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Electrospun CoFe2O4 nanofibers as bifunctional nanocatalysts for the oxygen evolution and oxygen reduction reactions in alkaline media
被引:2
|作者:
Cintron-Nunez, P. C.
[1
]
Escobar-Morales, B.
[2
]
Escorcia-Garcia, J.
[3
]
Rodriguez-Varela, F. J.
[1
]
Alonso-Lemus, I. L.
[4
]
机构:
[1] CINVESTAV, Unidad Saltillo, Sustentabilidad Recursos Nat & Energia, Av Ind Met 1062, Ramos Arizpe 25900, Coahuila, Mexico
[2] CONACYT, Ctr Invest Cient Yucatan, Calle 43 130, Merida 97200, Yucatan, Mexico
[3] CINVESTAV, CONACYT, Unidad Saltillo, Ingn Ceram, Ramos Arizpe, Coahuila, Mexico
[4] CINVESTAV, CONACYT, Unidad Saltillo, Sustentabilidad Recursos Nat & Energia, Ramos Arizpe, Coahuila, Mexico
关键词:
ELECTROCATALYST;
GRAPHENE;
D O I:
10.1557/adv.2020.380
中图分类号:
T [工业技术];
学科分类号:
08 ;
摘要:
Non-noble metal bifunctional nanocatalysts based on CoFe2O4/C were synthetized by the electrospinning method and evaluated for the Oxygen Evolution Reaction (OER) and the Oxygen Reduction Reaction (ORR). The effect of annealing at different temperatures (T=300, 600 and 900 degrees C) on their morphological and structural features was characterized by XRD, EDS, Raman, FESEM, HRTEM and XPS. The nanofibers annealed at 300 degrees C (CoFe2O4-300) showed a cubic spinel structure and an average diameter of 42 nm. The CoFe2O4-300/C nanocatalyst demonstrated the highest catalytic activity towards the OER, outperforming the benchmark commercial 20 wt. % Pt/C. Meanwhile all CoFe2O4-based nanocatalysts showed fair catalytic activity for the ORR (E-onset approximate to 0.801 V/RHE, n approximate to 3.56, %HO2- approximate to 21-39). In addition, the CoFe2O4/C nanocatalysts demonstrated a higher electrochemical stability than Pt/C for both the ORR and the OER.
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页码:2929 / 2937
页数:9
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