Publication Type Journal Article
Title Mild alkane C-H and O-H oxidations catalysed by mixed-N,S copper, iron and vanadium systems
Authors Ricardo R. Fernandes Jamal Lasri M. Fátima C. Guedes da Silva J A L Silva J.J.R. Fraústo da Silva Armando J.L. Pombeiro
Groups BIOIN CCC
Journal APPLIED CATALYSIS A-GENERAL
Year 2011
Month July
Volume 402
Number 1
Pages 110-120
Abstract Reactions of 1,6-bis(2 -pyridyl)-2,5-dithiahexane (Py2S2) with different sources of Cu(II), Fe(II) and V(III) afford the corresponding novel complexes [CuCl(Py2S2)]Cl (1), [CuCl(Py2S2)](CuCl2) (1 ), [Cu(OTf)(2)(Py2S2)] (2), [Cu(Py2S2)(H2O)(2)](OTf)(2) (2 ), [FeCl2(Py2S2)] (3), [Fe(Py2S2)(CH3CN)(2)][SbF6](2) (4) and [VCl2(Py2S2)]Cl (5), bearing Py2S2 as a tetradentate ligand. All the compounds were characterised by IR, ESI-MS, elemental analyses and, in the cases of 1 , 2 and 4, the molecular structures were also elucidated by single X-ray crystal diffraction analysis. Complexes 1-5 were evaluated as catalysts or catalyst precursors for the mild peroxidative oxidation of cyclohexane in acetonitrile typically at 25 degrees C and in the solvent-free oxidation of primary and secondary alcohols under microwave (MW) irradiation. The influences of the type and amount of acid promoter, amounts of oxidant and catalyst, time and temperature, on the product yields and TONs, are investigated. The iron(II) complexes 3 and 4 are the most active catalysts in the oxidation of cyclohexane with H2O2 in a slightly acidic medium, leading to maximum overall yields (based on the alkane) of 38 and 28\%, and turnover numbers (TON) up to 950 and 1450, respectively. Additionally, the Cu and Fe complexes (1-4) proved to be useful catalysts in various MW-assisted alcohol oxidations at 80 degrees C with t-BuOOH. The oxidation of 1-phenylethanol catalysed by the Fe complex 3 in the presence of pyrazine-2-carboxylic acid (co-catalyst) is very fast, giving the acetophenone product (TOF=4470 h(-1)) in good yield (75\%) just after 5 min of reaction time. (C) 2011 Elsevier B.V. All rights reserved.
DOI http://dx.doi.org/10.1016/j.apcata.2011.05.035
ISBN
Publisher
Book Title
ISSN 0926-860X
EISSN
Conference Name
Bibtex ID ISI:000293550000013
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