高稳定性的室温离子液体:通过最小化界面电阻,在固态电池中实现有效的电荷转移

Seonghun Jeong, Van-Chuong Ho, Ohmin Kwon, Yuwon Park, Junyoung Mun
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引用次数: 0

摘要

目前,人们正在进行深入的研究,以开发稳定的电解质系统,从而显著提高可充电电池的性能。固体电解质的最新进展由于其高导电性导致了新型的有前途的系统。这引起了人们对安全电池实际应用的极大兴趣。考虑到与可充电电池相关的安全问题,固体电解质已成为下一代电池技术进步不可或缺的一部分。然而,固-固界面阻力的增加已经成为一个关键的挑战。为了解决这一问题,研究了室温离子液体(RTILs)作为减轻固态电池(ssb)界面电阻的功能材料。RTILs的特殊性能,如不挥发性、不可燃性和高安全性,使其成为安全电池的极有希望的候选者。为了有效利用离子液体,人们探索了多种方法。本文综述了RTILs作为电解质的应用,考虑了它们的电化学性能以及将其掺入复合材料中以减少SSBs中的电阻。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High-stability room temperature ionic liquids: enabling efficient charge transfer in solid-state batteries by minimizing interfacial resistance
Currently, intensive research is underway to develop stable electrolyte systems that can significantly enhance the performance of rechargeable batteries. Recent advances in solid electrolytes have led to new types of promising systems owing to their high conductivity. This has generated considerable interest in the practical applications of safe batteries. Considering the safety concerns associated with rechargeable batteries, solid electrolytes have become indispensable for the advancement of next-generation battery technologies. However, the increased interfacial resistance at solid-solid interfaces has become a critical challenge. To address this problem, room-temperature ionic liquids (RTILs) have been investigated as functional materials for mitigating the interfacial resistance in solid-state batteries (SSBs). The special properties of RTILs, such as their non-volatility, non-flammability, and high safety characteristics, make them highly promising candidates for safe batteries. Various approaches have been explored for the effective utilization of ionic liquids in SSBs. This review provides a comprehensive discussion on the application of RTILs as electrolytes, considering their electrochemical properties and incorporation into composites to minimize resistance in SSBs.
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