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Characterization of V2O5-TiO2 Catalysts Prepared by Milling by ESR and Solid State 1H and 51V NMR Full article

Journal The Journal of Physical Chemistry B
ISSN: 1520-6106 , E-ISSN: 1520-5207
Output data Year: 1999, Volume: 103, Number: 36, Pages: 7599-7606 Pages count : 8 DOI: 10.1021/jp991405c
Tags ANGLE-SPINNING NMR; MAGIC-ANGLE; SURFACE-STRUCTURE; OXIDE CATALYSTS; SPECTRA; REACTIVITY; TITANIA; VANADIA; ANATASE; ALUMINA
Authors Lapina Olga B. 1 , Shubin Alexander A. 1 , Nosov Andrei V. 1 , Bosch Eric 2 , Spengler Jörg 2 , Knözinger Helmut 2
Affiliations
1 Boreskov Institute of Catalysis, Pr. Akad. Lavrentieva 5, Novosibirsk 630090, Russia
2 Institut for Physikalische Chemie, Universität München, Butenandtstrasse 5-13 (Haus E), 81377 Munich, Germany

Funding (6)

1 Russian Foundation for Basic Research 98-03-32323
2 International Association for the Promotion of Co-operation with Scientists from the New Independent States of the Former Soviet Union IR-97-0059
3 Bayerischer Forschungsverbund Katalyse
4 Verband der Chemischen Industrie
5 Russian Academy of Sciences
6 German Research Foundation

Abstract: The interaction between V2O5 and TiO2 under milling in a ball mill (an alternative procedure of catalyst preparation) was characterized by 1H, 51V MAS, and 51V static (wide line) NMR spectroscopy supplemented by simulations of 51V NMR spectra. Additionally, ESR and magnetic susceptibility measurements were carried out for the characterization of the paramagnetic V4+ and V3+ sites. It has been shown that after milling, two different types of octahedrally coordinated vanadium (V5+) species (V5+(I) and V5+(II)) strongly bonded to TiO2 are formed. At the same time, the appearance of V3+ ions and an increase of their concentration is observed during milling−calcination processes, along with the formation of at least three different types of paramagnetic V4+ species corresponding to (i) V4+ centers in O-deficient V2O5-x; (ii) VO2+ vanadyl species (V4+(I)) with the vanadium centers in octahedral symmetry with axial distortion; (iii) V4+(II) species with vanadium centers also in octahedral symmetry, but with different bond lengths and strengths as compared to V4+(I). Relative amounts of different V4+ and V5+ species depend on the milling time, the presence of H2O in the system, and the subsequent calcination procedure (temperature and calcination time). Thus, V5+(I) species formed predominantly during milling, whereas V5+(II) species formed after thermal treatment. For the structural characterization of these species, complete sets of the quadrupole and chemical shielding tensor parameters, including relative tensor orientations, have been estimated. This allows us to conclude that the octahedral environment of vanadium in V5+(II) species is less distorted than in V5+(I) and in both cases the distortion is less axial than in V2O5. Combined NMR, ESR, and magnetic susceptibility measurements indicate that all vanadium species (V3+, V4+, and V5+) are isolated from each other on the TiO2 support.
Cite: Lapina O.B. , Shubin A.A. , Nosov A.V. , Bosch E. , Spengler J. , Knözinger H.
Characterization of V2O5-TiO2 Catalysts Prepared by Milling by ESR and Solid State 1H and 51V NMR
The Journal of Physical Chemistry B. 1999. V.103. N36. P.7599-7606. DOI: 10.1021/jp991405c WOS Scopus РИНЦ ANCAN OpenAlex
Dates:
Submitted: Apr 28, 1999
Accepted: Jul 2, 1999
Published online: Aug 20, 1999
Published print: Sep 1, 1999
Identifiers:
Web of science: WOS:000082571100008
Scopus: 2-s2.0-5044227907
Elibrary: 41742218
Chemical Abstracts: 1999:522431
Chemical Abstracts (print): 131:263141
OpenAlex: W2153578196
Citing:
DB Citing
Web of science 52
Scopus 54
Elibrary 51
OpenAlex 52
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