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Please use this identifier to cite or link to this item: http://repository.iitr.ac.in/handle/123456789/25202
Title: Polymer-bound oxidovanadium(IV) and dioxidovanadium(V) complexes as catalysts for the oxidative desulfurization of model fuel diesel
Authors: Maurya, Mannar Ram
Arya A.
Kumar A.
Kuznetsov M.L.
Avecilla F.
Pessoa J.C.
Published in: Inorganic Chemistry
Abstract: The Schiff base (Hfsal-dmen) derived from 3-formylsalicylic acid and N.N-dimethyl ethylenediamine has been covalently bonded to chloromethylated polystyrene to give the polymer-bound ligand, PS-Hfsal-dmen (I). Treatment of PS-Hfsal-dmen with [VIVO(acac)2] in the presence of MeOH gave the oxldovanadium(IV) complex PS-[VIVO(fsaldmen)(MeO)] (1). On aerial oxidation in methanol, complex 1 was oxidized to PS-[VvO 2(fsal-dmen)] (2). The corresponding neat complexes, [V IVO(sal-dmen)(acac)] (3) and [VvO2(sal-dmen)] (4) were similarly prepared. All these complexes are characterized by various spectroscopic techniques (IR, electronic, NMR, and electron paramagnetic resonance (EPR)) and thermal as well as field-emission scanning electron micrographs (FE-SEM) studies, and the molecular structures of 3 and 4 were determined by single crystal X-ray diffraction. The EPR spectrum of the polymer supported VIVO-complex 1is characteristic of magnetically diluted VIVO-complexes, the resolved EPR pattern indicating that the V IVO-centers are well dispersed in the polymer matrix. A good 51V NMR spectrum could also be measured with 4 suspended in dimethyl sulfoxide (DMSO), the chemical shift (-503 ppm) being compatible with a VO 2+-center and a N,O binding set. The catalytic oxidative desulfurization of organosulfur compounds thiophene, dibenzothiophene, benzothiophene, and 2-methyl thiophene (model of fuel diesel) was carried out using complexes 1 and 2. The sulfur in model organosulfur compounds oxidizes to the corresponding sulfone in the presence of H2O2. The systems 1 and 2 do not loose efficiency for sulfoxidation at least up to the third cycle of reaction, this indicating that they preserve their integrity under the conditions used. Plausible intermediates involved in these catalytic processes are established by UV-vis, EPR, 51V NMR, and density functional theory (DFT) studies, and an outline of the mechanism is proposed. The 51V NMR spectra recorded for solutions in methanol confirm that complex 4, on treatment with H2O2, is able to generate peroxo-vanadium(V) complexes, including quite stable protonated peroxo-V v-complexes [VvO(O)2(sal-dmen-NH+)]. The 51V NMR and DFT data indicate that formation of the intermediate hydroxidoperoxo-Vv-complex [Vv(OH)(O2)(sal- dmen)]+ does not occur, but instead protonated [VvO(O) 2(sal-dmen-NH+)] complexes form and are relevant for catalytic action. © 2010 American Chemical Society.
Citation: Inorganic Chemistry, 49(14): 6586-6600
URI: https://doi.org/10.1021/ic1004209
http://repository.iitr.ac.in/handle/123456789/25202
Issue Date: 2010
ISSN: 201669
Author Scopus IDs: 7005255411
25030400600
9234914600
7102379353
6602180279
35557715900
Author Affiliations: Maurya, M.R., Department of Chemistry, Indian Institute of Technology Roorkee, Roorkee 247 667, India
Arya, A., Department of Chemistry, Indian Institute of Technology Roorkee, Roorkee 247 667, India
Kumar, A., Centro Química Estrutural, Instituto Superior Técnico, TU Lisbon, Av Rovisco Pais, 1049-001 Lisboa, Portugal
Kuznetsov, M.L., Centro Química Estrutural, Instituto Superior Técnico, TU Lisbon, Av Rovisco Pais, 1049-001 Lisboa, Portugal
Avecilla, F., Departamento de Química Fundamental, Universidade da Coruña, Campus de A Zapateira, 15071 A Coruña, Spain
Pessoa, J.C., Department of Chemistry, Indian Institute of Technology Roorkee, Roorkee 247 667, India
Funding Details: 
Corresponding Author: Maurya, M. R.; Department of Chemistry, , Roorkee 247 667, India; email: rkmanfcy@iitr.ernet.in
Appears in Collections:Journal Publications [CY]

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