了解界面在固态锂硫电池中的作用

Tao Tao, Zhi-Sheng Zheng, Yuxuan Gao, Baozhi Yu, Ye Fan, Y. Chen, Shaoming Huang, Shengguo Lu
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引用次数: 6

摘要

全固态锂硫电池(ASSLSBs)由于其低成本、安全和高能量密度等独特优势,在电能存储系统中具有巨大的应用潜力。然而,固态电解质(SSE)/电极界面存在锂枝晶生长、界面性能差、界面电阻大等问题,严重阻碍了其商业化发展。此外,对循环过程中接口角色的基本理解不足也是设计和构建高性能asslsb的重大挑战。本文深入分析了SSE/电极界面的起源和问题,总结了解决这些界面问题的各种策略,并重点介绍了先进的分析表征技术,以有效地研究这些系统的界面特性。展望了高性能ASSLSBs的未来可能的研究方向。总之,先进的原位表征技术、智能界面工程和对界面性质的深入了解将有助于实现高性能asslbs。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Understanding the role of interfaces in solid-state lithium-sulfur batteries
All-solid-state lithium-sulfur batteries (ASSLSBs) exhibit huge potential applications in electrical energy storage systems due to their unique advantages, such as low costs, safety and high energy density. However, the issues facing solid-state electrolyte (SSE)/electrode interfaces, including lithium dendrite growth, poor interfacial capability and large interfacial resistance, seriously hinder their commercial development. Furthermore, an insufficient fundamental understanding of the interfacial roles during cycling is also a significant challenge for designing and constructing high-performance ASSLSBs. This article provides an in-depth analysis of the origin and issues of SSE/electrode interfaces, summarizes various strategies for resolving these interfacial issues and highlights advanced analytical characterization techniques to effectively investigate the interfacial properties of these systems. Future possible research directions for developing high-performance ASSLSBs are also suggested. Overall, advanced in-situ characterization techniques, intelligent interfacial engineering and a deeper understanding of the interfacial properties will aid the realization of high-performance ASSLSBs.
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