材料科学
超级电容器
电解质
数码产品
储能
化学工程
热稳定性
陶瓷
纳米技术
热失控
快离子导体
电池(电)
工艺工程
电极
电化学
电气工程
复合材料
工程类
热力学
物理
物理化学
功率(物理)
化学
作者
Vignesh Kumaravel,John Bartlett,Suresh C. Pillai
标识
DOI:10.1002/aenm.202002869
摘要
Abstract Reports of recent fire accidents in the electronics and electric vehicles (EVs) industries show that thermal runaway (TR) reactions are a key consideration for the industry. Utilization of solid electrolytes (SEs) could be an important solution in to the TR issues connected to exothermic electrochemical reactions. Data on the thermal stability of modern SEs, ionic transport mechanisms, kinetics, thermal models, recent advances, challenges, and future prospects are presented in this review. Ceramic polymer nanocomposites are the most appropriate SEs for high‐temperature stable batteries (in the range of 80–200 °C). Hydrogels and ionogels can be employed as stable, flexible, and mechanically durable SEs for antifreeze (up to –50 °C) and high‐temperature (up to 200 °C) applications in supercapacitors. Besides the thermal safety features, SEs can also prolong the lifecycle of energy storage devices in next‐generation EVs, space devices, aviation gadgets, defense tools, and mobile electronics.
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