电解质
锂(药物)
化学工程
离子电导率
材料科学
纤维素
电化学
复合数
聚合物
金属
化学
电极
复合材料
冶金
物理化学
医学
工程类
内分泌学
作者
Dai Wang,Hui Xie,Qiang Liu,Kexin Mu,Zhennuo Song,Weijian Xu,Lei Tian,Caizhen Zhu,Jian Xu
标识
DOI:10.1002/anie.202302767
摘要
Abstract Solid‐state lithium‐metal batteries are considered as the next generation of high‐energy‐density batteries. However, their solid electrolytes suffer from low ionic conductivity, poor interface performance, and high production costs, restricting their commercial application. Herein, a low‐cost cellulose acetate‐based quasi‐solid composite polymer electrolyte (C‐CLA QPE) was developed with a high Li + transference number ( ) of 0.85 and excellent interface stability. The prepared LiFePO 4 (LFP)|C‐CLA QPE|Li batteries exhibited excellent cycle performance with a capacity retention of 97.7 % after 1200 cycles at 1 C and 25 °C. The experimental results and Density Function Theory (DFT) simulation revealed that the partially esterified side groups in the CLA matrix contribute to the migration of Li + and enhance electrochemical stability. This work provides a promising strategy for fabricating cost‐effective, stable polymer electrolytes for solid‐state lithium batteries.
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