Zhou Tao, Han Qing, Xie Lingling, Yang Xinli, Zhu Limin, Cao Xiaoyu
School of Chemistry and Chemical Engineering, Henan University of Technology, Zhengzhou, 450001, PR China.
Key Laboratory of High Specific Energy Materials for Electrochemical Power Sources of Zhengzhou City, Zhengzhou, 450001, PR China.
Chem Rec. 2022 Apr;22(4):e202100275. doi: 10.1002/tcr.202100275. Epub 2021 Dec 27.
The rapid depletion of lithium resources and the increasing demand for electrical energy storage have stimulated the pursuit of emerging electrochemical energy storage. Aqueous zinc ion batteries (ZIBs) are highly sought after for their low cost, high safety, and increased environmental compatibility. However, the search for suitable cathode materials is still tricky for a wide range of researchers. Vanadium oxides (V O ), with their abundant vanadium valence, easily deformable V-O polyhedrons, and tunable chemical compositions, are of significant advantage in developing emerging materials. This work provides a detailed review of different V O for the application in aqueous ZIBs. The current problems and optimization strategies of V O cathode materials are systematically discussed. Finally, the current challenges and possible directions for future research of V O cathode materials in aqueous ZIBs are presented.
锂资源的快速枯竭以及对电能存储需求的不断增加,刺激了人们对新兴电化学储能的追求。水系锌离子电池(ZIBs)因其低成本、高安全性和更高的环境兼容性而备受青睐。然而,对于众多研究人员来说,寻找合适的阴极材料仍然颇具难度。氧化钒(VO)因其丰富的钒价态、易于变形的V-O多面体以及可调节的化学成分,在开发新兴材料方面具有显著优势。这项工作对用于水系ZIBs的不同VO进行了详细综述。系统地讨论了VO阴极材料当前存在的问题和优化策略。最后,介绍了VO阴极材料在水系ZIBs中当前面临的挑战以及未来研究的可能方向。