阳离子聚合
电解质
纤维素
锌
金属
化学工程
离子键合
化学
无机化学
链条(单位)
离子电导率
材料科学
固态
高分子化学
有机化学
电极
离子
物理化学
工程类
物理
天文
作者
Tianyun Zhang,Tianyun Zhang,Yu Li,Tian Zhang,Tian Zhang,Yanci Wang,Jiaojiao Wu,Fen Ran
出处
期刊:Langmuir
[American Chemical Society]
日期:2025-02-03
卷期号:41 (5): 3455-3463
被引量:10
标识
DOI:10.1021/acs.langmuir.4c04556
摘要
In recent years, rechargeable aqueous zinc metal batteries have ushered in rapid development, but their large-scale industrial application is hindered by zinc anode dendrite formation and hydrogen evolution reaction. Using a solid-state polymer electrolyte is one of the strategies to solve this problem. Herein, by introducing the chain-expanding effect of zinc salts on oxidized bacterial cellulose, cellulose-based polymer electrolytes with excellent strength and ionic conductivity are prepared. According to the thermogravimetric calculations, the bound water content in prepared electrolytes greatly increases, which slows down the occurrence of side reactions. More importantly, the expanding distance between the fiber chains provides more space for the movement of Zn2+. The obtained solid-state electrolyte displays a high ionic conductivity (38.26 mS cm-1) and good mechanical properties (tensile stress is 592 kPa and tensile strain is 381%). Due to the properties of the solid electrolyte itself, its electrochemical window is expanded to 2.58 V. The assembled Zn∥Zn symmetrical battery maintains an ultralong cycle lifespan over 980 h of 0.5 mA cm-2. The Zn∥NH4V10O10 battery provides the specific capacity (363.1 mAh g-1 at 0.1 A g-1) and shows a satisfactory rate performance.
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