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一种用于可充电镁离子电池的高潜力聚阴离子阴极材料。

A High Potential Polyanion Cathode Material for Rechargeable Mg-Ion Batteries.

作者信息

Li Cuicui, Lin Lu, Wu Wanlong, Sun Xiaoqi

机构信息

Department of Chemistry, Northeastern University, Shenyang, 110819, China.

出版信息

Small Methods. 2022 Aug;6(8):e2200363. doi: 10.1002/smtd.202200363. Epub 2022 Jun 10.

Abstract

The development of Mg-ion batteries is hindered by the lack of cathode materials that allow facile and reversible Mg intercalation at high potential. Herein, the authors present a polyanion cathode material of K (VO) (HPO ) (C O )⋅4.5H O (KVPCH) for Mg-ion batteries. The inductive effect of polyanions ensures the high redox potential of the vanadium centers. In addition, the material contains structural water located between the layers. It helps with Mg desolvation at the electrode-electrolyte interface and facilitates its diffusion in the structure, as confirmed by experimental analysis and theoretical calculations. Thanks to those factors, the KVPCH electrode presents excellent Mg storage capability at room temperature. It delivers 121 mAh g capacity at 1C with a high average discharge potential of 0.16 V versus Ag/Ag (3.2 V vs Mg/Mg ). A capacity retention of 87% is realized after 1500 cycles at 5C. A rocking-chair Mg-ion full cell is also demonstrated with the KVPCH cathode and a MoO anode, which achieves 46 mAh g capacity (based on the total active material mass of two electrodes). This work would bring effective paths for the design of cathode materials for Mg-ion batteries.

摘要

镁离子电池的发展受到缺乏能在高电位下实现 facile 和可逆镁嵌入的阴极材料的阻碍。在此,作者展示了一种用于镁离子电池的聚阴离子阴极材料 K(VO)(HPO)(C₂O₄)⋅4.5H₂O(KVPCH)。聚阴离子的诱导效应确保了钒中心的高氧化还原电位。此外,该材料在层间含有结构水。实验分析和理论计算证实,它有助于电极 - 电解质界面处的镁去溶剂化,并促进其在结构中的扩散。由于这些因素,KVPCH 电极在室温下具有出色的镁存储能力。在 1C 时,它具有 121 mAh g 的容量,相对于 Ag/Ag 的平均放电电位为 0.16 V(相对于 Mg/Mg²⁺为 3.2 V)。在 5C 下经过 1500 次循环后,容量保持率达到 87%。还展示了一种采用 KVPCH 阴极和 MoO 阳极的摇椅式镁离子全电池,其实现了 46 mAh g 的容量(基于两个电极的总活性材料质量)。这项工作将为镁离子电池阴极材料的设计带来有效途径。

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