square-planar Pd in fluorite CeO2: hydrothermal preparation, local structure, redox properties and stability†

نویسندگان

  • Craig I. Hiley
  • Janet M. Fisher
  • David Thompsett
  • Reza J. Kashtiban
  • Jeremy Sloan
  • Richard I. Walton
چکیده

(2015) Incorporation of square-planar Pd2+in fluorite CeO2 : hydrothermal preparation, local structure, redox properties and stability. Copyright and reuse: The Warwick Research Archive Portal (WRAP) makes this work of researchers of the University of Warwick available open access under the following conditions. This article is made available under the Creative Commons Attribution 3.0 (CC BY 3.0) license and may be reused according to the conditions of the license. For more details A note on versions: The version presented in WRAP is the published version, or, version of record, and may be cited as it appears here. The direct hydrothermal crystallisation at 240 C of Pd 2+-containing ceria is investigated to study the extent to which precious metal dopants may be introduced into the cubic fluorite lattice. Samples of composition Ce 1Àx Pd x O 2Àd , where 0 # x # 0.15 can be produced in which Pd is included within the CeO 2 structure to give a linear lattice expansion. Attempts to produce higher Pd 2+-substitution result in the formation of PdO as a secondary phase. Ce and Pd were determined to be in the +4 and +2 oxidation states, respectively, by X-ray absorption near edge structure, suggesting oxide deficiency as the mechanism of charge balance. Extended X-ray absorption fine structure (EXAFS) analysis at the Pd K-edge reveals that Pd 2+ has local square-planar coordination, as expected, and that a structural model can fitted in which the average fluorite structure is maintained, but with Pd 2+ sitting in the square faces of oxide ions present in the local cubic geometry of Ce. This model, consistent with previous modelling studies, gives an excellent fit to the EXAFS spectra, and explains the observed lattice expansion. Transmission electron microscopy analysis shows that Pd is well dispersed in the nanocrystalline ceria particles, and in situ powder XRD shows that upon heating in air the samples remain stable up to 800 C. H 2-TPR shows that Pd-substitution leads to low temperature (<200 C) reduction of the oxide, which increases in magnitude with increasing Pd-substitution. On prolonged heating, however, the Pd is lost from the ceria lattice to give dispersed Pd metal, suggesting an inherent instability of Pd-doped CeO 2 .

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تاریخ انتشار 2015