Huang Xianglong, Sun Jiachen, Wang Liping, Tong Xin, Dou Shi Xue, Wang Zhiming M
Institute of Fundamental and Frontier Sciences, University of Electronic Science and Technology of China, Chengdu, 610054, P. R. China.
School of Materials and Energy, University of Electronic Science and Technology of China, Chengdu, 611731, P. R. China.
Small. 2021 Feb;17(6):e2004369. doi: 10.1002/smll.202004369. Epub 2021 Jan 15.
Current great progress on potassium-chalcogen (S, Se, Te) batteries within much potential to become promising energy storage systems opens a new avenue for the rapid development of potassium batteries as a complementary option to lithium ion batteries. The discussion mainly concentrates on recent research advances of potassium-chalcogen (S, Se, Te) batteries and their corresponding cathode materials in this review. Initially, the development of cathode materials for four types of batteries is introduced, including: potassium-sulfur (K-S), potassium-selenium (K-Se), potassium-selenium sulfide (K-Se S ), and potassium-tellurium (K-Te) batteries. Next, critical challenges for chalcogen-based electrodes in devices operation are summarized. In addition, some pragmatic strategies are proposed as well to relieve the low electronic conductivity, large volumetric expansion, shuttle effect, and potassium dendrite growth. At last, the perspectives on designing advanced cathode materials for potassium-chalcogen batteries are provided with the goal of developing high-performance potassium storage devices.
当前,钾-硫族元素(硫、硒、碲)电池取得了巨大进展,极有可能成为颇具前景的储能系统,这为钾电池的快速发展开辟了一条新途径,使其成为锂离子电池的补充选择。本综述主要聚焦于钾-硫族元素(硫、硒、碲)电池及其相应正极材料的最新研究进展。首先,介绍了四种类型电池正极材料的发展情况,包括:钾-硫(K-S)电池、钾-硒(K-Se)电池、钾-硒硫化物(K-SeS)电池和钾-碲(K-Te)电池。其次,总结了基于硫族元素的电极在器件运行过程中面临的关键挑战。此外,还提出了一些切实可行的策略,以缓解低电子电导率、大体积膨胀、穿梭效应和钾枝晶生长等问题。最后,为开发高性能钾存储器件,给出了设计钾-硫族元素电池先进正极材料的展望。