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用于高安全性钾离子电池的阻燃非水电解质

Flame-Retardant Nonaqueous Electrolytes for High-Safety Potassium-Ion Batteries.

作者信息

Wang Hao, Nie Luanjie, Chu Xiaokang, Chen Hang, Chen Ran, Huang Taixin, Lai Qingxue, Zheng Jing

机构信息

Department of Chemistry and Materials Science, College of Science, Nanjing Forestry University, No. 159 Longpan Rd., Nanjing, 210037, P. R. China.

Jiangsu key Laboratory of Electrochemical Energy Storage Technologies, College of Materials Science and Technology, Nanjing University of Aeronautics and Astronautics, No. 29 Yudao St., Nanjing, 210016, P. R. China.

出版信息

Small Methods. 2024 Jul;8(7):e2301104. doi: 10.1002/smtd.202301104. Epub 2023 Dec 15.

Abstract

Potassium-ion batteries (PIBs) with conventional organic-based flammable electrolytes suffer from serious safety issues with a high risk of ignition and burning especially under harsh conditions, which significantly limits their widespread applications. Flame-retardant electrolytes (FREs) are considered as one of the most effective strategies to address these safety issues. Therefore, it's much necessary to summarize the challenges, recent progress, and design principles of flame-retardant nonaqueous electrolytes for PIBs to guide their development and future applications. In this review, an in-depth introduction and explanation of the origins of electrolyte flammability are first presented. Particularly, the state-of-the-art design principles of FREs for PIBs are extensively summarized and emphasized, including the electrolyte flame-retardant solvents/additives, highly concentrated electrolytes (HCEs), localized high-concentration electrolytes (LHCEs), ionic liquids-based electrolytes and solid-state electrolytes. Moreover, the advantages and drawbacks of each approach are systematically presented and discussed, following by proposed perspectives to guide the rational development of next-generation high-safety PIBs for practical applications.

摘要

具有传统有机基易燃电解质的钾离子电池存在严重的安全问题,尤其是在恶劣条件下有很高的着火和燃烧风险,这极大地限制了它们的广泛应用。阻燃电解质(FREs)被认为是解决这些安全问题的最有效策略之一。因此,总结用于钾离子电池的阻燃非水电解质的挑战、最新进展和设计原则,以指导其发展和未来应用是非常必要的。在这篇综述中,首先对电解质可燃性的起源进行了深入介绍和解释。特别地,广泛总结并强调了用于钾离子电池的阻燃电解质的最新设计原则,包括电解质阻燃溶剂/添加剂、高浓度电解质(HCEs)、局部高浓度电解质(LHCEs)、离子液体基电解质和固态电解质。此外,系统地介绍并讨论了每种方法的优缺点,随后提出了指导下一代高安全性钾离子电池实际应用合理发展的观点。

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