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Recent Advances in Rechargeable Magnesium-Based Batteries for High-Efficiency Energy Storage

机译:可充电镁基电池的最新进展,用于高效储能

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摘要

Benefiting from higher volumetric capacity, environmental friendliness and metallic dendrite-free magnesium (Mg) anodes, rechargeable magnesium batteries (RMBs) are of great importance to the development of energy storage technology beyond lithium-ion batteries (LIBs). However, their practical applications are still limited by the absence of suitable electrode materials, the sluggish kinetics of Mg2+ insertion/extraction and incompatibilities between electrodes and electrolytes. Herein, a systematic and insightful review of recent advances in RMBs, including intercalation-based cathode materials and conversion reaction-based compounds is presented. The relationship between microstructures with their electrochemical performances is comprehensively elucidated. In particular, anode materials are discussed beyond metallic Mg for RMBs. Furthermore, other Mg-based battery systems are also summarized, including Mg-air batteries, Mg-sulfur batteries, and Mg-iodine batteries. This review provides a comprehensive understanding of Mg-based energy storage technology and could offer new strategies for designing high-performance rechargeable magnesium batteries.
机译:受益于较高的体积容量,环境友好和金属树枝状镁(Mg)阳极,可充电镁电池(RMBS)对于超出锂离子电池(LIBS)的储能技术的发展具有重要意义。然而,它们的实际应用仍然受到合适的电极材料的限制,Mg2 +插入/提取的缓慢动力学和电极和电解质之间的不兼容性。在此,提出了对RMBS最近进程的系统和富有深度审查,包括基于嵌入的阴极材料和基于转化反应的化合物。全面阐明了微观结构与其电化学性能之间的关系。特别地,讨论过阳极材料,超出金属Mg用于人民币。此外,还概述了其他基于MG的电池系统,包括MG-Air电池,Mg-硫电池和Mg-碘电池。该审查提供了对基于MG的能量存储技术的全面了解,可以为设计高性能可充电镁电池提供新的策略。

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