电化学
分离器(采油)
电解质
法拉第效率
溶剂
乙醚
锂(药物)
化学工程
高压
无机化学
化学
磷酸三甲酯
离子
材料科学
碳酸乙烯酯
有机化学
电压
电极
物理化学
磷酸盐
内分泌学
工程类
物理
热力学
医学
量子力学
作者
Lan Xia,Saixi Lee,Yabei Jiang,Shiqi Li,Zhaoping Liu,Linpo Yu,Di Hu,Shuhan Wang,Yitong Liu,George Z. Chen
标识
DOI:10.1002/celc.201900729
摘要
Abstract Although high‐voltage positive electrode materials for high energy density lithium‐ion batteries have gained a great attention, the lack of compatible electrolytes with sufficiently high oxidative stability to deliver an excellent cycling ability restricts their practical application. Fluorinated solvents are considered as promising candidates for high‐voltage electrolyte solvents. In this study, we select 1,1,2,2‐tetrafluoroethyl‐2,2,3,3‐tetrafluoropropyl ether (TTE) with a high boiling point, low cost, and good SEI‐filming ability as a co‐solvent of fluoroethylene carbonate‐based electrolytes and extensively investigate its physicochemical and electrochemical properties for applications in high‐voltage lithium‐ion batteries. Our experimental results show that the TTE‐containing electrolyte exhibits not only a high oxidative stability up to 5.5 V ( vs . Li/Li + ), but also excellent wettability with the separator. In addition to high discharge capacity and increased coulombic efficiency of the Li/LiNi 0.5 Mn 1.5 O 4 half‐cell assembled with the TTE‐containing electrolyte cycled between 3.0 and 4.9 V, the cell also displays a high rate capability. This work shows that partially fluorinated ethers, e. g., TTE, are promising co‐solvents for high‐voltage electrolytes that can enable commercial development of high energy density lithium‐ion batteries.
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