The redox properties of wox/zro2 catalysts with W-content from 1.0 to 14.3 atoms nm-2, prepared by equilibrium adsorption from hydrous zirconium oxide and ammonium metatungstate solutions, were investigated by redox cycles with H2 and O2, volumetric oxygen adsorption at room temperature (RT), XPS and EPR. After catalysts were heated at 1073K in air, the various tungsten species (small WxOy clusters anchored to zirconia surface, polyoxotungstates species and crystalline WO3) reacted differently with H2 in the range 473-773K. The reduction degree of small W xOy clusters up to 723K slightly increased and then sharply increased, yielding at 773K an average oxidation state (nav) equal to 5.2. Conversely, the reduction degree of polyoxotungstates and WO 3 steeply increased from 523 to 773K, reaching nav equal to 4.8. XPS analysis disclosed that, after treatment in H2 at 773K, whereas W5+ formed on all the samples, W4+ species formed only in samples containing WO3 and polyoxotungstates. Depending on W-content, EPR detected various W5+ species in reduced ZW samples: isolated ions incorporated into the monoclinic zirconia; two kind of surface species, one in small clusters and the other in polyoxotungstates, resembling a bronze-like structure. The formation of O2 - by oxygen adsorption at RT gave an indirect evidence of isolated W5+ surface species, irrespective of W-content. Volumetric O2 adsorption indicated that W5+ surface species were largely re-oxidized at RT, whereas W4+ species, formed in polyoxotungstates and WO3, were less reactive, possibly because these species were less accessible to the gas phase. © 2004 Elsevier B.V. All rights reserved.

WOx/ZrO2 catalysts Part 4. Redox properties as investigated by redox cycles, XPS and EPR / Occhiuzzi, Manlio; D., Cordischi; Gazzoli, Delia; M., Valigi; P. C., Heydorn. - In: APPLIED CATALYSIS A: GENERAL. - ISSN 0926-860X. - 269:1-2(2004), pp. 169-177. [10.1016/j.apcata.2004.04.013]

WOx/ZrO2 catalysts Part 4. Redox properties as investigated by redox cycles, XPS and EPR

OCCHIUZZI, Manlio;GAZZOLI, DELIA;
2004

Abstract

The redox properties of wox/zro2 catalysts with W-content from 1.0 to 14.3 atoms nm-2, prepared by equilibrium adsorption from hydrous zirconium oxide and ammonium metatungstate solutions, were investigated by redox cycles with H2 and O2, volumetric oxygen adsorption at room temperature (RT), XPS and EPR. After catalysts were heated at 1073K in air, the various tungsten species (small WxOy clusters anchored to zirconia surface, polyoxotungstates species and crystalline WO3) reacted differently with H2 in the range 473-773K. The reduction degree of small W xOy clusters up to 723K slightly increased and then sharply increased, yielding at 773K an average oxidation state (nav) equal to 5.2. Conversely, the reduction degree of polyoxotungstates and WO 3 steeply increased from 523 to 773K, reaching nav equal to 4.8. XPS analysis disclosed that, after treatment in H2 at 773K, whereas W5+ formed on all the samples, W4+ species formed only in samples containing WO3 and polyoxotungstates. Depending on W-content, EPR detected various W5+ species in reduced ZW samples: isolated ions incorporated into the monoclinic zirconia; two kind of surface species, one in small clusters and the other in polyoxotungstates, resembling a bronze-like structure. The formation of O2 - by oxygen adsorption at RT gave an indirect evidence of isolated W5+ surface species, irrespective of W-content. Volumetric O2 adsorption indicated that W5+ surface species were largely re-oxidized at RT, whereas W4+ species, formed in polyoxotungstates and WO3, were less reactive, possibly because these species were less accessible to the gas phase. © 2004 Elsevier B.V. All rights reserved.
2004
epr spectroscopy; redox properties; wox/zro2; xps spectroscopy; zirconia-supported tungsta
01 Pubblicazione su rivista::01a Articolo in rivista
WOx/ZrO2 catalysts Part 4. Redox properties as investigated by redox cycles, XPS and EPR / Occhiuzzi, Manlio; D., Cordischi; Gazzoli, Delia; M., Valigi; P. C., Heydorn. - In: APPLIED CATALYSIS A: GENERAL. - ISSN 0926-860X. - 269:1-2(2004), pp. 169-177. [10.1016/j.apcata.2004.04.013]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/240682
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