Challenges, interface engineering, and processing strategies toward practical sulfide-based all-solid-state lithium batteries

IF 22.7 1区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY Infomat Pub Date : 2022-02-12 DOI:10.1002/inf2.12292
Yuhao Liang, Hong Liu, Guoxu Wang, Chao Wang, Yu Ni, Ce-Wen Nan, Li-Zhen Fan
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引用次数: 56

Abstract

All-solid-state lithium batteries have emerged as a priority candidate for the next generation of safe and energy-dense energy storage devices surpassing state-of-art lithium-ion batteries. Among multitudinous solid-state batteries based on solid electrolytes (SEs), sulfide SEs have attracted burgeoning scrutiny due to their superior ionic conductivity and outstanding formability. However, from the perspective of their practical applications concerning cell integration and production, it is still extremely challenging to constructing compatible electrolyte/electrode interfaces and developing available scale processing technologies. This review presents a critical overview of the current underlying understanding of interfacial issues and analyzes the main processing challenges faced by sulfide-based all-solid-state batteries from the aspects of cost-effective and energy-dense design. Besides, the corresponding approaches involving interface engineering and processing protocols for addressing these issues and challenges are summarized. Fundamental and engineering perspectives on future development avenues toward practical application of high energy, safety, and long-life sulfide-based all-solid-state batteries are ultimately provided.

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面向实用硫化物基全固态锂电池的挑战、界面工程和加工策略
全固态锂电池已经超越最先进的锂离子电池,成为下一代安全、能量密度高的储能设备的优先候选。在众多基于固体电解质(SEs)的固态电池中,硫化物se由于其优异的离子导电性和优异的可成形性而受到了越来越多的关注。然而,从它们在电池集成和生产中的实际应用来看,构建兼容的电解质/电极界面和开发可用的规模加工技术仍然是极具挑战性的。本文综述了目前对界面问题的基本理解,并从成本效益和能量密度设计方面分析了硫化物基全固态电池面临的主要工艺挑战。此外,还总结了解决这些问题和挑战的相应方法,包括接口工程和处理协议。对未来的发展途径,以实际应用的高能,安全和长寿命硫化物基全固态电池的基础和工程观点最终提供。
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来源期刊
Infomat
Infomat MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
37.70
自引率
3.10%
发文量
111
审稿时长
8 weeks
期刊介绍: InfoMat, an interdisciplinary and open-access journal, caters to the growing scientific interest in novel materials with unique electrical, optical, and magnetic properties, focusing on their applications in the rapid advancement of information technology. The journal serves as a high-quality platform for researchers across diverse scientific areas to share their findings, critical opinions, and foster collaboration between the materials science and information technology communities.
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