材料科学
电解质
相容性(地球化学)
能量密度
储能
电化学
工程物理
纳米技术
电极
热力学
物理化学
物理
化学
复合材料
功率(物理)
作者
Pengfei Wu,Weiwei Zhou,Xin Su,Jianyu Li,Min Su,Xiaochong Zhou,Brian W. Sheldon,Wenquan Lu
标识
DOI:10.1002/aenm.202203440
摘要
Abstract With the increasing use of Li batteries for storage, their safety issues and energy densities are attracting considerable attention. Recently, replacing liquid organic electrolytes with solid‐state electrolytes (SSE) has been hailed as the key to developing safe and high‐energy‐density Li batteries. In particular, Li 1+ x Al x Ti 2− x (PO4) 3 (LATP) has been identified as a very attractive SSE for Li batteries due to its excellent electrochemical stability, low production costs, and good chemical compatibility. However, interfacial reactions with electrodes and poor thermal stability at high temperatures severely restrict the practical use of LATP in solid‐state batteries (SSB). Herein, a systematic review of recent advances in LATP for SSBs is provided. This review starts with a brief introduction to the development history of LATP and then summarizes its structure, ion transport mechanism, and synthesis methods. Challenges (e.g., intrinsic brittleness, interfacial resistance, and compatibility) and corresponding solutions (ionic substitution, additives, protective layers, composite electrolytes, etc.) that are critical for practical applications are then discussed. Last, an outlook on the future research direction of LATP‐based SSB is provided.
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