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Alloy Anode Materials for Rechargeable Mg Ion Batteries

机译:用于可充电Mg离子电池的合金阳极材料

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摘要

Rechargeable magnesium ion batteries are interesting as one of the alternative metal ion battery systems to lithium ion batteries due to the wide availability and accessibility of magnesium in the earth's crust. On the one hand, electrolyte solutions in which Mg metal anodes are fully reversible are not suitable for the use of high voltage/high capacity transition metal oxide cathodes due to complex surface phenomena. On the other hand, Mg metal anodes cannot work reversibly in conventional electrolyte solutions in which high voltage/high capacity Mg insertion cathodes can work because of passivation phenomena that fully block them. Replacing Mg metal with alternative anodes that can work reversibly in conventional electrolyte solutions could provide a promising route to elaborate high voltage and high capacity rechargeable Mg battery systems. Herein, the recent progress in alloy anodes based on group IIIA, IVA, VA elements is summarized. The theoretical evaluations, achievable capacities, synthetic strategies, battery test configurations, electrochemical properties, and underlying reaction mechanisms are systematically summarized and discussed. The key issues and challenges impeding their current use are identified and some valuable suggestions for their future development as practical reversible anodes for Mg batteries are provided.
机译:可充电镁离子电池作为锂离子电池的一个替代金属离子电池之一,由于地壳中镁的可用性和可达性,因此是锂离子电池的一种。一方面,电解质溶液,其中Mg金属阳极是完全可逆的,不适合于由于复杂的表面现象而使用高电压/高容量过渡金属氧化物阴极。另一方面,Mg金属阳极不能在传统的电解质溶液中可逆地工作,其中高电压/高容量Mg插入阴极可以采用完全阻挡它们的钝化现象。用可以在传统电解质溶液中可逆地工作的替代阳极替换Mg金属可以提供有希望的途径来制定高压和高容量可充电MG电池系统。在此,总结了基于IIIA组,IVA,VA元素的合金阳极的最近进展。系统地总结和讨论了理论评价,可实现的能力,合成策略,电池试验配置,电化学性能和基础反应机制。提供了阻碍了他们目前使用的关键问题和挑战,提供了作为MG电池的实际可逆阳极作为未来发展的一些有价值的建议。

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