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A New Analytical Framework to Investigate the Precipitation Kinetics of Discharge Products in Li-S Batteries

 
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dc.contributor.authorConde Reis, Albin
dc.contributor.authorHamed, Hamid
dc.contributor.authorYari, Saeed
dc.contributor.authorVranken, Thomas
dc.contributor.authorD'Haen, Jan
dc.contributor.authorHardy, An
dc.contributor.authorReddy, Naveen
dc.contributor.authorPang, Quanquan
dc.contributor.authorSafari, Momo
dc.contributor.imecauthorConde Reis, Albin
dc.contributor.imecauthorHamed, Hamid
dc.contributor.imecauthorYari, Saeed
dc.contributor.imecauthorVranken, Thomas
dc.contributor.imecauthorD'Haen, Jan
dc.contributor.imecauthorHardy, An
dc.contributor.imecauthorReddy, Naveen
dc.contributor.imecauthorSafari, Mohammadhosein
dc.contributor.orcidimecConde Reis, Albin::0000-0002-9655-3931
dc.contributor.orcidimecHamed, Hamid::0000-0001-8453-5923
dc.contributor.orcidimecYari, Saeed::0000-0002-9019-7104
dc.contributor.orcidimecVranken, Thomas::0000-0002-4707-7924
dc.contributor.orcidimecHardy, An::0000-0002-5012-0356
dc.contributor.orcidimecReddy, Naveen::0000-0003-0163-485X
dc.date.accessioned2025-08-13T03:58:41Z
dc.date.available2025-08-13T03:58:41Z
dc.date.issued2025
dc.description.abstractPolysulfides are central to the inner workings of lithium-sulfur (Li-S) batteries. They are responsible for the inertia and snowballing effects at play on the dynamics of the battery, among those, the infamous shuttle effect. For this reason, it is very challenging to establish analytical tools for quantitative investigations of Li-S batteries. The need for such analytical tools is particularly crucial when applied to precipitation dynamics, which is a key limiting step to the sulfur utilization and rate performance of the Li-S battery. Here, controlled experimentation is conducted to record the precipitation signatures for micro-electrodes and conventional porous electrodes for Li-S chemistry. It is unraveled how the polysulfide species, involved in the disproportionation reactions, control the peak shape and trends in the chronoamperometric profile of a sulfur electrode. This enables the foundation to be set for a new analytical framework for quantitative characterization of the precipitation mechanism in Li-S batteries.
dc.description.wosFundingTextThe authors are grateful for financial support from FWO-Vlaanderen. A.C.R. and H.H. are PhD research fellow and junior Postdoc fellow (12A1R24N), respectively, of the Research Foundation Flanders (FWO Vlaanderen). The authors are also grateful for the work and contribution of Hilde Pellears concerning the preparation and measurements of the SEM samples.
dc.identifier.doi10.1002/smll.202503796
dc.identifier.issn1613-6810
dc.identifier.pmidMEDLINE:40754735
dc.identifier.urihttps://imec-publications.be/handle/20.500.12860/46071
dc.publisherWILEY-V C H VERLAG GMBH
dc.source.beginpagee03796
dc.source.issue38
dc.source.journalSMALL
dc.source.numberofpages13
dc.source.volume21
dc.subject.keywordsLITHIUM-SULFUR BATTERIES
dc.subject.keywordsREDOX REACTIONS
dc.subject.keywordsNUCLEATION
dc.subject.keywordsMECHANISM
dc.subject.keywordsGROWTH
dc.subject.keywordsPOLYSULFIDES
dc.subject.keywordsBEHAVIOR
dc.title

A New Analytical Framework to Investigate the Precipitation Kinetics of Discharge Products in Li-S Batteries

dc.typeJournal article
dspace.entity.typePublication
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