Electrocatalytic proton reduction by a model for [NiFeSe] hydrogenases

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Abstract

Two new heterodinuclear nickel-iron complexes [Ni(pbSmSe)FeCpCO]PF6 and [Ni(xbSmSe)FeCpCO]PF6 were synthesized as mimics of the [NiFeSe] hydrogenase active site (HCp = cyclopentadiene; H2pbSmSe = 1,9-diselenol-3,7-dithia-2,2,8,8-tetramethylnonane; H2xbSmSe = 1,2,-bis(2-thiabutyl-3,3-dimethyl-4-selenol)benzene). The compounds were characterized by single crystal X-ray diffraction and cyclic voltammetry. X-ray structure determinations showed that in both NiFe complexes the nickel(ii) center is in a square-planar S2Se2 environment; the two selenolate donors are bridging to the iron(ii) center that is further coordinated to an η5-cyclopentadienyl group and a carbon monoxide ligand. Electrochemical studies showed that the complex [Ni(pbSmSe)FeCpCO]PF6 is an electrocatalyst for the production of H2 in DMF in the presence of acetic acid at -2.1 V vs. Fc+/Fc; a foot-of-the-wave (FOWA) analysis of the catalytic currents yielded an estimation of kobs of 24 s-1.

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Gezer, G., Jiménez, D. D., Siegler, M. A., & Bouwman, E. (2017). Electrocatalytic proton reduction by a model for [NiFeSe] hydrogenases. Dalton Transactions, 46(23), 7506–7514. https://doi.org/10.1039/c7dt00972k

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