安全锂金属电池阻燃凝胶聚合物电解质的设计策略

Borui Yang, Ting Li, Yu Pan, Liu Yang, Kun Li, Jiahao Chen, Zhongfu Yan, Anjun Hu, Jianping Long
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引用次数: 0

摘要

锂金属电池(LMB)因其高能量密度而成为储能设备中一项前景广阔的技术。然而,内部液态有机电解质固有的易燃性和泄漏性在受热时会带来严重的安全风险。为了应对这一挑战,人们开发了凝胶聚合物电解质 (GPE),通过加入阻燃基团来减少泄漏和提高不可燃性,从而提高液态有机电解质的安全性。本综述首先简要分析了锂聚合物电池特有的热失控机制,强调了它与锂离子电池的区别。随后,讨论了评估锂电池安全性的各种方法,包括可燃性、热稳定性和滥用评估。下一部分根据不同的阻燃等级对近期有关安全 GPE 的研究进行了分类,并对每一类研究进行了简要概述。最后,本综述探讨了目前在开发以安全为导向的 GPE 方面取得的进展,并考虑了潜在的未来研究方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design strategy towards flame-retardant gel polymer electrolytes for safe lithium metal batteries
The emergence of lithium metal batteries (LMBs) as a promising technology in energy storage devices is attributed to their high energy density. However, the inherent flammability and leakage of the internal liquid organic electrolyte pose serious safety risks when exposed to heat. In response to this challenge, gel polymer electrolytes (GPEs) have been developed to mitigate leakage and enhance nonflammability by incorporating flame-retardant groups, thereby improving the safety of LMBs. This review commences with a brief analysis of the thermal runaway mechanism specific to LMBs, emphasizing its distinctions from that of lithium-ion batteries. Following this, the various methods employed to assess the safety of LMBs are discussed, including flammability, thermal stability, and abuse assessment. The following section categorizes recent research on safe GPEs according to different flame retardancy levels providing a concise overview of each category. Finally, the review explores current advancements in developing safety-oriented GPEs and considers potential future research directions.
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