阳极
枝晶(数学)
材料科学
电解质
沉积(地质)
纳米技术
钾
电极
化学工程
冶金
化学
物理化学
生物
数学
工程类
古生物学
沉积物
几何学
作者
Lu-Kang Zhao,Xuan‐Wen Gao,Tianzhen Ren,Da Wang,Dawei Wang,Zhao-Meng Liu,Hong Chen,Wen Luo
出处
期刊:Rare Metals
[Springer Science+Business Media]
日期:2024-01-20
卷期号:43 (4): 1435-1460
被引量:34
标识
DOI:10.1007/s12598-023-02537-0
摘要
Abstract With abundant potassium resources and high capacity, potassium metal batteries (PMBs) present a compelling option for the next generation of energy storage technology. However, PMBs suffer from an unstable anode interface caused by uncontrolled dendrite growth, which results in unsatisfactory cyclability and safety concerns. Extensive investigations suggest that significant progress has been made in enhancing the interfacial stability of PMBs. The various effective strategies for stabilizing interfaces can ultimately be attributed to the regulation of the sluggish ion transfer kinetics and irregular deposition, i.e., the arrangement of ion transport behaviors at the interface. Rational modulation of ions transport rate and ions deposition directions makes it possible to obtain a dendrite‐free and smooth deposition plane. Herein, the influencing factors and action mechanism of K + interface transport behaviors are discussed to understand the nature of material design for constructing stable anode interfaces, including regulating the solvation and desolvation structures, accelerating K + transport kinetics and controlling K + deposition direction. In addition, the deficiencies and prospects of the research on electrolyte, separators and designed electrode involved in the manufacturing and testing and ion transport process of PMBs are discussed. This review is expected to provide some possible directions for constructing dendrite‐free interfaces in advanced PMBs‐related research and offer significant insights for prospective experimental research and commercial applications.
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