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Three-Dimensional Manganese Oxide@Carbon Networks as Free-Standing, High-Loading Cathodes for High-Performance Zinc-Ion Batteries

  • Xuan Gao
  • , Chengyi Zhang
  • , Yuhang Dai
  • , Siyu Zhao
  • , Xueying Hu
  • , Fangjia Zhao
  • , Wei Zhang
  • , Ruwei Chen
  • , Wei Zong
  • , Zijuan Du
  • , Haobo Dong
  • , Yiyang Liu
  • , Hongzhen He
  • , Jianwei Li
  • , Ivan P. Parkin
  • , Guanjie He*
  • , Claire J. Carmalt*
  • *此作品的通讯作者

科研成果: 期刊稿件文章同行评审

摘要

Zinc-ion batteries (ZIBs), which are inexpensive and environmentally friendly, have a lot of potential for use in grid-scale energy storage systems, but their use is constrained by the availability of suitable cathode materials. MnO2-based cathodes are emerging as a promising contenders, due to the great availability and safety, as well as the device's stable output voltage platform (1.5 V). Improving the slow kinetics of MnO2-based cathodes caused by low electrical conductivity and mass diffusion rate is a challenge for their future use in next-generation rapid charging devices. Herein, the aforementioned challenges are overcome by proposing a sodium-intercalated manganese oxide (NMO) with 3D varying thinness carbon nanotubes (VTCNTs) networks as appropriate free-standing, binder-free cathodes (NMO/VTCNTs) without any heat treatment. A network construction strategy based on CNTs of different diameters is proposed for the first time to provide high specific capacity while achieving high mass loading. The specific capacity of as-prepared cathodes is significantly increased. The resulting free-standing binder-free cathodes achieve excellent capacity (329 mAh g−1 after 120 cycles at 0.2 A g−1 and 225 mAh g−1 after 200 cycles at 1 A g−1) and long-term cycling stability (158 mAh g−1 at 2 A g−1 after 1000 cycles).

源语言英语
文章编号2200316
期刊Small Structures
4
5
DOI
出版状态已出版 - 5月 2023
已对外发布

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