Non-flammable long chain phosphate ester based electrolyte via competitive solventized structures for high-performance lithium metal batteries

被引:0
|
作者
Li Liao [1 ]
Zhiqiang Han [2 ]
Xuanjie Feng [1 ]
Pan Luo [1 ]
Jialin Song [1 ]
Yin Shen [1 ]
Xiaoshuang Luo [1 ]
Xinpeng Li [1 ]
Xuanzhong Wen [1 ]
Bo Yu [1 ]
Junchen Chen [1 ]
Bingshu Guo [1 ]
Mingshan Wang [1 ]
Yun Huang [1 ]
Hongmei Zhang [3 ]
Mengmeng Yin [3 ]
Jiangtao Liu [3 ]
Yuanhua Lin [1 ]
Xing Li [1 ]
机构
[1] School of New Energy and Materials, Southwest Petroleum University
[2] Beijing Advanced Innovation Center for Materials Genome Engineering, Center for Green Innovation, School of Mathematics and Physics, University of Science and Technology Beijing
[3] State Key Laboratory of Advanced Chemical Power Sources, Guizhou Meiling Power Sources
关键词
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中图分类号
TM912 [蓄电池]; TQ265.1 [磷有机化合物];
学科分类号
摘要
Safety remains a persistent challenge for high-energy-density lithium metal batteries(LMBs).The development of safe and non-flammable electrolytes is especially important in harsh conditions such as high temperatures.Herein,a flame-retardant,low-cost and thermally stable long chain phosphate ester based(tributyl phosphate,TBP) electrolyte is reported,which can effectively enhance the cycling stability of highly loaded high-nickel LMBs with high safety through co-solvation strategy.The interfacial compatibility between TBP and electrode is effectively improved using a short-chain ether(glycol dimethyl ether,DME),and a specially competitive solvation structure is further constructed using lithium borate difluorooxalate(LiDFOB) to form the stable and inorganic-rich electrode interphases.Benefiting from the presence of the cathode electrolyte interphase(CEI) and solid electrolyte interphase(SEI) enriched with LiF and LixPOyFz,the electrolyte demonstrates excellent cycling stability assembled using a 50 μm lithium foil anode in combination with a high loading NMC811(15.4 mg cm-2) cathode,with 88% capacity retention after 120 cycles.Furthermore,the electrolyte exhibits excellent high-temperature characteristics when used in a 1-Ah pouch cell(N/P=0.26),and higher thermal runaway temperature(238℃) in the ARC(accelerating rate calorimeter) demonstrating high safety.This novel electrolyte adopts long-chain phosphate as the main solvent for the first time,and would provide a new idea for the development of extremely high safety and high-temperature electrolytes.
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页码:156 / 165
页数:10
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