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Structural, Electrochemical, and Theoretical Investigations of New Thio‐ and Selenoether Complexes of Molybdenum and Tungsten
19
Citations
32
References
2005
Year
Materials ScienceInorganic ChemistryInorganic SynthesisEngineeringTheoretical Inorganic ChemistryCoordination ComplexAbstract MolybdenumVirtual Molybdenum TrimerSelenoether ComplexesTungsten DimerMolecular ComplexChemistryNew Thio‐Theoretical InvestigationsElectrochemistryInorganic Compound
Abstract Molybdenum and tungsten complexes with tridentate bisanionic ligands ( – OC 2 H 4 XC 2 H 4 O – , X = S, Se) were synthesized and analyzed electrochemically. Crystal structures of [{MoO 2 [O(CH 2 ) 2 S(CH 2 ) 2 O]} 2 ] and [{WO 2 [O(CH 2 ) 2 S(CH 2 ) 2 O]} 3 ] were obtained. For these two complexes as well asfor the virtual molybdenum trimer and the tungsten dimer,DFT calculations were performed in order to better understand the formation of two significantly different complexes for molybdenum and tungsten with the same ligandand by the same preparation method. The compound WO 2 Cl 2 [MeS(CH 2 ) 2 SMe] was synthesized and characterized by crystal structure analysis. A structural and electrochemical comparison of this compound with the recently published analogous molybdenum compound and the dme analogs of molybdenum and tungsten were undertaken. All these data were used to evaluate the structural and electronic influences of replacing molybdenum by tungsten and of varying the ligand atoms (O/S/Se) from the point of view of the different coordination spheres of the molybdopterin‐dependent oxygen‐atom‐transfer enzymes. (© Wiley‐VCH Verlag GmbH & Co. KGaA, 69451 Weinheim, Germany, 2006)
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