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锂空气电池中的可逆放电产物

Reversible Discharge Products in Li-Air Batteries.

作者信息

Liu Tong, Zhao Siyuan, Xiong Qi, Yu Jie, Wang Jian, Huang Gang, Ni Meng, Zhang Xinbo

机构信息

Building Energy Research Group, Department of Building and Real Estate, The Hong Kong Polytechnic University, Hung Hom, Kowloon, Hong Kong, 999077, P. R. China.

The Hong Kong Polytechnic University Shenzhen Research Institute, Shenzhen, Guangdong, 518057, P. R. China.

出版信息

Adv Mater. 2023 May;35(20):e2208925. doi: 10.1002/adma.202208925. Epub 2023 Mar 29.

Abstract

Lithium-air (Li-air) batteries stand out among the post-Li-ion batteries due to their high energy density, which has rapidly progressed in the past years. Regarding the fundamental mechanism of Li-air batteries that discharge products produced and decomposed during charging and recharging progress, the reversibility of products closely affects the battery performance. Along with the upsurge of the mainstream discharge products lithium peroxide, with devoted efforts to screening electrolytes, constructing high-efficiency cathodes, and optimizing anodes, much progress is made in the fundamental understanding and performance. However, the limited advancement is insufficient. In this case, the investigations of other discharge products, including lithium hydroxide, lithium superoxide, lithium oxide, and lithium carbonate, emerge and bring breakthroughs for the Li-air battery technologies. To deepen the understanding of the electrochemical reactions and conversions of discharge products in the battery, recent advances in the various discharge products, mainly focusing on the growth and decomposition mechanisms and the determining factors are systematically reviewed. The perspectives for Li-air batteries on the fundamental development of discharge products and future applications are also provided.

摘要

锂空气(Li-air)电池在锂离子电池之后脱颖而出,因其具有高能量密度,在过去几年中取得了快速进展。关于锂空气电池在充电和再充电过程中产生和分解的放电产物的基本机制,产物的可逆性密切影响电池性能。随着主流放电产物过氧化锂的兴起,在筛选电解质、构建高效阴极和优化阳极方面投入了大量努力,在基本理解和性能方面取得了很大进展。然而,有限的进展是不够的。在这种情况下,对其他放电产物的研究,包括氢氧化锂、超氧化锂、氧化锂和碳酸锂,应运而生,并为锂空气电池技术带来突破。为了加深对电池中放电产物的电化学反应和转化的理解,系统地综述了各种放电产物的最新进展,主要关注其生长和分解机制以及决定因素。还提供了锂空气电池在放电产物基础发展和未来应用方面的展望。

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