电解质
材料科学
离解(化学)
法拉第效率
离子电导率
电化学
化学工程
离子键合
电化学窗口
快离子导体
金属
无机化学
离子
电极
化学
有机化学
物理化学
工程类
冶金
作者
Tae Woog Kang,Jun‐Hyeong Lee,Jae Woo Lee,Jung Hyun Park,Jae‐Hoon Shin,Jong−Min Ju,Hajin Lee,Sang Uck Lee,Jong‐Ho Kim
标识
DOI:10.1002/adma.202301308
摘要
Organic solid electrolytes offer an effective route for safe and high-energy-density all-solid-state Li metal batteries. However, it remains a challenge to devise a new strategy to promote the dissociation of strong ion pairs and the transport of ionic components in organic solid electrolytes. Herein, a zwitterionic covalent organic framework (Zwitt-COF) with well-defined chemical and pore structures is prepared as a solid electrolyte capable of accelerating the dissociation and transport of Li ions. The Zwitt-COF solid electrolyte exhibits a high room-temperature ionic conductivity of 1.65 × 10-4 S cm-1 with a wide electrochemical stability window. Besides, the Zwitt-COF solid electrolyte displays stable Li plating/stripping behavior via effective inhibition of the formation of Li dendrites and dead Li, leading to superior long-term cycle performance with retention of 99% discharge capacity and 98% Coulombic efficiency in an all-solid-state Li-metal battery. Theoretical simulations reveal that the incorporation of zwitterionic groups into COF can facilitate the dissociation of strong ion pairs and reconstruct the AA-stacking configuration by dissociative adsorption of Li+ ions on Zwitt-COF producing linear hexagonal ion channels in the Zwitt-COF solid electrolyte. This strategy based on Zwitt-COF can provide an alternative way to construct various solid-state Li batteries.
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