Electron Transfer at a Dithiolate-Bridged Diiron Assembly: Electrocatalytic Hydrogen Evolution
Top Cited Papers
- 1 December 2004
- journal article
- research article
- Published by American Chemical Society (ACS) in Journal of the American Chemical Society
- Vol. 126 (51) , 16988-16999
- https://doi.org/10.1021/ja045281f
Abstract
Electrochemical reduction of Fe2(μ-pdt)(CO)61 (pdt = propane-1,3-dithiolate) leads initially to a short-lived species, 1 -, then subsequently to two-electron reduced products, including a CO-bridged diiron compound, 1B. The assignment of the redox level of 1 - is based on EPR and UV−vis spectra together with the observation that a CO-saturated solution of 1 - decays to give 1 and 1B. Hydride reduction of 1 also results in formation of 1B via a relatively long-lived formyl species, 1 formyl. Despite its involvement in hydride transfer reactions, 1B is formulated as [Fe2(μ-S(CH2)3SH)(μ-CO)(CO)6]- based on a range of spectroscopic measurements together with the Fe−Fe separation of 2.527 Å (EXAFS). Electrocatalytic proton reduction in the presence of 1 in moderately strong acids has been examined by electrochemical and spectroelectrochemical techniques. The acid concentration dependence of the voltammetry is modeled by a mechanism with two electron/proton additions leading to 1H 2, where dissociation of dihydrogen leads to recovery of 1. Further reduction processes are evident at higher acid concentrations. Whereas free CO improves the reversibility of the electrochemistry of 1, CO inhibits electrocatalytic proton reduction, and this occurs through side reactions involving a dimeric species formed from 1 -.Keywords
This publication has 33 references indexed in Scilit:
- Electrocatalytic Proton Reduction by Phosphido-Bridged Diiron Carbonyl Compounds: Distant Relations to the H-Cluster?Inorganic Chemistry, 2004
- Density Functional Theory Investigation of the Active Site of Fe-Hydrogenases. Systematic Study of the Effects of Redox State and Ligands Hardness on Structural and Electronic Properties of Complexes Related to the [2Fe]H SubclusterInorganic Chemistry, 2004
- The Di-Iron Subsite of All-Iron Hydrogenase: Mechanism of Cyanation of a Synthetic {2Fe3S}–Carbonyl AssemblyChemistry – A European Journal, 2002
- Chemical Redox Agents for Organometallic ChemistryChemical Reviews, 1996
- Multiple-scattering calculations of x-ray-absorption spectraPhysical Review B, 1995
- XFIT – an Interactive EXAFSAnalysis ProgramJournal of Synchrotron Radiation, 1995
- Interpretation of EXAFS DataJournal of Synchrotron Radiation, 1995
- Number of relevant independent points in x-ray-absorption fine-structure spectraPhysical Review B, 1993
- (Cyclopentadienone)ruthenium carbonyl complexes - a new class of homogeneous hydrogenation catalystsOrganometallics, 1985
- Role of the metal-metal bond in transition-metal clusters. Phosphido-bridged diiron carbonyl complexesInorganic Chemistry, 1982