Ciencias,UNAM

Complementary methods for cluster size distribution measurements: supported platinum nanoclusters in methane reforming catalysts

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dc.contributor.author Requejo, FG
dc.contributor.author Craievich, AF
dc.contributor.author Wei, J
dc.contributor.author Avalos-Borja, M
dc.contributor.author Iglesia, E
dc.contributor.author Ramallo-López, MA
dc.date.accessioned 2011-01-22T10:26:34Z
dc.date.available 2011-01-22T10:26:34Z
dc.date.issued 2005
dc.identifier.issn 1381-1169
dc.identifier.uri http://hdl.handle.net/11154/2399
dc.description.abstract Pt cluster size strongly influences the reactivity of surfaces for C-H bond activation during CH4 steam reforming. C-H bond activation turnover rates for H2O reforming of CH4 increased with decreasing Pt cluster size, suggesting that coordinatively unsaturated surface Pt atoms are more reactive than Pt atoms in low-index surfaces prevalent in larger clusters. Near-edge fine structure in X-ray absorption spectra clearly shows electronic changes in Pt clusters relative to bulk Pt crystallites, though differences in the 5d electronic density among samples with different cluster size could not be related directly to Pt surface atom coordination. These results suggest that catalytic consequences of cluster size arise from surface structure changes leading to coordinative unsaturation of surface atoms. X-ray absorption and small angle X-ray scattering techniques were used to measure the size of Pt metal nanoclusters and the results are compared with H-2 chemisorption and transmission electron microscopy data. (C) 2004 Elsevier B.V. All rights reserved. en_US
dc.language.iso en en_US
dc.title Complementary methods for cluster size distribution measurements: supported platinum nanoclusters in methane reforming catalysts en_US
dc.type Article en_US
dc.identifier.idprometeo 1669
dc.identifier.doi 10.1016/j.molcata.2004.09.032
dc.source.novolpages 228(40575):299-307
dc.subject.wos Chemistry, Physical
dc.description.index WoS: SCI, SSCI o AHCI
dc.subject.keywords cluster size
dc.subject.keywords SAXS
dc.subject.keywords XAFS
dc.subject.keywords HRTEM
dc.subject.keywords methane reforming
dc.relation.journal Journal of Molecular Catalysis A-Chemical

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