Electrochemistry of Triphenylarsine-substituted Tungsten(0) Fischer carbene complexes

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Authors

Jansen van Rensburg, Armand
Landman, Marile
Van der Westhuizen, Deidre
Conradie, Marrigje M.
Conradie, Jeanet

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Elsevier

Abstract

A combined electrochemical and density functional theory study on four triphenylarsine-substituted tetracarbonyl tungsten(0) Fischer carbene complexes of general formula [(CO)4(AsPh3)WC(OEt)(Ar)], with Ar = 2-thienyl (1), 2-furyl (2), 2-(N-methyl)pyrrolyl (3), 2,20-bithienyl (4), revealed that electrochemical properties for these complexes follow the same trend as analogous pentacarbonyl and triphenylphosphine-substituted tetracarbonyl complexes in literature. The current results made it possible to establish a general trend for Fischer-type W-carbene complexes containing an aryl substituent, namely (largest metal oxidation and largest carbene carbon reduction potential) [(L) (CO)4WC(OEt)(2-thienyl)] > [(L)(CO)4WC(OEt)(2-furyl)] > [(L)(CO)4WC(OEt)(2-(N-methyl)pyrrolyl)] (L = CO, PPh3 or AsPh3).

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Keywords

Fischer carbene, Tungsten, Triphenylarsine, Electrochemistry, Density functional theory (DFT)

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Citation

Van Rensburg, AJ, Landman, M, Van der Westhuizen, D, Conradie, MM & Conradie, J 2015, 'Electrochemistry of Triphenylarsine-substituted Tungsten(0) Fischer carbene complexes', Electrochimica Acta, vol. 186, pp. 321-327,