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수소제조를 위한 다공성 FeCrAl 금속 합금Foam의 NiO 촉매 담지 및 미세구조 분석open accessSynthesis and microstructure analysis of NiO catalysts coated on the FeCrAl metal alloy foam for hydrogen production

Other Titles
Synthesis and microstructure analysis of NiO catalysts coated on the FeCrAl metal alloy foam for hydrogen production
Authors
Lee, Yu-JinAn, Geon-HyoungPark, Man-HoLee, Chang-WooChoi, Sang-HyunJung, Ju-YongJo, Sung-JongLee, Kun-JaeAhn, Hyo-Jin
Issue Date
Aug-2014
Publisher
Korea Federation of Science and Technology
Keywords
Catalyst support; Dip-coating; FeCrAl; Metal alloy foam; NiO catalyst
Citation
Korean Journal of Materials Research, v.24, no.8, pp 393 - 400
Pages
8
Indexed
SCOPUS
KCI
Journal Title
Korean Journal of Materials Research
Volume
24
Number
8
Start Page
393
End Page
400
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/73429
DOI
10.3740/MRSK.2014.24.8.393
ISSN
1225-0562
2287-7258
Abstract
NiO catalysts were successfully coated onto FeCrAl metal alloy foam as a catalyst support via a dip-coating method. To demonstrate the optimum amount of NiO catalyst on the FeCrAl metal alloy foam, the molar concentration of the Ni precursor in a coating solution was controlled, with five different amounts of 0.4 M, 0.6 M, 0.8 M, 1.0 M, and 1.2 M for a dip-coating process. The structural, morphological, and chemical bonding properties of the NiO-catalyst-coated FeCrAl metal alloy foam samples were assessed by means of field-emission scanning electron microscopy(FESEM), scanning electron microscopy-energy dispersive spectroscopy(SEM-EDS), X-ray diffraction(XRD), and X-ray photoelectron spectroscopy(XPS). In particular, when the FeCrAl metal alloy foam samples were coated using a coating solution with a 0.8 M Ni precursor, welldispersed NiO catalysts on the FeCrAl metal alloy foam compared to the other samples were confirmed. Also, the XPS results exhibited the chemical bonding states of the NiO phases and the FeCrAl metal alloy foam. The results showed that a dip-coating method is one of best ways to coat well-dispersed NiO catalysts onto FeCrAl metal alloy foam. © Materials Research Society of Korea.
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