材料科学
物理气相沉积
阴极
薄膜
沉积(地质)
原子层沉积
离子镀
蒸发
图层(电子)
溅射沉积
电子束物理气相沉积
纳米技术
脉冲激光沉积
化学气相沉积
锂离子电池的纳米结构
电解质
溅射
电极
阳极
化学
古生物学
物理
物理化学
沉积物
生物
热力学
作者
Berik Uzakbaiuly,Aliya Mukanova,Yongguang Zhang,Zhumabay Bakenov
标识
DOI:10.3389/fenrg.2021.625123
摘要
With the development of smart electronics, a wide range of techniques have been considered for efficient co-integration of micro devices and micro energy sources. Physical vapor deposition (PVD) by means of thermal evaporation, magnetron sputtering, ion-beam deposition, pulsed laser deposition, etc., is among the most promising techniques for such purposes. Layer-by-layer deposition of all solid-state thin-film batteries via PVD has led to many publications in the last two decades. In these batteries, active materials are homogeneous and usually binder free, which makes them more promising in terms of energy density than those prepared by the traditional powder slurry technique. This review provides a summary of the preparation of cathode materials by PVD for all solid-state thin-film batteries. Cathodes based on intercalation and conversion reaction, as well as properties of thin-film electrode–electrolyte interface, are discussed.
科研通智能强力驱动
Strongly Powered by AbleSci AI