Pt/oxide nanocatalysts synthesized via the ultrasonic spray pyrolysis process: engineering metal-oxide interfaces for enhanced catalytic activity

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We show that Pt nanoparticles synthesized on oxide nanocatalysts exhibit catalytic activity enhancement depending on the type of the oxide support. To synthesize the Pt/oxide nanocatalysts, we employed a versatile synthesis method using Pt nanoparticles (NPs) supported on various metal oxides (i.e., SiO2, CeO2, Al2O3, and FeAl2O4) utilizing ultrasonic spray pyrolysis. Catalytic CO oxidation was carried out on these catalysts, and it was found that the catalytic activity of the Pt NPs varied depending on the supporting oxide. While Pt/CeO2 exhibited the highest metal dispersion and active surface area, Pt/FeAl2O4 exhibited the lowest active surface area. Among the Pt/oxide nanocatalysts, Pt NPs supported on CeO2 showed the highest catalytic activity. We ascribe the enhancement in turnover frequency of the Pt/CeO2 nanocatalysts to strong metal-support interactions due to charge transport between the metal catalysts and the oxide support. Such Pt/oxide nanocatalysts synthesized via spray pyrolysis offer potential possibilities for large-scale synthesis of tailored catalytic systems for technologically relevant applications.
Publisher
SPRINGER
Issue Date
2016-01
Language
English
Article Type
Article
Keywords

MESOPOROUS MOLECULAR-SIEVES; CO OXIDATION; SUPPORT INTERACTIONS; PATTERN-FORMATION; NANOPARTICLES; SELECTIVITY; MECHANISM; HYDROGEN; AU/TIO2; SITES

Citation

RESEARCH ON CHEMICAL INTERMEDIATES, v.42, no.1, pp.211 - 222

ISSN
0922-6168
DOI
10.1007/s11164-015-2359-9
URI
http://hdl.handle.net/10203/208009
Appears in Collection
EEW-Journal Papers(저널논문)
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