Skeletal editing of electrolyte molecule by oxygen-distal fluorination for 500 Wh kg–1, cycling stable Li metal battery

DOI

<p>Enhancing cycling reversibility in high-energy-density lithium metal batteries (LMBs) necessitate precise management of electrolyte-derived electrochemical reactions at electrodes and interphases, yet the recently developed and most commonly used localized high-concentration electrolytes (LHCEs) technology suffers from limited tunability on these reactions due to the non-solvation-participating nature of oxygen-proximal fluorinated diluents. Here we address this issue by designing and synthesizing a new oxygen-distal fluorinated diluent. Unlike traditional oxygen-proximal fluorinated analogs, the molecule skeleton was strategically edited to position fluorine atoms distal to oxygen centers that attenuates electron-withdrawing effects at these Li+-coordination sites, enabling: enhanced diluent/anion participation and reduced volatile solvents in solvation shells. This work establishes oxygen-distal fluorination as a new electrolyte molecular skeleton editing principle for stable energy-dense LMBs.</p>

Identifier
DOI https://doi.org/10.24435/materialscloud:1s-0f
Related Identifier https://doi.org/10.1038/s41467-022-33329-2
Related Identifier https://archive.materialscloud.org/communities/mcarchive
Related Identifier https://doi.org/10.24435/materialscloud:kk-h4
Metadata Access https://archive.materialscloud.org/oai2d?verb=GetRecord&metadataPrefix=oai_dc&identifier=oai:materialscloud.org:zb78r-fey78
Provenance
Creator Yu, Xingmin; Li, Yong; Wang, Zhaofen; Huang, Haichen; Liu, Yaoyao; Lequan, Deng; Jun, Zhan; Yin, Xianglin Yin; Qi, Haoying; Yang, Yushuang; Wang, Shuhua; Sang, Yuanhua; Ye, Daixin; Wang, Jianjun; Liu, Hong; Chen, Hao
Publisher Materials Cloud
Publication Year 2026
Rights info:eu-repo/semantics/openAccess; Creative Commons Attribution 4.0 International; https://creativecommons.org/licenses/by/4.0/legalcode
OpenAccess true
Contact archive(at)materialscloud.org
Representation
Language English
Resource Type info:eu-repo/semantics/other
Format application/x-7z-compressed; text/plain
Discipline Materials Science and Engineering