全固态电池的固体-电解质界面

Yu Xia , Xu Han , Yue Ji , Simeng Zhang , Saiqi Wei , Yue Gong , Junyi Yue , Yueyue Wang , Xiaona Li , Zhiqiang Fang , Changtai Zhao , Jianwen Liang
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引用次数: 0

摘要

界面工程,特别是人工固体-电解质界面(SEIs)的设计,已经成功地应用于全固态电池(ASSLBs)的工业应用。然而,对全固态锂离子电池中人工sei的合成和机理模型的基本理解仍然有限。本文综述了近年来为解决asslb界面问题而设计和合成人工SEIs的研究进展,涵盖了原子层沉积法、溶胶-凝胶法和机械球磨法三种主要制备方法及其技术路线。此外,本文还对近年来人工sei的非原位表征技术进行了综述。最后,对asslb人工sei界面工程技术进行了展望,重点介绍了具有工业应用前景的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Solid-electrolyte interphases for all-solid-state batteries

Solid-electrolyte interphases for all-solid-state batteries
Interfacial engineering, particularly the design of artificial solid-electrolyte interphases (SEIs), has been successfully applied in all-solid-state batteries (ASSLBs) for industrial applications. However, a fundamental understanding of the synthesis and mechanism models of artificial SEIs in all-solid-state Li-ion batteries remains limited. In this review, recent advances in designing and synthesizing artificial SEIs for ASSLBs to solve interfacial issues are thoroughly discussed, covering three main preparation methods and their technical routes: 1) atomic layer deposition, 2) sol-gel methods, and 3) mechanical ball-milling methods. Moreover, advanced ex-situ characterization techniques for artificial SEIs are comprehensively summarized. Finally, this review provides perspectives on techniques for the interface engineering of artificial SEIs for ASSLBs, with focus on promising methods for industrial applications.
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