聚丙烯腈
材料科学
锂(药物)
盐(化学)
电解质
化学工程
离子电导率
快离子导体
聚碳酸酯
锂离子电池的纳米结构
离子
聚合物
纳米技术
电化学
电导率
电极
复合材料
有机化学
化学
物理化学
医学
内分泌学
工程类
作者
Chengjun Yi,Wenyi Liu,Linpo Li,Haoyang Dong,Jinping Liu
标识
DOI:10.1142/s1793604719300068
摘要
Solid-state polymer lithium-ion batteries with better safety and higher energy density are one of the most promising batteries, which are expected to power future electric vehicles and smart grids. However, the low ionic conductivity at room temperature of solid polymer electrolytes (SPEs) decelerates the entry of such batteries into the market. Creating polymer-in-salt solid electrolytes (PISSEs) where the lithium salt contents exceed 50[Formula: see text]wt.% is a viable technology to enhance ionic conductivity at room temperature of SPEs, which is also suitable for scalable production. In this review, we first clarify the structure and ionic conductivity mechanism of PISSEs by analyzing the interactions between lithium salt and polymer matrix. Then, the recent advances on polyacrylonitrile (PAN)-based PISSEs and polycarbonate derivative-based PISSEs will be reviewed. Finally, we propose possible directions and opportunities to accelerate the commercializing of PISSEs for solid polymer Li-ion batteries.
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