Realizing a “solid to solid” process via in situ cathode electrolyte interface (CEI) by solvent-in-salt electrolyte for Li-S batteries

被引:0
|
作者
Jiajun Huang
Mengli Tao
Weifeng Zhang
Guangli Zheng
Li Du
Zhiming Cui
Xiujun Wang
Zhenxing Liang
Shijun Liao
Huiyu Song
机构
[1] Guangdong Provincial Key Laboratory of Fuel Cell Technology,School of Chemistry and Chemical Engineering
[2] South China University of Technology,undefined
来源
Nano Research | 2023年 / 16卷
关键词
lithium-sulfur battery; solid-solid conversion; cathode electrolyte interface; no-shuttle-effect;
D O I
暂无
中图分类号
学科分类号
摘要
Lithium-sulfur batteries (LSBs) are regarded as the most promising next-generation energy system due to their high theoretical energy density. However, LSBs suffer the “shuttle effect” if undergoing the solid-liquid-solid sulfur conversion process during cycling. Herein, we design a solvent-in-salt (SIS) electrolyte with co-solvent vinylene carbonate (VC) to synthesize an in situ dense cathode electrolyte interface (CEI) and successfully change sulfur conversion into a solid-solid way to avoid shuttle effect by separating the contact of sulfur and ether solvent. Dense CEI is formed at the beginning of first discharge by the combined action of SIS electrolyte and filmogen VC. Experiments and simulations show that SIS electrolyte controls the initial formed lithium polysulfides (LiPSs) to stay very closely on the cathode surface, and then converts them into a dense CEI film. As a result, Coulombic efficiency (above 99%) and cycling performance of LSBs are improved. Furthermore, the in situ dense CEI can nearly stop the self-discharge of LSBs, and enable the LSBs to work under a pretty lean electrolyte condition. [graphic not available: see fulltext]
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页码:5018 / 5025
页数:7
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