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非水可充电铝电池:进展、挑战与展望

Nonaqueous Rechargeable Aluminum Batteries: Progresses, Challenges, and Perspectives.

作者信息

Tu Jiguo, Song Wei-Li, Lei Haiping, Yu Zhijing, Chen Li-Li, Wang Mingyong, Jiao Shuqiang

机构信息

State Key Laboratory of Advanced Metallurgy, University of Science and Technology Beijing, Beijing 100083, P.R. China.

Institute of Advanced Structure Technology, Beijing Institute of Technology, Beijing 100081, P.R. China.

出版信息

Chem Rev. 2021 Apr 28;121(8):4903-4961. doi: 10.1021/acs.chemrev.0c01257. Epub 2021 Mar 17.

Abstract

For significantly increasing the energy densities to satisfy the growing demands, new battery materials and electrochemical chemistry beyond conventional rocking-chair based Li-ion batteries should be developed urgently. Rechargeable aluminum batteries (RABs) with the features of low cost, high safety, easy fabrication, environmental friendliness, and long cycling life have gained increasing attention. Although there are pronounced advantages of utilizing earth-abundant Al metals as negative electrodes for high energy density, such RAB technologies are still in the preliminary stage and considerable efforts will be made to further promote the fundamental and practical issues. For providing a full scope in this review, we summarize the development history of Al batteries and analyze the thermodynamics and electrode kinetics of nonaqueous RABs. The progresses on the cutting-edge of the nonaqueous RABs as well as the advanced characterizations and simulation technologies for understanding the mechanism are discussed. Furthermore, major challenges of the critical battery components and the corresponding feasible strategies toward addressing these issues are proposed, aiming to guide for promoting electrochemical performance (high voltage, high capacity, large rate capability, and long cycling life) and safety of RABs. Finally, the perspectives for the possible future efforts in this field are analyzed to thrust the progresses of the state-of-the-art RABs, with expectation of bridging the gap between laboratory exploration and practical applications.

摘要

为了显著提高能量密度以满足不断增长的需求,迫切需要开发超越传统摇椅式锂离子电池的新型电池材料和电化学体系。具有低成本、高安全性、易于制造、环境友好和长循环寿命等特点的可充电铝电池(RABs)受到了越来越多的关注。尽管使用地球上储量丰富的铝金属作为负极以实现高能量密度具有明显优势,但此类RAB技术仍处于初级阶段,仍需付出巨大努力来进一步推动其基础和实际应用问题的解决。为了在本综述中提供全面的内容,我们总结了铝电池的发展历史,并分析了非水RABs的热力学和电极动力学。讨论了非水RABs的前沿进展以及用于理解其机理的先进表征和模拟技术。此外,提出了关键电池组件面临的主要挑战以及解决这些问题的相应可行策略,旨在指导提高RABs的电化学性能(高电压、高容量、大倍率性能和长循环寿命)和安全性。最后,分析了该领域未来可能努力的方向,以推动最先进RABs的发展,期望弥合实验室探索与实际应用之间的差距。

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