易燃液体
电解质
电化学
锂(药物)
材料科学
电压
化学
无机化学
电气工程
电极
工程类
物理化学
心理学
有机化学
精神科
作者
Zhiwen Deng,Ye Jia,Yan Deng,Changhaoyue Xu,Xuemei Zhang,Qiujie He,Jianan Peng,Hao Wu,Wenlong Cai
标识
DOI:10.1016/j.jechem.2024.04.041
摘要
High-voltage battery systems bring significant increases in energy density but are also accompanied by fast degradation of electrochemical performance and serious safety issues. Herein, Li+ coordination structure regulation was conducted to formulate a non-flammable electrolyte, which consists of 1.5 M lithium bis (fluor sulfonyl) imide (LiFSI) in triethyl phosphate and methyl 2,2,2-trifluoromethyl carbonate (FEMC). The renamed TEP-FEMC-FEC (TFF) electrolyte exhibits an FSI−-dominated solvation structure contributed by the weakly-solvating ability of FEMC. The generated inorganic-rich interfacial layers are conducive to stabilizing the phase transition of high-voltage cathodes while suppressing the dendritic growth on lithium metal or co-intercalation behavior in graphite anode. This TFF electrolyte enables LiCoO2 || Li batteries to achieve capacity maintenance over 79% after 400 cycles with high-rate of 5 C at an ultra-high voltage of 4.6 V, and an outstanding capacity exceeding 100 mA h g−1 even at a super-high current density of 20 C. Additionally, the Ah-level LiCoO2 || graphite pouch cells also exhibit high capacity retention and satisfactory safety performance even under fast charging. This work provides a novel research direction for the pursuit of high energy density non-flammable electrolytes.
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