Electronic structure of the extended vanadyl pyrophosphate (1 0 0) surface

D.J. Thompson, I.M. Ciobica, B.K. Hodnett, R.A. Santen, van, M.O. Fanning

Research output: Contribution to journalArticleAcademicpeer-review

12 Citations (Scopus)

Abstract

Bulk and (1 0 0) surface vanadyl pyrophosphate, (VO)2P2O7, were analyzed via periodic d. functional theory calcns. Electronic structures were computed using the Perdew-Wang 91 functional, together with ultrasoft pseudopotentials and plane wave basis sets with cut-off energy of 400 eV. k-point sampling was restricted to the center of the first Brillouin zone. Periodic surface models were built from one bulk unit cell, with the vacuum gap between successive layers made equal to the length of the surface slab in the direction normal to the (1 0 0) plane. Tests indicated that these conditions are sufficient to accurately model surface reactivity. D. of states (DOS) plots show that vanadium species are the primary surface electron transfer sites. Terminal P-O oxygen species are the most basic surface oxygens, as indicated by their strong contribution to high-lying valence band levels. Results for periodic calcns. on the (VO)2P2O7 (1 0 0) surface are hence qual. identical to those previously obtained from cluster calcns., with (VO)2P2O7 (1 0 0) vanadium species acting as hydrocarbon chemisorption sites, nucleophilic terminal P-O oxygens performing substrate oxyfunctionalisation to non-combustion products, and protection of the mild oxidn. product dependent on its orientation at the surface
Original languageEnglish
Pages (from-to)177-180
Number of pages4
JournalCatalysis Today
Volume91-92
DOIs
Publication statusPublished - 2004

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