[Re(bpy-tBu)(CO)4](OTf) (bpy-tBu = 4,4′-di-tert-butyl-2, 2′-bipyridine, OTf = trifluoromethanesulfonate) (1) and [Re(bpy)(CO) 4](OTf) (bpy = 2,2′-bipyridine) (2) were synthesized and studied as proposed intermediates in the electrocatalytic reduction of carbon dioxide (CO2) by Re(bpy-R)(CO)3X. Both compounds demonstrated increased current responses in cyclic voltammograms under CO 2. Complex 1 was also characterized by X-ray crystallography. Infrared-spectroelectrochemistry (IR-SEC) of 1 and 2 indicated that upon exposure of the cationic tetracarbonyl compounds to a reducing potential, a CO ligand is labilised and [Re(bpy-R)(CO)3(CH3CN)] + species are formed. This is proposed to occur via an electron-transfer-catalysed process wherein a catalytic amount of reduced species propagates a ligand exchange reaction. Addition of a catalytic amount of potassium intercalated graphite (KC8), a chemical reductant, to a solution of 1 or 2 also yielded quantitative formation of [Re(bpy-R)(CO) 3(CH3CN)]+, which indicates that the CO loss is catalysed by electron transfer, and not the electrode itself. © 2013 The Royal Society of Chemistry.
CITATION STYLE
Grice, K. A., Gu, N. X., Sampson, M. D., & Kubiak, C. P. (2013). Carbon monoxide release catalysed by electron transfer: Electrochemical and spectroscopic investigations of [Re(bpy-R)(CO)4](OTf) complexes relevant to CO2 reduction. Dalton Transactions, 42(23), 8498–8503. https://doi.org/10.1039/c3dt50612f
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