材料科学
电解质
纳米技术
聚合物
聚合物电解质
电化学
商业化
快离子导体
阴极
溶解
电极
化学工程
复合材料
电气工程
工程类
离子电导率
法学
化学
物理化学
政治学
作者
Haobo Dong,Jianwei Li,Jian Guo,Feili Lai,Fangjia Zhao,Yiding Jiao,Dan J. L. Brett,Tianxi Liu,Guanjie He,Ivan P. Parkin
标识
DOI:10.1002/adma.202007548
摘要
Abstract Owing to the development of aqueous rechargeable zinc‐ion batteries (ZIBs), flexible ZIBs are deemed as potential candidates to power wearable electronics. ZIBs with solid‐state polymer electrolytes can not only maintain additional load‐bearing properties, but exhibit enhanced electrochemical properties by preventing dendrite formation and inhibiting cathode dissolution. Substantial efforts have been applied to polymer electrolytes by developing solid polymer electrolytes, hydrogel polymer electrolytes, and hybrid polymer electrolytes; however, the research of polymer electrolytes for ZIBs is still immature. Herein, the recent progress in polymer electrolytes is summarized by category for flexible ZIBs, especially hydrogel electrolytes, including their synthesis and characterization. Aiming to provide an insight from lab research to commercialization, the relevant challenges, device configurations, and life cycle analysis are consolidated. As flexible batteries, the majority of polymer electrolytes exploited so far only emphasizes the electrochemical performance but the mechanical behavior and interactions with the electrode materials have hardly been considered. Hence, strategies of combining softness and strength and the integration with electrodes are discussed for flexible ZIBs. A ranking index, combining both electrochemical and mechanical properties, is introduced. Future research directions are also covered to guide research toward the commercialization of flexible ZIBs.
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