材料科学
电解质
离子电导率
结晶度
锂(药物)
电导率
复合数
化学工程
快离子导体
离子
离子键合
复合材料
电极
化学
物理化学
有机化学
工程类
内分泌学
医学
作者
Xin Wang,Xiu Shen,Peng Zhang,Aijun Zhou,Jinbao Zhao
出处
期刊:Rare Metals
[Springer Science+Business Media]
日期:2022-12-12
卷期号:42 (3): 875-884
被引量:43
标识
DOI:10.1007/s12598-022-02218-4
摘要
Abstract In the polyoxyethylene (PEO)‐based solid‐state electrolytes, the low ionic conductivity of lithium ions limits its application in solid‐state lithium batteries, so optimizing the conduction path of lithium ions is beneficial to improve the ionic conductivity. In this work, we report the use of hydrothermal carbon nano‐sphere (HCS) modified glass fibers (GF) as a functional filler (GF@HCS) to improve the ionic conductivity of PEO composite solid‐state electrolytes. The oxygen atoms in the hydroxyl groups on the surface of HCS can be complexed with Li ions as its transport sites, which means that it can promote the long‐distance transport of Li ions along the glass fiber surface. With addition of 2 wt% GF@HCS fillers, the degree of crystallinity of PEO composite solid‐state electrolyte is the smallest, and the ionic conductivity is significantly increased from 8.9 × 10 –5 to 4.4 × 10 –4 S·cm −1 at 60 °C. Moreover, the PEO composite solid‐state electrolyte exhibits better lithium–metal interface stability in symmetric lithium batteries and superior rate performance in LiFePO 4 solid‐state batteries.
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