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Ambilaterality of Redox Mediators towards ~1O_2 in Li-O_2 Batteries: Trap and Quencher

机译:锂O_2电池中氧化还原介质对~1O_2的双侧性:陷阱和淬灭

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摘要

Lithium oxygen batteries (LOBs) are considered promising next-generation lithium batteries owing to their high theoretical specific energy density. However, several issues must be addressed for realizing the practical applications of LOBs. Among them, the evolution of singlet oxygen (O-1(2))-which undergoes vigorous reactions that compromise the stability of the system-is a key challenge. The high overpotential induced by low-conductivity lithium peroxide necessitates the use of a redox mediator (RM) to facilitate the charging process; however, RMs can also be degraded by O-1(2), which limits their efficacy in the long term. Recently, it was revealed that certain RMs play a role in suppressing the generation of O-1(2). In this review, the relationship between the RM and O-1(2) is described. Based on recent understandings, clear insight into RM reactions toward O-1(2) and possible future research directions will be provided.
机译:锂氧电池(LOB)因其理论上较高的比能量密度而被认为是有前途的下一代锂电池。但是,要实现 LOB 的实际应用,必须解决几个问题。其中,单线态氧(O-1(2))的演化是一个关键挑战,它经历了剧烈的反应,损害了系统的稳定性。低电导率过氧化锂引起的高过电位需要使用氧化还原介质 (RM) 来促进充电过程;然而,RM也可能被O-1(2)降解,这限制了它们的长期疗效。最近,据透露,某些RM在抑制O-1(2)的产生方面发挥了作用。在这篇综述中,描述了RM和O-1(2)之间的关系。基于最近的理解,将提供对RM对O-1(2)的反应和未来可能的研究方向的清晰见解。

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