State Key Laboratory of Silicon Materials, Key Laboratory of Advanced Materials and Applications for Batteries of Zhejiang Province, School of Materials Science & Engineering, Zhejiang University, Hangzhou, 310027, China.
College of Materials Science and Engineering, Zhejiang University of Technology, Hangzhou, 310014, China.
Small. 2023 Jun;19(24):e2208164. doi: 10.1002/smll.202208164. Epub 2023 Mar 14.
Solid-state lithium-sulfur batteries (SSLSBs) have attracted tremendous research interest due to their large theoretical energy density and high safety, which are highly important indicators for the development of next-generation energy storage devices. Particularly, safety and "shuttle effect" issues originating from volatile and flammable liquid organic electrolytes can be fully mitigated by switching to a solid-state configuration. However, their road to thecommercial application is still plagued with numerous challenges, most notably the intrinsic electrochemical instability of solid-state electrolytes (SSEs) materials and their interfacial compatibility with electrodes and electrolytes. In this review, a critical discussion on the key issues and problems of different types of SSEs as well as the corresponding optimization strategies are first highlighted. Then, the state-of-the-art preparation methods and properties of different kinds of SSE materials, and their manufacture, characterization and performance in SSLSBs are summarized in detail. Finally, a scientific outlook for the future development of SSEs and the avenue to commercial application of SSLSBs is also proposed.
固态锂硫电池(SSLSBs)因其具有较大的理论能量密度和较高的安全性而引起了极大的研究兴趣,这是下一代储能器件发展的重要指标。特别是,通过转换为固态构型,可以完全缓解源自挥发性和易燃液体有机电解质的安全和“穿梭效应”问题。然而,其走向商业化应用仍然面临着许多挑战,最显著的是固态电解质(SSE)材料的固有电化学不稳定性及其与电极和电解质的界面兼容性。在这篇综述中,首先重点讨论了不同类型 SSE 的关键问题和问题以及相应的优化策略。然后,详细总结了不同种类 SSE 材料的最新制备方法和性能,以及它们在 SSLSB 中的制造、表征和性能。最后,还对 SSE 的未来发展和 SSLSB 的商业化应用提出了科学展望。