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用于钾离子电池的聚阴离子化合物。

Polyanionic Compounds for Potassium-Ion Batteries.

作者信息

Hosaka Tomooki, Shimamura Tomoaki, Kubota Kei, Komaba Shinichi

机构信息

Department of Applied Chemistry, Tokyo University of Science 1-3 Kagurazaka, Shinjuku, Tokyo, 162-8601, Japan.

Elements Strategy Initiative for Catalysts and Batteries (ESICB), Kyoto University 1-30 Goryo-Ohara, Nishikyo-ku, Kyoto, 615-8245, Japan.

出版信息

Chem Rec. 2019 Apr;19(4):735-745. doi: 10.1002/tcr.201800143. Epub 2018 Oct 30.

Abstract

Lithium-ion batteries have the highest energy density among practical secondary batteries and are widely used for electronic devices, electric vehicles, and even stationary energy-storage systems. Along with the expansion of demand and applications, the concern about resources of lithium and cobalt is growing. Therefore, secondary batteries composed of abundant elements are required to complement lithium-ion batteries. In recent years, the development of potassium-ion batteries has attracted much attention, especially for large-scale energy storage. In order to realize potassium-ion batteries, various compounds are proposed and investigated as positive electrode materials, including layered transition-metal oxides, Prussian blue analogues, and polyanionic compounds. This article offers a review of polyanionic compounds which are typically composed of abundant elements and expected high operating potential. Furthermore, we deliver our new results to partially compensate for lack of studies and provide a future perspective.

摘要

锂离子电池在实用二次电池中具有最高的能量密度,广泛应用于电子设备、电动汽车乃至固定式储能系统。随着需求和应用的不断扩展,对锂和钴资源的担忧日益增加。因此,需要由丰富元素组成的二次电池来补充锂离子电池。近年来,钾离子电池的发展备受关注,尤其是在大规模储能方面。为了实现钾离子电池,人们提出并研究了各种化合物作为正极材料,包括层状过渡金属氧化物、普鲁士蓝类似物和聚阴离子化合物。本文综述了通常由丰富元素组成且具有较高工作电位的聚阴离子化合物。此外,我们给出新的研究结果,以部分弥补研究的不足,并提供未来展望。

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