阳极
锂(药物)
电解质
材料科学
电化学
电池(电)
金属锂
储能
锂电池
接口(物质)
纳米技术
能量密度
锂离子电池的纳米结构
快离子导体
工程物理
电极
工程类
复合材料
化学
离子键合
离子
接触角
物理化学
内分泌学
医学
功率(物理)
量子力学
物理
有机化学
坐滴法
作者
Menghong Li,Shubin Yang,Bin Li
摘要
Abstract Solid‐state lithium metal batteries are considered to be the next generation of energy storage systems due to the high energy density brought by the use of metal lithium anode and the safety features brought by the use of solid electrolytes (SEs). Unfortunately, besides the safety features, using SEs brings issues of interfacial contact of lithium anode and electrolytes. Recently, to realize the application of solid‐state lithium metal batteries, significant achievements have been made in the interface engineering of solid‐state batteries, and various new strategies have been proposed. In this review, from the interface failure perspective of solid‐state lithium metal batteries, we summarize failure mechanisms in terms of poor physical contact, weak chemical/electrochemical stability, continuing contact degradation, and uncontrollable lithium deposition. We then focused on the latest strategies for solving interface issues, including advancing in improving the physical solid–solid contact, increasing the electrochemical/chemical stability, restraining continuing contact degradation, and controlling homogeneous lithium deposition. The ultimate and paramount future developing directions of solid‐state lithium metal battery interface engineering are proposed.
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