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了解碘化锂在锂氧电池中的作用。

Understanding the Role of Lithium Iodide in Lithium-Oxygen Batteries.

作者信息

Bi Xuanxuan, Li Jiantao, Dahbi Mouad, Alami Jones, Amine Khalil, Lu Jun

机构信息

Chemical Sciences and Engineering Division, Argonne National Laboratory, 9700 South Cass Avenue, Lemont, IL, 60439, USA.

Materials Science and Nano-Engineering Department, Mohammed VI Polytechnic University, Ben Guerir, 43150, Morocco.

出版信息

Adv Mater. 2022 Jan;34(1):e2106148. doi: 10.1002/adma.202106148. Epub 2021 Dec 2.

Abstract

Lithium-oxygen (Li-O ) batteries possess a high theoretical energy density, which means they could become a potential alternative to lithium-ion batteries. Nevertheless, the charging process of Li-O batteries requires much higher energy, due to the insulating nature of the discharge product. It has been revealed that the anion additive, lithium iodide (LiI), can tune the cell chemistry to form lithium hydroxide (LiOH) as the product and facilitate the kinetics during the charging process. Although numerous studies have been reported, the role of this additive is still under investigation. Herein, the recent advances focusing on the use of LiI in Li-O batteries are reviewed, its catalytic behavior on discharge and charge is discussed, and its synergistic effect with water is understood. The ambiguity existing among the studies are also revealed, and solutions to the current issues are introduced.

摘要

锂氧(Li-O₂)电池具有较高的理论能量密度,这意味着它们可能成为锂离子电池的潜在替代品。然而,由于放电产物的绝缘性质,锂氧电池的充电过程需要更高的能量。据揭示,阴离子添加剂碘化锂(LiI)可以调节电池化学过程,使氢氧化锂(LiOH)作为产物形成,并在充电过程中促进动力学。尽管已经报道了许多研究,但这种添加剂的作用仍在研究中。在此,综述了近期关于LiI在锂氧电池中应用的进展,讨论了其在放电和充电过程中的催化行为,并了解了其与水的协同效应。还揭示了研究中存在的模糊性,并介绍了当前问题的解决方案。

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