Su Yanxia, Xu Fei, Zhang Xinren, Qiu Yuqian, Wang Hongqiang
State Key Laboratory of Solidification Processing, Centre for Nano Energy Materials, School of Materials Science and Engineering, Northwestern Polytechnical University, Shaanxi Joint Laboratory of Graphene (NPU), Xi'an, 710072, People's Republic of China.
Nanomicro Lett. 2023 Mar 31;15(1):82. doi: 10.1007/s40820-023-01055-z.
Composite solid electrolytes (CSEs) with poly(ethylene oxide) (PEO) have become fairly prevalent for fabricating high-performance solid-state lithium metal batteries due to their high Li solvating capability, flexible processability and low cost. However, unsatisfactory room-temperature ionic conductivity, weak interfacial compatibility and uncontrollable Li dendrite growth seriously hinder their progress. Enormous efforts have been devoted to combining PEO with ceramics either as fillers or major matrix with the rational design of two-phase architecture, spatial distribution and content, which is anticipated to hold the key to increasing ionic conductivity and resolving interfacial compatibility within CSEs and between CSEs/electrodes. Unfortunately, a comprehensive review exclusively discussing the design, preparation and application of PEO/ceramic-based CSEs is largely lacking, in spite of tremendous reviews dealing with a broad spectrum of polymers and ceramics. Consequently, this review targets recent advances in PEO/ceramic-based CSEs, starting with a brief introduction, followed by their ionic conduction mechanism, preparation methods, and then an emphasis on resolving ionic conductivity and interfacial compatibility. Afterward, their applications in solid-state lithium metal batteries with transition metal oxides and sulfur cathodes are summarized. Finally, a summary and outlook on existing challenges and future research directions are proposed.
含有聚环氧乙烷(PEO)的复合固态电解质(CSEs)因其高锂溶剂化能力、灵活的加工性能和低成本,在制造高性能固态锂金属电池方面已变得相当普遍。然而,室温离子电导率不理想、界面相容性差以及锂枝晶生长不可控严重阻碍了它们的发展。人们付出了巨大努力,将PEO与陶瓷结合,要么作为填料,要么作为主要基体,并对两相结构、空间分布和含量进行合理设计,这有望成为提高CSEs内部以及CSEs/电极之间离子电导率和解决界面相容性问题的关键。不幸的是,尽管有大量关于各种聚合物和陶瓷的综述,但专门讨论基于PEO/陶瓷的CSEs的设计、制备和应用的全面综述却非常缺乏。因此,本综述针对基于PEO/陶瓷的CSEs的最新进展,首先进行简要介绍,接着阐述其离子传导机制、制备方法,然后重点讨论解决离子电导率和界面相容性问题。随后,总结了它们在具有过渡金属氧化物和硫阴极的固态锂金属电池中的应用。最后,对现有挑战和未来研究方向进行了总结和展望。