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dc.contributor.authorKalamaras, Christos M.en
dc.contributor.authorPetallidou, Klito C.en
dc.contributor.authorEfstathiou, Angelos M.en
dc.creatorKalamaras, Christos M.en
dc.creatorPetallidou, Klito C.en
dc.creatorEfstathiou, Angelos M.en
dc.date.accessioned2019-11-21T06:19:36Z
dc.date.available2019-11-21T06:19:36Z
dc.date.issued2013
dc.identifier.urihttp://gnosis.library.ucy.ac.cy/handle/7/55606
dc.description.abstractPlatinum nanoparticles (dPt=1.0-1.2nm) supported on single CeO2 and La2O3 metal oxides and Ce0.8La0.2O2-δ solid solution were prepared to investigate for the first time the effect of La3+-doping of ceria on important mechanistic and kinetic aspects of the water-gas shift (WGS) reaction, namely: (i) the concentration and chemical structure of active adsorbed reaction intermediates present in the C-path and H-path of WGS at 250 and 300°C, (ii) the chemical nature of inactive species formed during WGS, and (iii) the prevailing mechanistic path among " redox" and " associative" both proposed in the literature. For this, steady-state isotopic transient kinetic analysis (SSITKA) experiments coupled with in situ DRIFTS and mass spectrometry were performed to follow the H-path (use of D2O) and C-path (use of 13CO) of the WGS. In addition, other transient isotopic experiments using operando methodology (use of DRFTS and mass spectrometry) were designed to follow with time on stream the reactivity toward water of the various adsorbed species formed under WGS. It is proposed that on Pt/Ce1-xLaxO2-δ (x=0.0, 0.2 and 1.0) the WGS reaction follows both the " redox" and " associative" mechanisms but the extent of participation of each mechanism to the overall WGS reaction rate depends on the support chemical composition. The WGS kinetic rate (μmol COg-1s-1) increased by a factor of 2.0 and 2.8 at 300°C on 0.5wt% Pt supported on Ce0.8La0.2O2-δ compared to CeO2 and La2O3, respectively. This was explained by (i) the larger concentration of active surface intermediates formed around each Pt nanoparticle (larger extent of reactive zone) and (ii) the higher reactivity of sites (k, s-1) responsible for CO2 and H2 formation on Pt/Ce0.8La0.2O2-δ compared to Pt/CeO2 and Pt/La2O3. Active OH groups is suggested to be formed on defect sites (Ce3+□s) of Ce0.8La0.2O2-δ as a consequence of the introduction of La3+ into the ceria lattice, the latter enhancing the concentration of labile oxygen and its surface mobility, important characteristics of the " redox" mechanism. © 2013 Elsevier B.V.en
dc.sourceApplied Catalysis B: Environmentalen
dc.source.urihttps://www.scopus.com/inward/record.uri?eid=2-s2.0-84874737340&doi=10.1016%2fj.apcatb.2013.02.003&partnerID=40&md5=116d79dd41c8694fc7dda1617e44b2e2
dc.subjectCarbon dioxideen
dc.subjectPlatinumen
dc.subjectKineticsen
dc.subjectExperimentsen
dc.subjectMass spectrometryen
dc.subjectNanoparticlesen
dc.subjectChemical compositionsen
dc.subjectSurface defectsen
dc.subjectCeriumen
dc.subjectCerium compoundsen
dc.subjectCatalyst activityen
dc.subjectReaction ratesen
dc.subjectKinetic ratesen
dc.subjectOH groupen
dc.subjectOperandoen
dc.subjectWater gas shiften
dc.subjectWater-gas-shift reactionsen
dc.subjectWGS reactionsen
dc.subjectAdsorbed speciesen
dc.subjectMetal oxidesen
dc.subjectSteady-state isotopic transient kinetic analysisen
dc.subjectCeria-supported Pten
dc.subjectSSITKA-DRIFTSen
dc.subjectSSITKA-MSen
dc.subjectWGS reaction mechanismen
dc.subjectOperando studiesen
dc.subjectActive surfacesen
dc.subjectChemical natureen
dc.subjectDefect sitesen
dc.subjectInactive speciesen
dc.subjectKinetic aspectsen
dc.subjectLa3+-dopingen
dc.subjectLanthanum oxidesen
dc.subjectPlatinum nano-particlesen
dc.subjectPt nanoparticlesen
dc.subjectReactive zonesen
dc.subjectSitu DRIFTen
dc.subjectSurface mobilityen
dc.subjectTime on streamsen
dc.subjectWater-gas shift reaction (WGS)en
dc.titleThe effect of La3+-doping of CeO2 support on the water-gas shift reaction mechanism and kinetics over Pt/Ce1-xLaxO2-δen
dc.typeinfo:eu-repo/semantics/article
dc.identifier.doi10.1016/j.apcatb.2013.02.003
dc.description.volume136-137
dc.description.startingpage225
dc.description.endingpage238
dc.author.faculty002 Σχολή Θετικών και Εφαρμοσμένων Επιστημών / Faculty of Pure and Applied Sciences
dc.author.departmentΤμήμα Χημείας / Department of Chemistry
dc.type.uhtypeArticleen
dc.description.notes<p>Cited By :40</p>en
dc.source.abbreviationAppl.Catal.B Environ.en
dc.contributor.orcidEfstathiou, Angelos M. [0000-0001-8393-8800]
dc.contributor.orcidKalamaras, Christos M. [0000-0001-6809-5948]
dc.gnosis.orcid0000-0001-8393-8800
dc.gnosis.orcid0000-0001-6809-5948


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