Journal of Alloys and Compounds2022,Vol.9129.DOI:10.1016/j.jallcom.2022.165022

In-situ synthesis of atomic Co-N(x )sites in holey hollow carbon nanospheres for efficiency oxygen reduction reaction electrocatalyst

Liu, Peng Peng, Minggui Yao, Yuechao Zhang, Shengjiao Fang, Yong Huang, Junfeng Zeng, Xierong Zou, Jizhao Peng, Jue
Journal of Alloys and Compounds2022,Vol.9129.DOI:10.1016/j.jallcom.2022.165022

In-situ synthesis of atomic Co-N(x )sites in holey hollow carbon nanospheres for efficiency oxygen reduction reaction electrocatalyst

Liu, Peng 1Peng, Minggui 1Yao, Yuechao 2Zhang, Shengjiao 1Fang, Yong 3Huang, Junfeng 1Zeng, Xierong 1Zou, Jizhao 1Peng, Jue1
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作者信息

  • 1. Shenzhen Univ
  • 2. Tech Univ Denmark
  • 3. Sichuan Univ Sci & Engn
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Abstract

Recently, Metal-Organic Frameworks-derived carbide catalysts draw lots of attention because of their low price, abundant reserves and superior stability. However, the metal element tends to form particles at a high temperature still a challenge to achieving high Oxygen Reduction Reaction (ORR) activity. Herein, a kind of Zeolitic imidazolate frameworks (ZIFs) based carbon nanosphere with well-dispersed Co-N-x active sites (Co and N co-doped holey Hollow Carbon nanospheres, hHCS) are prepared by using Polyvinylpyrrolidone as the surfactant to realize the well dispersion of Cobalt. Then KOH activation is used to enlarge specific surfaces area (SSA). In an alkaline medium, the obtained sample shows excellent ORR catalytic performance with a half-ware potential of 0.80 V and a limiting current density of 6.53 mA cm(-2), which are even comparable with that of commercial Pt/C. Further, the simple also exhibits remarkable stability during long-term working and better tolerance of methanol. According to the Density Functional Theory (DFT), the outstanding ORR activity can be ascribed to the favorable dispersed Co-N-x. It can be also attributed to the high SSA, hierarchically pore structure and N-base active sites. (C)& nbsp;2022 Elsevier B.V. All rights reserved.

Key words

BZIFs/Hierarchically carbon sphere/Co-N-x active site/Electrocatalyst/CATALYSTS/ORIGIN

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出版年

2022
Journal of Alloys and Compounds

Journal of Alloys and Compounds

EISCI
ISSN:0925-8388
被引量4
参考文献量39
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