材料科学
图层(电子)
无定形固体
阴极
薄膜
锂钴氧化物
基质(水族馆)
锂(药物)
阳极
溅射沉积
脉冲激光沉积
蒸发
化学工程
分析化学(期刊)
溅射
纳米技术
锂离子电池
电池(电)
化学
电极
结晶学
物理化学
工程类
医学
内分泌学
海洋学
功率(物理)
色谱法
量子力学
热力学
物理
地质学
标识
DOI:10.1007/s10008-024-05873-y
摘要
Abstract This paper reports the fabrication of thin-film batteries which are composed of three stacking layers: LiCoO 2 , Li 3 PO 4 , and Li. First, a LiCoO 2 layer is constructed on an electron-conductive substrate by pulsed laser deposition as a cathode. The crystallinity of the LiCoO 2 layer is mainly controlled by the cationic ratio of Li and Co. Subsequently, an amorphous Li 3 PO 4 layer with a high ionic conductivity is further deposited on the cathode LiCoO 2 layer by radio frequency magnetron sputtering as a solid electrolyte. To avoid any possible damage which causes the formation of resistive species between LiCoO 2 and Li 3 PO 4 , bias control of the substrate during Li 3 PO 4 deposition is essential. Finally, a Li metal layer is deposited as an anode/current collector on the Li 3 PO 4 /LiCoO 2 bilayer by resistive heating evaporation in a vacuum at an elevated temperature for the formation of a low resistive interface. The fabricated three-layer thin-film battery shows a high-rate capability when the LiCoO 2 layer is a (104)-oriented epitaxial film.
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