslam, Mazharul M.
dc.contributor.authorYang, Hui
dc.contributor.authorO'Regan, Kieran
dc.contributor.authorPatel, Anisha N.
dc.contributor.authorGhosh, Abir
dc.contributor.authorKendrick, Emma
dc.contributor.authorMarinescu, Monica
dc.contributor.authorOffer, Gregory J.
dc.contributor.authorMorgan, Benjamin J.
dc.contributor.authorIslam, M. Saiful
dc.contributor.authorEdge, Jacqueline
dc.date.accessioned2023-04-24T10:44:53Z
dc.date.available2023-04-24T10:44:53Z
dc.date.issued2022-01-14
dc.descriptionThis paper is submitted by the author of IIT (BHU), Varanasien_US
dc.description.abstractFirst-generation cathodes for commercial lithium-ion batteries are based on layered transition-metal oxides. Research on ternary compounds, such as LiCoO2, evolved into mixed-metal systems, notably Li(Ni,Mn,Co)O2 (NMCs), which allows significant tuning of the physical properties. Despite their widespread application in commercial devices, the fundamental understanding of NMCs is incomplete. Here, we review the latest insights from multiscale modeling, bridging between the redox phenomena that occur at an atomistic level to the transport of ions and electrons across an operating device. We discuss changes in the electronic and vibrational structures through the NMC compositional space and how these link to continuum models of electrochemical charge-discharge cycling. Finally, we outline the remaining challenges for predictive models of high-performance batteries, including capturing the relevant device bottlenecks and chemical degradation processes, such as oxygen evolution.en_US
dc.description.sponsorshipThe authors thank the Faraday Institution ( https://faraday.ac.uk/ ; EP/S003053/1), grant number FIRG003, for funding.en_US
dc.identifier.issn23808195
dc.identifier.urihttps://idr-sdlib.iitbhu.ac.in/handle/123456789/2230
dc.language.isoenen_US
dc.publisherAmerican Chemical Societyen_US
dc.relation.ispartofseriesACS Energy Letters;Volume 7, Issue 1, Pages 108 - 122
dc.subjectContinuum mechanicsen_US
dc.subjectIonsen_US
dc.subjectTransition metal oxidesen_US
dc.subjectTransition metalsen_US
dc.subjectAtomistic levelsen_US
dc.subjectCommercial Devicesen_US
dc.subjectContinuum modeen_US
dc.subjectElectronic.structureen_US
dc.subjectMixed-metal systemsen_US
dc.subjectMultiscale modelingen_US
dc.subjectOperating devicesen_US
dc.subjectTernary compoundsen_US
dc.subjectTransition-metal oxidesen_US
dc.subjectVibrational structuresen_US
dc.titleFrom Atoms to Cells: Multiscale Modeling of LiNixMnyCozO2Cathodes for Li-Ion Batteriesen_US
dc.typeArticleen_US

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