材料科学
薄膜
硅
基质(水族馆)
法拉第效率
扫描电子显微镜
锂(药物)
阳极
无定形固体
非晶硅
电极
光电子学
纳米技术
复合材料
晶体硅
结晶学
化学
物理化学
内分泌学
地质学
海洋学
医学
作者
Qingliu Wu,Bing Shi,Javier Bareño,Yuzi Liu,V.A. Maroni,Dengyun Zhai,Dennis W. Dees,Wenquan Lu
标识
DOI:10.1021/acsami.7b13980
摘要
Amorphous silicon thin films having various thicknesses were investigated as a negative electrode material for lithium-ion batteries. Electrochemical characterization of the 20 nm thick thin silicon film revealed a very low first cycle Coulombic efficiency, which can be attributed to the silicon oxide layer formed on both the surface of the as-deposited Si thin film and the interface between the Si and the substrate. Among the investigated films, the 100 nm Si thin film demonstrated the best performance in terms of first cycle efficiency and cycle life. Observations from scanning electron microscopy demonstrated that the generation of cracks was inevitable in the cycled Si thin films, even as the thickness of the film was as little as 20 nm, which was not predicted by previous modeling work. However, the cycling performance of the 20 and 100 nm silicon thin films was not detrimentally affected by these cracks. The poor capacity retention of the 1 μm silicon thin film was attributed to the delamination.
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