2006
DOI: 10.1007/s11244-006-0076-8
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Vanadium oxide surfaces and supported vanadium oxide nanoparticles

Abstract: The information obtained from the characterization of vanadium oxide single crystal surfaces is related to the study of vanadia nanoparticles supported on silica and alumina thin films, model systems for the so-called “supported monolayer vanadia catalysts”. It is found that these particles have properties similar to V2O3 surfaces, where the topmost V ions are involved in vanadyl groups and have a 5+ oxidation state. A vibrational spectroscopy investigation combined with DFT calculations show that the accepted… Show more

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Cited by 84 publications
(100 citation statements)
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“…However, if the surface is reduced the situation changes considerably. We note that, different from Cr 2 O 3 (0001) [28], where we encountered a similar structural situation, the vanadyl groups cannot be reduced thermally without destroying the surface structure [16,19]. In fact, it is necessary to electron bombard the surface to selectively remove the vanadyl oxygen atoms as shown in Fig.…”
Section: Resultsmentioning
confidence: 77%
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“…However, if the surface is reduced the situation changes considerably. We note that, different from Cr 2 O 3 (0001) [28], where we encountered a similar structural situation, the vanadyl groups cannot be reduced thermally without destroying the surface structure [16,19]. In fact, it is necessary to electron bombard the surface to selectively remove the vanadyl oxygen atoms as shown in Fig.…”
Section: Resultsmentioning
confidence: 77%
“…The final result of a V 2 O 3 (0001) surface shows in Fig. 1c the typical hexagonal lattice of protrusions of a depolarized corundum type (0001) surface, which is expected to be terminated by half a metal ion layer with exactly the exposed surface unit cell, if the surface structure is directly derived from a cut through the bulk structure in between the puckered vanadium ion layers [16]. This situation is depicted in Fig.…”
Section: Resultsmentioning
confidence: 92%
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