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快速充电固态锂电池:材料、策略与前景

Fast-Charging Solid-State Li Batteries: Materials, Strategies, and Prospects.

作者信息

Yu Jing, Wang Yuhao, Shen Longyun, Liu Jiapeng, Wang Zilong, Xu Shengjun, Law Ho Mei, Ciucci Francesco

机构信息

College of Chemistry and Chemical Engineering, Zhongkai University of Agriculture and Engineering, Guangzhou, 510225, China.

Department of Mechanical and Aerospace Engineering, The Hong Kong University of Science and Technology, Hong Kong, 999077, China.

出版信息

Adv Mater. 2025 Jun;37(23):e2417796. doi: 10.1002/adma.202417796. Epub 2024 Dec 25.

Abstract

The ability to rapidly charge batteries is crucial for widespread electrification across a number of key sectors, including transportation, grid storage, and portable electronics. Nevertheless, conventional Li-ion batteries with organic liquid electrolytes face significant technical challenges in achieving rapid charging rates without sacrificing electrochemical efficiency and safety. Solid-state batteries (SSBs) offer intrinsic stability and safety over their liquid counterparts, which can potentially bring exciting opportunities for fast charging applications. Yet realizing fast-charging SSBs remains challenging due to several fundamental obstacles, including slow Li transport within solid electrolytes, sluggish kinetics with the electrodes, poor electrode/electrolyte interfacial contact, as well as the growth of Li dendrites. This article examines fast-charging SSB challenges through a comprehensive review of materials and strategies for solid electrolytes (ceramics, polymers, and composites), electrodes, and their composites. In particular, methods to enhance ion transport through crystal structure engineering, compositional control, and microstructure optimization are analyzed. The review also addresses interface/interphase chemistry and Li transport mechanisms, providing insights to guide material design and interface optimization for next-generation fast-charging SSBs.

摘要

对于包括交通运输、电网储能和便携式电子产品在内的多个关键领域的广泛电气化而言,电池的快速充电能力至关重要。然而,采用有机液体电解质的传统锂离子电池在不牺牲电化学效率和安全性的情况下实现快速充电速率面临重大技术挑战。固态电池(SSB)相对于其液体电池同类产品具有内在的稳定性和安全性,这可能为快速充电应用带来令人兴奋的机遇。然而,由于几个基本障碍,实现快速充电的固态电池仍然具有挑战性,这些障碍包括固体电解质中锂传输缓慢、与电极的动力学迟缓、电极/电解质界面接触不良以及锂枝晶的生长。本文通过对固体电解质(陶瓷、聚合物和复合材料)、电极及其复合材料的材料和策略进行全面综述,探讨了快速充电固态电池面临的挑战。特别是,分析了通过晶体结构工程、成分控制和微观结构优化来增强离子传输的方法。该综述还讨论了界面/相间化学和锂传输机制,为指导下一代快速充电固态电池的材料设计和界面优化提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2775/12160703/9fe673a37359/ADMA-37-2417796-g016.jpg

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