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AuthorShirazi Moghadam, Y.dc.contributor.author
AuthorEl Kharbachi, A.dc.contributor.author
AuthorMelinte, G.dc.contributor.author
AuthorDiemant, T.dc.contributor.author
AuthorFichtner, M.dc.contributor.author
Date of accession2023-03-28T14:12:08Zdc.date.accessioned
Available in OPARU since2023-03-28T14:12:08Zdc.date.available
Date of first publication2022-12-19dc.date.issued
AbstractManganese based disordered rocksalt systems have attracted attention as Co-free and high capacity cathode materials for Li-ion batteries. However, for a practical application these materials are considered as metastable and exhibit too limited cyclability. In order to improve the structural stability of the disordered rocksalt Li1+xMn2/3Ti1/3O2Fx (0 ≤ x ≤ 1) system during cycling, we have introduced a mild temperature heat treatment process under reducing atmosphere, which is intended to overcome the structural anomalies formed during the mechanochemical synthesis. The heat-treated samples presented better electrochemical properties, which are ascribed to a structural defect mitigation process both at the surface and in the bulk, resulting in improved crystal structure stability. In addition, the optimized particle size and the smaller BET surface area induced by the recrystallization contributes to the observed enhanced performance. Among the studied compositions, the heat treated Li2Mn2/3Ti1/3O2F sample displayed better electrochemical performance with a discharge capacity of 165 mAh g−1 after 100 cycles at 0.1 C (∼80% of the initial capacity), when combined with further conditioning of the cells. The results point explicitly towards a guided stabilization approach, which could have a beneficial effect regarding the application of DRS oxyfluoride materials for sustainable LIBs.dc.description.abstract
Languageendc.language.iso
PublisherUniversität Ulmdc.publisher
LicenseCC BY-NC-ND 4.0 Internationaldc.rights
Link to license texthttps://creativecommons.org/licenses/by-nc-nd/4.0/dc.rights.uri
Dewey Decimal GroupDDC 530 / Physicsdc.subject.ddc
LCSHLithium ion batteriesdc.subject.lcsh
TitleBulk and surface stabilization process of metastable li-rich disordered rocksalt oxyfluorides as efficient cathode materialsdc.title
Resource typeWissenschaftlicher Artikeldc.type
SWORD Date2023-01-16T13:33:49Zdc.date.updated
DOIhttp://dx.doi.org/10.18725/OPARU-47936dc.identifier.doi
URNhttp://nbn-resolving.de/urn:nbn:de:bsz:289-oparu-48012-1dc.identifier.urn
GNDLithium-Ionen-Akkumulatordc.subject.gnd
Institutionuulm.affiliationSpecific
DCMI TypeTextuulm.typeDCMI
CategoryPublikationenuulm.category
DOI of original publication10.1149/1945-7111/acaa62dc.relation1.doi
Source - Title of sourceJournal of The Electrochemical Societysource.title
Source - Publishersource.publisherPlace
Source - Place of publicationIOP Publishingsource.publisher
Source - Volume169source.volume
Source - Issue12source.issue
Source - Year2022source.year
Source - ISSN0013-4651source.identifier.issn
Source - eISSN1945-7111source.identifier.eissn
Bibliographyuulmuulm.bibliographie


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