Article ID Journal Published Year Pages File Type
1229062 Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 2015 7 Pages PDF
Abstract

•New binuclear Ru(III) complexes containing (bis)thiosemicarbazones were reported.•Characterization of complexes were accomplished by analytical and spectral methods.•Electrochemical study supports for the binuclear nature of the complexes.•Reported as effective catalyst for the oxidation of alcohols.

A new series of binuclear ruthenium(III) thiosemicarbazone complexes of general formula [(EPh3)2(X)2Ru-L-Ru(X)2(EPh3)2] (where E = P or As; X = Cl or Br; L = NS chelating bis(thiosemicarbazone ligands) has been synthesized and characterized by analytical and spectral (FT-IR, UV–Vis and EPR). IR spectra show that the thiosemicarbazones behave as monoanionic bidentate ligands coordinating through the azomethine nitrogen and thiolate sulphur. The electronic spectra of the complexes indicate that the presence of d–d and intense LMCT transitions in the visible region. The complexes are paramagnetic (low spin d5) in nature and all the complexes show rhombic distortion around the ruthenium ion with three different ‘g’ values (gx ≠ gy ≠ gz) at 77 K. All the complexes are redox active and exhibit an irreversible metal centered redox processes (RuIII–RuIII/RuIV–RuIV; RuIII–RuIII/RuII–RuII) within the potential range of 0.38–0.86 V and −0.39 to −0.66 V respectively, versus Ag/AgCl. Further, the catalytic efficiency of one of the complexes [Ru2Cl2(AsPh3)4(L1)] (4) has been investigated in the case of oxidation of primary and secondary alcohols into their corresponding aldehydes and ketones in the presence of N-methylmorpholine-N-oxide(NMO) as co-oxidant. The formation of high valent RuVO species is proposed as catalytic intermediate for the catalytic cycle.

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Physical Sciences and Engineering Chemistry Analytical Chemistry
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