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基于硫化物的全固态锂硫电池:挑战与展望

Sulfide-Based All-Solid-State Lithium-Sulfur Batteries: Challenges and Perspectives.

作者信息

Zhu Xinxin, Wang Liguang, Bai Zhengyu, Lu Jun, Wu Tianpin

机构信息

College of Chemical and Biological Engineering, Zhejiang University, Hangzhou, 310058, People's Republic of China.

Collaborative Innovation Center of Henan Province for Green Manufacturing of Fine Chemicals Key Laboratory of Green Chemical Media and Reactions Ministry of Education, School of Chemistry and Chemical Engineering, Henan Normal University, Xinxiang, Henan, 453007, People's Republic of China.

出版信息

Nanomicro Lett. 2023 Mar 28;15(1):75. doi: 10.1007/s40820-023-01053-1.

Abstract

Lithium-sulfur batteries with liquid electrolytes have been obstructed by severe shuttle effects and intrinsic safety concerns. Introducing inorganic solid-state electrolytes into lithium-sulfur systems is believed as an effective approach to eliminate these issues without sacrificing the high-energy density, which determines sulfide-based all-solid-state lithium-sulfur batteries. However, the lack of design principles for high-performance composite sulfur cathodes limits their further application. The sulfur cathode regulation should take several factors including the intrinsic insulation of sulfur, well-designed conductive networks, integrated sulfur-electrolyte interfaces, and porous structure for volume expansion, and the correlation between these factors into account. Here, we summarize the challenges of regulating composite sulfur cathodes with respect to ionic/electronic diffusions and put forward the corresponding solutions for obtaining stable positive electrodes. In the last section, we also outlook the future research pathways of architecture sulfur cathode to guide the develop high-performance all-solid-state lithium-sulfur batteries.

摘要

具有液体电解质的锂硫电池受到严重的穿梭效应和固有安全问题的阻碍。将无机固态电解质引入锂硫体系被认为是一种在不牺牲高能量密度的情况下消除这些问题的有效方法,这决定了基于硫化物的全固态锂硫电池。然而,缺乏高性能复合硫正极的设计原则限制了它们的进一步应用。硫正极调控应考虑几个因素,包括硫的固有绝缘性、精心设计的导电网络、集成的硫-电解质界面、用于体积膨胀的多孔结构以及这些因素之间的相关性。在此,我们总结了在离子/电子扩散方面调控复合硫正极的挑战,并提出了获得稳定正极的相应解决方案。在最后一部分,我们还展望了构筑硫正极的未来研究途径,以指导高性能全固态锂硫电池的发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d244/10050614/295a13e2cd66/40820_2023_1053_Fig1_HTML.jpg

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