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Constructing a Robust Solid-Electrolyte Interphase Layer via Chemical Prelithiation for High-Performance SiOx Anode

delete2022-08-04
delete15
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OA
AI
S
Shiming Chen
Z
Zijian Wang
王潞 封面图
王潞 (Lu Wang)
Z
Zhibo Song
K
Kai Yang
W
Wenguang Zhao
L
Lele Liu
方
方建军 (Jianjun Fang)
钱果裕 封面图
钱果裕 (Guoyu Qian)
Feng Pan 封面图
Feng Pan (Feng Pan)
L
Luyi Yang *
DOI:10.1002/aesr.202200083delete
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摘要

摘要

En 中文
Being considered as a promising anode material for next-generation lithium-ion batteries, silicon oxide (SiOx) suffers from low initial coulombic efficiency and unstable solid-electrolyte interphase (SEI), which hinder its commercial use. To address these issues, herein, an optimized chemical prelithiation method is developed using a molecularly engineered lithium-biphenyl-type complex, which facilitates improved prelithiation efficiency. More importantly, owing to the reaction between the prelithiation agent and sodium carboxymethyl cellulose binder, a stable artificial SEI layer with hard inorganic particles embedded in soft organic matrix can be preformed on the surface of the SiOx anode after prelithiation. The preformed SEI layer remains stable during long-term cycling, contributing to significant improvement of capacity retention (87.4%) over pristine SiOx (68.6%) after 100 cycles at 0.2 C. Through demonstrating a hitherto unknown interfacial constructing strategy for SiOx, this study provides a fresh perspective on realizing high-capacity Si-based anodes.
Keyword:
initial coulombic efficiencies
lithium-ion batteries
prelithiation
SiOx anodes
solid-electrolyte interphases
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期刊

Advanced Energy and Sustainability Research 封面图
Advanced Energy and Sustainability Research
IF:
5.7
论文数:
930
被引数:
3.2K

机构

P
peking university
学者数:
11.9W
论文数: 8.7W
被引数: 146
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