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可充电碱金属-氯电池:进展、挑战与未来展望

Rechargeable alkali metal-chlorine batteries: advances, challenges, and future perspectives.

作者信息

Xie Zehui, Sun Lidong, Sajid Muhammad, Feng Yuancheng, Lv Zhenshan, Chen Wei

机构信息

Department of Applied Chemistry, School of Chemistry and Materials Science, Hefei National Research Center for Physical Sciences at the Microscale, University of Science and Technology of China, Hefei, Anhui 230026, China.

出版信息

Chem Soc Rev. 2024 Aug 12;53(16):8424-8456. doi: 10.1039/d4cs00202d.

Abstract

The emergence of Li-SOCl batteries in the 1970s as a high-energy-density battery system sparked considerable interest among researchers. However, limitations in the primary cell characteristics have restricted their potential for widespread adoption in today's sustainable society. Encouragingly, recent developments in alkali/alkaline-earth metal-Cl (AM-Cl) batteries have shown impressive reversibility with high specific capacity and cycle performance, revitalizing the potential of SOCl batteries and becoming a promising technology surpassing current lithium-ion batteries. In this review, the emerging AM-Cl batteries are comprehensively summarized for the first time. The development history and advantages of Li-SOCl batteries are traced, followed by the critical working mechanisms for achieving high rechargeability. The design concepts of electrodes and electrolytes for AM-Cl batteries as well as key characterization techniques are also demonstrated. Furthermore, the current challenges and corresponding strategies, as well as future directions regarding the battery are systematically discussed. This review aims to deepen the understanding of the state-of-the-art AM-Cl battery technology and accelerate the development of practical AM-Cl batteries for next-generation high-energy storage systems.

摘要

20世纪70年代锂-亚硫酰氯电池作为一种高能量密度电池系统的出现引起了研究人员的极大兴趣。然而,原电池特性的局限性限制了它们在当今可持续社会中广泛应用的潜力。令人鼓舞的是,最近碱/碱土金属-氯(AM-Cl)电池的发展显示出令人印象深刻的可逆性,具有高比容量和循环性能,重振了亚硫酰氯电池的潜力,并成为一种有望超越当前锂离子电池的技术。在这篇综述中,首次对新兴的AM-Cl电池进行了全面总结。追溯了锂-亚硫酰氯电池的发展历史和优势,接着阐述了实现高可充电性的关键工作机制。还展示了AM-Cl电池电极和电解质的设计概念以及关键表征技术。此外,系统地讨论了当前电池面临的挑战及相应策略,以及未来发展方向。这篇综述旨在加深对先进AM-Cl电池技术的理解,并加速下一代高能量存储系统实用AM-Cl电池的开发。

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