Thin-film deposition techniques in surface and interface engineering of solid-state lithium batteries

Yongkun Yu, Minjian Gong, Chenxu Dong, Xu Xu
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Abstract

Extensive efforts have been dedicated to improving the physical and (electro)chemical properties of solid electrolytes in pursuit of promising all-solid-state batteries (ASSBs). Nevertheless, increasing studies has demonstrated the critical impact of interface issues on battery performance. Hence, the primary focus of this review is on the utilization of thin-film deposition techniques (TFDTs) in surface and interface engineering of ASSBs. First, we explain the issues associated with solid-solid interfaces. Second, the working mechanism and advantages/disadvantages of TFDTs are briefly introduced. Third, we summarize the existing studies and highlight notable progress in the anode and cathode interfaces of ASSBs. The interface of all-solid-state thin-film batteries (ATFBs) is also discussed. Lastly, we conclude the relevant scientific problems of TFDTs application in ASSBs interface engineering, and provide future directions and prospects.

固态锂电池表面和界面工程中的薄膜沉积技术
人们一直致力于改善固体电解质的物理和(电)化学特性,以开发前景广阔的全固态电池(ASSB)。然而,越来越多的研究表明,界面问题对电池性能有着至关重要的影响。因此,本综述的主要重点是在 ASSB 的表面和界面工程中利用薄膜沉积技术 (TFDT)。首先,我们将解释与固-固界面相关的问题。其次,简要介绍薄膜沉积技术的工作机制和优缺点。第三,我们总结了现有的研究,并重点介绍了 ASSB 阳极和阴极界面方面的显著进展。我们还讨论了全固态薄膜电池 (ATFB) 的界面。最后,我们总结了 TFDTs 在 ASSBs 接口工程中应用的相关科学问题,并提供了未来的发展方向和前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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