Advances on Defect Engineering of Vanadium‐Based Compounds for High‐Energy Aqueous Zinc–Ion Batteries

材料科学 水溶液 阴极 离子 储能 电化学 高能 工程物理 纳米技术 冶金 电气工程 功率(物理) 热力学 物理化学 电极 工程类 化学 物理 量子力学
作者
Cong Guo,Shanjun Yi,Rui Si,Baojuan Xi,Xuguang An,Jie Liu,Jingfa Li,Shenglin Xiong
出处
期刊:Advanced Energy Materials [Wiley]
卷期号:12 (40) 被引量:162
标识
DOI:10.1002/aenm.202202039
摘要

Abstract Aqueous zinc–ion batteries (ZIBs) have been promptly developed as a competitive and promising system for future large‐scale energy storage. In recent years, vanadium (V)‐based compounds, with diversity of valences and high electrochemical‐activity, have been widely studied as cathodes for aqueous ZIBs because of their rich reserves and high theoretical capacity. However, the stubborn issues including low conductivity and sluggish kinetics, plague their smooth application in aqueous ZIBs. Among various countermeasures, defect engineering is believed as an effective method to alleviate the above limitations. This review highlights the challenges of different V‐based cathode materials (e.g., vanadium oxides and vanadates) and summarizes the advances in defect engineering strategies including types and effects of the defects, designed strategies, and characterization techniques for high‐energy ZIBs. Finally, several sound prospects in this fervent field are also rationally proposed for fundamental research and practical application.
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