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Carbon nanotube supported zinc, cobalt, nitrogen, sulfur-doped porous carbon as electrocatalyst for enhanced oxygen reduction reaction
被引:4
|作者:
Gao, Haili
[1
]
Zhao, Jingfang
[1
]
Ma, Yaqiong
[1
]
Liu, Yunpeng
[1
]
Zhang, Yong
[1
]
Zhang, Linsen
[1
]
Yin, Zhigang
[1
]
机构:
[1] Zhengzhou Univ Light Ind, Dept Mat & Chem Engn, Zhengzhou 450001, Peoples R China
关键词:
Oxygen reduction reaction;
Zeolitic imidazolate framework;
Fuel cell;
Non-noble metal catalyst;
Carbon nanotube;
METAL-FREE ELECTROCATALYST;
HIGHLY EFFICIENT;
GRAPHENE OXIDE;
CATALYST;
FE;
CO;
COMPOSITES;
SITES;
ZIF-8;
ANODE;
D O I:
10.1016/j.ijhydene.2023.09.144
中图分类号:
O64 [物理化学(理论化学)、化学物理学];
学科分类号:
070304 ;
081704 ;
摘要:
Carbon nanotube (CNT) supported zinc, cobalt, nitrogen, sulfur-doped porous carbon (CNT@ZnCo/NSC) catalysts are prepared by in situ growth of sulfur-containing bimetal zeolitic imidazolate framework (S-ZnCo-ZIF) polyhedrons on CNT with subsequent heat treatment. The microstructure, morphology, particle size distribution, specific surface area, and pore-size distribution of the catalysts are characterized by multiple techniques. CNT@ZnCo/NSC exhibits excellent catalytic activity for oxygen reduction reaction (ORR) with onset potential of 0.98 V and half-wave potential of 0.83 V, respectively, which are close to those of Pt/C. The addition of CNT inhibits the agglomeration and improves the conductivity of the catalysts, while S doping enhances the electrochemical surface area and introduces active sites. The special structure makes CNT@ZnCo/NSC possess proper specific surface area (390.8 m(2) g(-1)) and large average pore size (5.26 nm). CNT@ZnCo/NSC contains more graphite-N (21%) and pyridine-N (55.9%) than CNT@ZnCo/NC (20%, 46.5%) and ZnCo/NC (8.2%, 45.8%). CNT@ZnCo/NSC catalyst has better methanol tolerance and long-term stability than commercial Pt/C. (c) 2023 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
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页码:1229 / 1241
页数:13
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