4.8 Article

Engineering Pt and Fe dual-metal single atoms anchored on nitrogen-doped carbon with high activity and durability towards oxygen reduction reaction for zinc-air battery

期刊

APPLIED CATALYSIS B-ENVIRONMENTAL
卷 286, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.apcatb.2021.119891

关键词

Single atom catalysts; Metal-organic framework; Nitrogen-doped carbon; Oxygen reduction reaction; Zinc-air battery

资金

  1. Shenzhen Science and Technology Innovation Committee [JCYJ20200109141014474, JCYJ20170412154554048]
  2. Peacock Team Project funding from Shenzhen Science and Technology Innovation Committee [KQTD2015033110182370]
  3. National Key Research and Development Project - Ministry of Science and Technology of China [2016YFA0202400, 2016YFA0202404]
  4. Science and Technology Development Fund (FDCT), Macau S.A.R [0102/2019/A2, 0035/2019/AGJ, 0154/2019/A3, 0081/2019/AMJ, 0033/2019/AMJ]
  5. Multi-Year Research Grants at the University of Macau [MYRG2017-00027-FST, MYRG2018-00003-IAPME]
  6. Shenzhen Science and Technology Program [KQTD20190929173815000]
  7. Guangdong Innovative, Entrepreneurial Research Team Program [2019ZT08C044]
  8. Shenzhen Basic Research Fund [JCYJ20190809181601639]

向作者/读者索取更多资源

A novel strategy for encapsulating Pt species into Fe-doped zeolite imidazolate framework to obtain PtFeNC catalyst was proposed in this study. The catalyst exhibited excellent performance in zinc-air battery, showing potential for practical applications in energy storage.
Fabrication of Pt-based electrocatalysts with high activity and excellent durability is critical for the practical applications into zinc-air battery (ZAB). In this work. A novel strategy for the encapsulation of Pt species into the cavities of Fe-doped zeolite imidazolate framework is proposed to increase the density of active metal atoms and improve the activity effectively, where both isolated Pt and Fe single atoms anchored on nitrogen-doped carbon (PtFeNC) are obtained by a simple pyrolysis. Impressively, PtFeNC delivers a half-wave potential of 0.895 V (vs. RHE), Moreover, PtFeNC exhibits a lower yield of peroxide species than FeNC. Importantly, the ZAB battery shows a specific capacity of as high as 807 mA h/g at a discharge current density of 10 mA/cm(2). Our findings show that dual- and multi- metallic single atom catalysts with abundant active sites can be achieved to boost electrocatalytic activity for their practical applications in energy storage though the new tactic.

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