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Three-dimensionally ordered mesoporous Co3O4 decorated with Mg as bifunctional oxygen electrocatalysts for high-performance zinc-air batteries

  • Yatian Zhang
  • , Zhen Zhang
  • , Gaopeng Jiang
  • , Alireza Haghighat Mamaghani
  • , Serubbabel Sy
  • , Rui Gao
  • , Yi Jiang
  • , Yaping Deng
  • , Zhengyu Bai
  • , Lin Yang
  • , Aiping Yu
  • , Zhongwei Chen
  • University of Waterloo
  • Henan Normal University

科研成果: 期刊稿件文章同行评审

82 引用 (Scopus)

摘要

Developing low-cost and high-efficiency bifunctional catalysts for both oxygen reduction reaction (ORR) and oxygen evolution reaction (OER) is critical to expedite the widespread implementation of rechargeable zinc-air batteries. Herein, a unique Mg-decorated three-dimensionally ordered mesoporous (3DOM) Co3O4 electrocatalyst is engineered and evaluated as cathodic material for zinc-air batteries. The modulation of electronic structure and bonding configuration of Co sites through coordination with substituted Mg atoms effectively enhance the interaction with oxygen species and, therefore, the ORR/OER activity. Meanwhile, the substitution of Co2+ with Mg2+ creates abundant, more catalytically active octahedral sites (Co3+) in 3DOM-MgxCo3−xO4. Moreover, the tailored 3D interpenetrating porous structure endows the electrocatalyst with large diffusion channels for oxygen species and highly accessible active sites. The as-prepared catalyst retains 99% and 98% of its initial ORR and OER current, respectively, after 16 h under chronoamperometric measurement. The zinc-air battery assembled with 3DOM-MgxCo3−xO4 exhibits a high power density of 253 mW cm−2 and long-term cyclability over 236 h, outperforming the commercial noble-metal based catalysts in terms of performance and stability. This work offers a straightforward and promising design strategy for development of robust bifunctional electrocatalysts toward practical applications of zinc-air batteries.

源语言英语
期刊论文编号107425
期刊Nano Energy
100
DOI
出版状态已出版 - 9月 2022
已对外发布

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