材料科学
异质结
锌
电荷(物理)
离子
锰
无机化学
分析化学(期刊)
光电子学
冶金
环境化学
量子力学
物理
有机化学
化学
作者
Jun Long,Fuhua Yang,Jing Cuan,Jing-Xing Wu,Zhanhong Yang,Hao Jiang,Rui Song,Wenlong Song,Jianfeng Mao,Zaiping Guo
标识
DOI:10.1021/acsami.0c05812
摘要
Aqueous ZIBs are one of the most promising next-generation rechargeable batteries because of the high capacity, high hydrogen evolution overpotential, and chemically stable reversible plating/stripping of the zinc electrode in the mild aqueous electrolyte. However, there are limited cathode materials that can store Zn2+ reversibly with superior cycling and rate capability. Herein, hierarchically porous nanorods composed of twinborn α-(Mn2O3-MnO2) heterostructures are proposed as a robust cathode for Zn storage. Thanks to the hierarchically porous nanorod morphology and the abundant interface of the heterostructures involving a built-in electric field, the as-obtained twinborn α-(Mn2O3-MnO2) electrode delivers a high capacity of 170 mA h g-1 for 2000 cycles at 500 mA g-1 and shows an excellent rate capability of up to 1.5 A g-1 with a capacity of 124 mA h g-1. The inspiring results achieved exhibit the enormous potential of the high-performance heterostructure cathode for fast and stable ZIBs.
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