阴极
材料科学
电池(电)
电解质
微观结构
纳米技术
表征(材料科学)
锂电池
能量密度
工程物理
限制
计算机科学
相容性(地球化学)
储能
电化学
锂(药物)
锂离子电池
接口(物质)
工艺工程
化学能
光电子学
金属锂
作者
Hyunji Park,Samuel David Miller,Guanyi WANG,Yue Feng,Jianlin Li,Yuepeng ZHANG,Zhenxing Feng
标识
DOI:10.1002/advs.202513455
摘要
Abstract A high‐performance cathode is necessary to realize the great potentials of solid‐state batteries such as high energy density and long cycle life. It is also needed to validate electrolyte performance, which is lacking. Currently, cathodes for solid‐state batteries are thinner and have lower cathode active material content than their lithium‐ion battery counterpart, resulting from insufficient conductivity and limiting the battery energy density. This review article provides an overview of recent development in cathode microstructures and their impact on battery properties, including compatibility between cathode and electrolyte, cathode architecture design, interface engineering, correlation between material properties, cathode processing approaches, and performance, as well as the advanced characterization methods used to understand the above correlations . Some perspectives on future development are shared including utilizing in situ and operando characterization tools to better understand dynamic evolution of the cathode/electrolyte interface, adapting artificial intelligence and machine learning to design and optimize cathode structures. The article is aimed to promote research interest on cathode development and advance solid‐state battery technologies.
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