Publication Type Journal Article
Title Bis- and tris-pyridyl amino and imino thioether Cu and Fe complexes. Thermal and microwave-assisted peroxidative oxidations of 1-phenylethanol and cyclohexane in the presence of various N-based additives
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 JOURNAL OF MOLECULAR CATALYSIS A-CHEMICAL
Year 2011
Month December
Volume 351
Number
Pages 100-111
Abstract The new [Cu(OTf)(L)](OTf) 1, [Cu(L)(H2O)](OTf)(2) 1 , [Cu(OTf)(L-Me)](OTf) 2 and [Cu(L-py)](OTf)(2) 4, and [Fe(OTf)(2)(L-Me)] 3 and [Fe(OTf)(L-py)](OTf) 5 complexes, bearing bis- and tris-pyridyl amino and imino thioether ligands, have been synthesized and fully characterized by IR, ESI+-MS and elemental analyses, and also by X-ray diffraction structural analyses (for 1, 1 , 2 and 4). In the presence of various N-based additives, they show a very good catalytic activity for the solvent- and halogen-free microwave-assisted oxidation of 1-phenylethanol by t-BuOOH (model reaction). The combination of pyridazine with the Cu complex 2 provided the most efficient catalytic system, resulting in a maximum yield of acetophenone of 99\% after 30 min at 80 degrees C. The maximum turnover frequency (TOF) of 5220 h(-1) (corresponding to 87\% yield) was achieved just after 5 min of reaction time under the very low microwave power of 10W. The catalytic properties of those complexes were also evaluated for the mild oxidation of cyclohexane, to cyclohexanol and cyclohexanone, in acetonitrile with H2O2, leading to yields up to 29\% (based on the alkane substrate) that are comparable to the best reported Fe and Cu catalytic systems. The effects of various factors, such as nature and amount of the additives and metal centres (Cu or Fe), temperature, time and type of peroxide used, were also investigated. (C) 2011 Elsevier B.V. All rights reserved.
DOI http://dx.doi.org/10.1016/j.molcata.2011.09.022
ISBN
Publisher
Book Title
ISSN 1381-1169
EISSN
Conference Name
Bibtex ID ISI:000298127200013
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