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Please use this identifier to cite or link to this item: http://repository.iitr.ac.in/handle/123456789/25211
Title: Oxidation of p-chlorotoluene and cyclohexene catalysed by polymer-anchored oxovanadium(iv) and copper(ii) complexes of amino acid derived tridentate ligands
Authors: Maurya, Mannar Ram
Kumar M.
Kumar A.
Pessoa J.C.
Published in: Dalton Transactions
Abstract: 3-Formylsalicylic acid (Hfsal), covalently bound to chloromethylated polystyrene (PS) and cross-linked with 5% divinylbenzene reacts with d,l-alanine and l-isoleucine to give the Schiff-base tridentate ligands PS-H 2fsal-d,l-Ala and PS-H2fsal-l-Ile, respectively. These anchored ligands upon reaction with VOSO4 and Cu(CH 3COO)2•H2O form the complexes PS-[VO(fsal-d,l-Ala)(H2O)], PS-[Cu(fsal-d,l-Ala)(H2O)], PS-[VO(fsal-l-Ile)(H2O)] and PS-[Cu(fsal-l-Ile)(H2O)]. The structures of these immobilized complexes have been established on the basis of scanning electron micrographs, spectroscopic (infrared, electronic and EPR), thermogravimetric and elemental analysis studies. The oxidation of p-chlorotoluene and cyclohexene has been investigated using these complexes as the catalysts in the presence of H2O2 as the oxidant. Reaction conditions have been optimised by considering the concentration of the oxidant, the amount of catalyst used and the temperature of the reaction mixture. Under the optimised conditions, p-chlorotoluene gave a maximum of 14% conversion using PS-[VO(fsal-d,l-Ala)(H2O)] as the catalyst, with the main products having a selectivity order of: p-chlorobenzaldehyde >> p-chlorobenzylalcohol > p-chlorobenzoic acid > 2-methyl-5-chlorophenol > 3-methyl-6-chlorophenol. The oxidation of cyclohexene with PS-[VO(fsal-d,l-Ala)(H2O)] proceeds with 79% conversion, which is followed by PS-[VO(fsal-l-Ile)(H2O)] with 77% conversion, and the oxidation of cyclohexene by Cu-based catalysts occurs with considerably lower conversions (29-32%). The selectivity of the products follows the order: 2-cyclohexene-1-ol > cyclohexene oxide > cyclohexane-1,2-diol > 2-cyclohexene-1-one. Recycling studies indicate that these catalysts can be reused at least three times without any significant loss in their catalytic potential. However, EPR studies indicate that while the polymer supported V(iv)O-complexes do not change after being used, the EPR spectra of the Cu-complexes show significant changes. The corresponding non-polymer bound complexes [VO(fsal-d,l-Ala)(H2O)], [Cu(fsal-d,l-Ala)(H 2O)], [VO(fsal-l-Ile)(H2O)] and [Cu(fsal-l-Ile)(H 2O)] have also been prepared in order to compare their spectral properties and catalytic activities. The non-polymer bound complexes exhibit lower conversion, along with lower turn-over frequency as compared to their polymer-bound analogues. Several EPR, 51V NMR and UV-vis studies have been undertaken to detect the intermediate species, and outlines for the mechanisms of the catalytic reactions are proposed. © 2008 The Royal Society of Chemistry.
Citation: Dalton Transactions(32): 4220-4232
URI: https://doi.org/10.1039/b804823a
http://repository.iitr.ac.in/handle/123456789/25211
Issue Date: 2008
Keywords: Chloromethylated polystyrenes
Copper II complexes
Covalently bound
Cyclohexene
L-alanine
L-isoleucine
Oxovanadium
P-chlorotoluene
Schiff-base
Tridentate ligands
Amines
Amino acids
Chlorine compounds
Copper
Copper compounds
Olefins
Organic acids
Vanadium compounds
Ligands
4 chlorotoluene
4-chlorotoluene
amino acid
copper
cyclohexene
cyclohexene derivative
drug derivative
ligand
organometallic compound
oxovanadium IV
polymer
toluene
vanadic acid
catalysis
chemistry
electron spin resonance
infrared spectrophotometry
oxidation reduction reaction
thermogravimetry
Amino Acids
Catalysis
Copper
Cyclohexenes
Electron Spin Resonance Spectroscopy
Ligands
Organometallic Compounds
Oxidation-Reduction
Polymers
Spectrophotometry, Infrared
Thermogravimetry
Toluene
Vanadates
ISSN: 14779226
Author Scopus IDs: 7005255411
57211647626
9234914600
35557715900
Author Affiliations: Maurya, M.R., Department of Chemistry, Indian Institute of Technology Roorkee, Roorkee-247667, India
Kumar, M., Department of Chemistry, Indian Institute of Technology Roorkee, Roorkee-247667, India
Kumar, A., Centro Química Estrutural, Instituto Superior Técnico, TU Lisbon, Av Rovisco Pais, 1049-001 Lisboa, Portugal
Pessoa, J.C., Centro Química Estrutural, Instituto Superior Técnico, TU Lisbon, Av Rovisco Pais, 1049-001 Lisboa, Portugal
Funding Details: 
Corresponding Author: Maurya, M. R.; Department of Chemistry, , Roorkee-247667, India; email: rkmanfcy@iitr.ernet.in
Appears in Collections:Journal Publications [CY]

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