Introducing Ce ions and oxygen defects into V2O5 nanoribbons for efficient aqueous zinc ion storage
作者:Mingying Bao, Zhengchunyu Zhang, Xuguang An, Jie Liu, Jinkui Feng, Baojuan Xi, Shenglin Xiong · 发表于:Nano Research · 年份:2022 · DOI:10.1007/s12274-022-4990-2 · 被引用次数:115 · 研究领域:Advanced battery technologies research、Perovskite Materials and Applications、Supercapacitor Materials and Fabrication
Cost-effectively, eco-friendly rechargeable aqueous zinc-ion batteries (AZIBs) have reserved widespread concerns and become outstanding candidate in energy storage systems. However, the progress pace of AZIBs suffers from limitation of suitable and affordable cathode materials. Herein, a double-effect strategy is realized in a one-step hydrothermal treatment to prepare V 2 O 5 nanoribbons with intercalation of Ce and introduction of abundant oxygen defects (O d -Ce@V 2 O 5 ) to enhance electrochemical performance synergistically. Coupled with the theoretical calculation results, the introduction of Ce ions intercalation and oxygen vacancies in V 2 O 5 structure enhances the electrical conductivity, reduces the adsorption energy of zinc ions, enlarges the interlayer distance, renders the structure more stable, and facilitates rapid diffusion kinetics. As expected, the desirable cathode delivers the reversible capacity of 444 mAh·g −1 at 0.5 A·g −1 and shows excellent Coulombic efficiency, as well as an extraordinary energy density of 304.9 Wh·kg −1 . The strategy proposed here may aid in the further development of cathode materials with stable performance for AZIBs.