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루테늄 산화물 나노 섬유 지지체에 담지된 고 분산성촉매의 전기화학적 거동Electrochemical Behavior of Well-dispersed Catalysts on Ruthenium Oxide Nanofiber Supports

Other Titles
Electrochemical Behavior of Well-dispersed Catalysts on Ruthenium Oxide Nanofiber Supports
Authors
안건형안효진
Issue Date
Apr-2017
Publisher
한국분말재료학회
Keywords
Oxygen-reduction reaction; Catalysts; Platinum; Nanofiber
Citation
한국분말재료학회지, v.24, no.2, pp 96 - 101
Pages
6
Indexed
KCI
Journal Title
한국분말재료학회지
Volume
24
Number
2
Start Page
96
End Page
101
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/73372
DOI
10.4150/KPMI.2017.24.2.96
ISSN
2799-8525
Abstract
Well-dispersed platinum catalysts on ruthenium oxide nanofiber supports are fabricated using electrospinning, post-calcination, and reduction methods. To obtain the well-dispersed platinum catalysts, the surface of the nanofiber supports is modified using post-calcination. The structures, morphologies, crystal structures, chemical bonding energies, and electrochemical performance of the catalysts are investigated. The optimized catalysts show well-dispersed platinum nanoparticles (1-2 nm) on the nanofiber supports as well as a uniform network structure. In particular, the well-dispersed platinum catalysts on the ruthenium oxide nanofiber supports display excellent catalytic activity for oxygen reduction reactions with a half-wave potential (E1/2) of 0.57 V and outstanding long-term stability after 2000 cycles, resulting in a lower E1/2 potential degradation of 19 mV. The enhanced electrochemical performance for oxygen reduction reactions results from the well-dispersed platinum catalysts and unique nanofiber supports.
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