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Well-dispersed iron nanoparticles exposed within nitrogen-doped mesoporous carbon nanofibers by hydrogen-activation for oxygen-reduction reaction

Authors
An, Geon-HyoungLee, Eun-HwanAhn, Hyo-Jin
Issue Date
Oct-2016
Publisher
Elsevier BV
Keywords
Oxygen-reduction reaction; Iron nanoparticles; Nitrogen-doped carbon nanofiber; High surface area; Mesoporous structure
Citation
Journal of Alloys and Compounds, v.682, pp 746 - 752
Pages
7
Indexed
SCI
SCIE
SCOPUS
Journal Title
Journal of Alloys and Compounds
Volume
682
Start Page
746
End Page
752
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/73419
DOI
10.1016/j.jallcom.2016.05.033
ISSN
0925-8388
1873-4669
Abstract
Well-dispersed Fe nanoparticles exposed within N-doped mesoporous carbon nanofibers (Fe-NMCNF) are synthesized using electrospinning and H-2-activation. Their morphologies, crystal structures, chemical bonding states, and electrochemical performance are demonstrated at three calcination temperatures (700, 800, and 900 degrees C) during H-2-activation. Fe-NMCNF calcined at 800 degrees C had a high specific surface area of 467.6 m(2) g(-1), total pore volume of 0.88 cm(3) g(-1), large average pore size of 7.5 nm, and large mesopore volume fraction of 79.1%. In particular, the Fe-NMCNF sample calcined at 800 degrees C exhibits both excellent catalytic activity for oxygen reduction reaction and superb long-term stability compared to commercial Pt/C in acid electrolyte of 0.1 M HClO4. The performance improvement results from the combined effect of the well-dispersed Fe nanoparticles exposed within N-doped mesoporous CNFs and the uniform morphology of mesoporous CNFs. (C) 2016 Elsevier B.V. All rights reserved.
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