高性能石榴石固态锂电池的界面工程学

SusMat Pub Date : 2024-02-14 DOI:10.1002/sus2.187
Lingchen Wang, Jiaxin Wu, Chengshuai Bao, Zichang You, Yan Lu, Zhaoyin Wen
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引用次数: 0

摘要

固态电池是未来储能技术的代表,具有更高的安全性和能量密度。基于石榴石型 Li7La3Zr2O12(LLZO)固态电解质的固态锂电池(SSLBs)因其诱人的材料特性和化学稳定性而脱颖而出。然而,它们的成功应用有赖于克服界面挑战。这篇综述文章主要关注基于 LLZO 的固态锂电池界面工程的进展。我们首先简要介绍了固态电解质,并讨论了与基于 LLZO 的 SSLB 的界面特性相关的挑战。我们深入探讨了结构与性能之间的相关性,以及实现理想电极/电解质界面的重要设计原则。随后,我们深入探讨了致力于克服这些挑战的最新进展和策略,并指定了有关阴极和阳极界面设计的章节。最后,我们将分享我们对界面设计的进步和机遇的见解,以充分发挥基于 LLZO 的 SSLB 的潜力,最终为开发安全、高性能的储能解决方案做出贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Interfacial engineering for high‐performance garnet‐based solid‐state lithium batteries
Solid‐state batteries represent the future of energy storage technology, offering improved safety and energy density. Garnet‐type Li7La3Zr2O12 (LLZO) solid‐state electrolytes‐based solid‐state lithium batteries (SSLBs) stand out for their appealing material properties and chemical stability. Yet, their successful deployment depends on conquering interfacial challenges. This review article primarily focuses on the advancement of interfacial engineering for LLZO‐based SSLBs. We commence with a concise introduction to solid‐state electrolytes and a discussion of the challenges tied to interfacial properties in LLZO‐based SSLBs. We deeply explore the correlations between structure and properties and the design principles vital for achieving an ideal electrode/electrolyte interface. Subsequently, we delve into the latest advancements and strategies dedicated to overcoming these challenges, with designated sections on cathode and anode interface design. In the end, we share our insights into the advancements and opportunities for interface design in realizing the full potential of LLZO‐based SSLBs, ultimately contributing to the development of safe and high‐performance energy storage solutions.
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