Correlating concerted cations with oxygen redox in rechargeable batteries

氧化还原 氧气 化学 氧化还原 无机化学 有机化学 生物化学
作者
Shiqi Wang,Lifan Wang,David Sandoval,Tongchao Liu,Chun Zhan,Khalil Amine
出处
期刊:Chemical Society Reviews [Royal Society of Chemistry]
卷期号:53 (7): 3561-3578 被引量:27
标识
DOI:10.1039/d3cs00550j
摘要

Rechargeable batteries currently power much of our world, but with the increased demand for electric vehicles (EVs) capable of traveling hundreds of miles on a single charge, new paradigms are necessary for overcoming the limits of energy density, particularly in rechargeable batteries. The emergence of reversible anionic redox reactions presents a promising direction toward achieving this goal; however this process has both positive and negative effects on battery performance. While it often leads to higher capacity, anionic redox also causes several unfavorable effects such as voltage fade, voltage hysteresis, sluggish kinetics, and oxygen loss. However, the introduction of cations with topological chemistry tendencies has created an efficient pathway for achieving long-term oxygen redox with improved kinetics. The cations serve as pillars in the crystal structure and meanwhile can interact with oxygen in ways that affect the oxygen redox process through their impact on the electronic structure. This review delves into a detailed examination of the fundamental physical and chemical characteristics of oxygen redox and elucidates the crucial role that cations play in this process at the atomic and electronic scales. Furthermore, we present a systematic summary of polycationic systems, with an emphasis on their electrochemical performance, in order to provide perspectives on the development of next-generation cathode materials.
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