Model silvernanocatalystsbetween9and23nminsizewerepreparedbysize-selectedclusterdeposition from afreeclusterbeamonamorphousaluminafilmsandtheirsize-dependentcatalyticperformance studied inthepartialoxidationofpropyleneunderrealisticreactionconditions.Smallerclusterspref- erentially producedacrolein,whilethe23nmparticleswereconsiderablymoreselectivetowardsthe formation ofpropyleneoxide,atreactionratesfarexceedingthosepreviouslyreportedforlargersilver particles. Theactivityofclustersdroppedsignificantlywithincreasingparticlesize.First-principlecalcu- lations, oftheactivationenergiesforoxygenadsorptionanditsdissociation,atvariablesurfacecoverage yielded surfaceenergieswhichresultedinparticleshapesresemblingtheexperimentallyobservedshapes of partiallyoxidizedsilverclusters.Thecalculatedactivationbarriersforpropyleneoxideandacrolein formation onvariousfacetsandontheedgesofthenanoparticlesprovideddetailedinformationabout the energeticsofthecompetingreactionpathways.Thesize-andcorrespondingmorphology dependent theoretical activityandselectivity are in good accord with experimental observations.

Size-dependent selectivity and activity of silver nanoclusters in the partial oxidation of propylene to propylene oxide and acrolein: A joint experimental and theoretical study

Barcaro G;Fortunelli A;
2011

Abstract

Model silvernanocatalystsbetween9and23nminsizewerepreparedbysize-selectedclusterdeposition from afreeclusterbeamonamorphousaluminafilmsandtheirsize-dependentcatalyticperformance studied inthepartialoxidationofpropyleneunderrealisticreactionconditions.Smallerclusterspref- erentially producedacrolein,whilethe23nmparticleswereconsiderablymoreselectivetowardsthe formation ofpropyleneoxide,atreactionratesfarexceedingthosepreviouslyreportedforlargersilver particles. Theactivityofclustersdroppedsignificantlywithincreasingparticlesize.First-principlecalcu- lations, oftheactivationenergiesforoxygenadsorptionanditsdissociation,atvariablesurfacecoverage yielded surfaceenergieswhichresultedinparticleshapesresemblingtheexperimentallyobservedshapes of partiallyoxidizedsilverclusters.Thecalculatedactivationbarriersforpropyleneoxideandacrolein formation onvariousfacetsandontheedgesofthenanoparticlesprovideddetailedinformationabout the energeticsofthecompetingreactionpathways.Thesize-andcorrespondingmorphology dependent theoretical activityandselectivity are in good accord with experimental observations.
2011
Istituto per i Processi Chimico-Fisici - IPCF
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/436421
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