4.4 Article

The reaction of carbon monoxide with palladium supported on cerium oxide thin films

Journal

SURFACE SCIENCE
Volume 601, Issue 15, Pages 3215-3223

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.susc.2007.05.037

Keywords

soft X-ray photoelectron spectroscopy; temperature programmed desorption; scanning tunneling microscopy; thermal desorption; sintering; cerium; palladium; carbon monoxide

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In this study we probe the reaction of carbon monoxide with Pd nanoparticles supported on cerium oxide thin films. With the use of soft X-ray photoelectron spectroscopy (sXPS), and temperature programmed desorption (TPD) the surface intermediates and pathways leading to reaction products of CO on I'd supported on ceria were investigated. When Pd is supported on the stoichiometric CeO2, surface (Ce+4) only the molecular adsorption of CO on Pd is visible (286.4 eV). All of the CO desorbs below 520 K, however a small amount of 0 exchange between the CO and the ceria was indicated through the acquisition of labeled O-18 from the substrate in the desorbed CO. The Pd nanoparticles are activated on partially reduced CeOx, to promote the dissociation of <10% of the CO as indicated by a C-Pd species (284.4 eV) in sXPS. The C recombines with 0 from the ceria and desorbs between 600 and 700 K. The majority of the CO does not dissociate, however, and the degree of dissociation does not increase with the degree of ceria reduction. This result is in contrast with Rh natioparticles supported on ceria where the degree of dissociation increased with the degree of ceria reduction and nearly total dissociation was obtained when the ceria was highly reduced. (c) 2007 Elsevier B.V. All rights reserved.

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