An Yong, Han Xue, Liu Yuyang, Azhar Alowasheeir, Na Jongbeom, Nanjundan Ashok Kumar, Wang Shengping, Yu Jingxian, Yamauchi Yusuke
Faculty of Materials Science and Chemistry, China University of Geosciences, Wuhan, 430074, China.
JST-ERATO Yamauchi Materials Space-Tectonics Project and International Center for Materials Nanoarchitectonics (WPI-MANA), National Institute for Materials Science (NIMS), 1-1 Namiki, Tsukuba, Ibaraki, 305-0044, Japan.
Small. 2022 Jan;18(3):e2103617. doi: 10.1002/smll.202103617. Epub 2021 Sep 28.
Solid-state polymer electrolytes (SPEs) for high electrochemical performance lithium-ion batteries have received considerable attention due to their unique characteristics; they are not prone to leakage, and they exhibit low flammability, excellent processability, good flexibility, high safety levels, and superior thermal stability. However, current SPEs are far from commercialization, mainly due to the low ionic conductivity, low Li transference number (t ), poor electrode/electrolyte interface contact, narrow electrochemical oxidation window, and poor long-term stability of Li metal. Recent work on improving electrochemical performance and these aspects of SPEs are summarized systematically here with a particular focus on the underlying mechanisms, and the improvement strategies are also proposed. This review could lead to a deeper consideration of the issues and solutions affecting the application of SPEs and pave a new pathway to safe, high-performance lithium-ion batteries.
用于高电化学性能锂离子电池的固态聚合物电解质(SPEs)因其独特特性而备受关注;它们不易泄漏,具有低可燃性、优异的加工性能、良好的柔韧性、高安全水平和卓越的热稳定性。然而,目前的固态聚合物电解质离商业化还很远,主要原因是离子电导率低、锂迁移数(t )低、电极/电解质界面接触差、电化学氧化窗口窄以及锂金属的长期稳定性差。本文系统总结了近期在改善固态聚合物电解质电化学性能及这些方面的研究工作,特别关注其潜在机制,并提出了改进策略。这篇综述可能会促使人们更深入地思考影响固态聚合物电解质应用的问题和解决方案,并为安全、高性能锂离子电池开辟一条新途径。