Surface modification using heptafluorobutyric acid to produce highly stable Li metal anodes

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作者
Yuxiang Xie
Yixin Huang
Yinggan Zhang
Tairui Wu
Shishi Liu
Miaolan Sun
Bruce Lee
Zhen Lin
Hui Chen
Peng Dai
Zheng Huang
Jian Yang
Chenguang Shi
Deyin Wu
Ling Huang
Yingjie Hua
Chongtai Wang
Shigang Sun
机构
[1] Xiamen University,College of Chemistry and Chemical Engineering, State Key Laboratory of Physical Chemistry of Solid Surfaces
[2] Xiamen University,College of Materials
[3] Xiamen Key Laboratory of Electronic Ceramic Materials and Devices,Reliability Safety Department & Mechanism Simulation
[4] Contemporary Amperex Technology Co.,undefined
[5] Limited.,undefined
[6] Hainan Normal University,undefined
[7] Key Laboratory of Electrochemical Energy Storage and Energy Conversion of Hainan Province,undefined
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摘要
The Li metal is an ideal anode material owing to its high theoretical specific capacity and low electrode potential. However, its high reactivity and dendritic growth in carbonate-based electrolytes limit its application. To address these issues, we propose a novel surface modification technique using heptafluorobutyric acid. In-situ spontaneous reaction between Li and the organic acid generates a lithiophilic interface of lithium heptafluorobutyrate for dendrite-free uniform Li deposition, which significantly improves the cycle stability (Li/Li symmetric cells >1200 h at 1.0 mA cm−2) and Coulombic efficiency (>99.3%) in conventional carbonate-based electrolytes. This lithiophilic interface also enables full batteries to achieve 83.2% capacity retention over 300 cycles under realistic testing condition. Lithium heptafluorobutyrate interface acts as an electrical bridge for uniform lithium-ion flux between Li anode and plating Li, which minimizes the occurrence of tortuous lithium dendrites and lowers interface impedance.
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