International audienceSynthetic diiron compounds of the general formula Fe2(μ-S2R)(CO)n(L)6−n (R = alkyl or aromatic groups; L = CN− or phosphines) are versatile models for the active-site cofactor of hydrogen turnover in [FeFe]-hydrogenases. A series of 18 diiron compounds, containing mostly a dithiolate bridge and terminal ligands of increasing complexity, was characterized by X-ray absorption and emission spectroscopy in combination with density functional theory. Fe K-edge absorption and Kβ main-line emission spectra revealed the varying geometry and the low-spin state of the Fe(I) centers. Good agreement between experimental and calculated core-to-valence-excitation absorption and radiative valence-to-core-decay emission spectra reveal...
The [Fe]-hydrogenase is an ideal system for studying the electronic properties of the low spin iron ...
[[abstract]]The discovery of a diiron organometallic site in nature within the diiron hydrogenase, [...
Mitigation of climate change motivates researchers to explore hydrogen as a potential energy carrier...
International audienceSynthetic diiron compounds of the general formula Fe2(μ-S2R)(CO)n(L)6−n (R = a...
International audienceSynthetic diiron compounds of the general formula Fe2(μ-S2R)(CO)n(L)6−n (R = a...
International audienceSynthetic diiron compounds of the general formula Fe2(μ-S2R)(CO)n(L)6−n (R = a...
International audienceSynthetic diiron compounds of the general formula Fe2(μ-S2R)(CO)n(L)6−n (R = a...
Synthetic diiron compounds of the general formula Fe2(μ-S2R)(CO)n(L)6−n (R = alkyl or aromatic group...
The active site for hydrogen production in [FeFe] hydrogenase comprises a diiron unit. Bioinorganic ...
International audienceElectrochemical studies of [Fe2(CO)4(κ2-dmpe)(μ-dithiolate)] (dithiolate=adtBn...
International audienceElectrochemical studies of [Fe2(CO)4(κ2-dmpe)(μ-dithiolate)] (dithiolate=adtBn...
International audienceElectrochemical studies of [Fe2(CO)4(κ2-dmpe)(μ-dithiolate)] (dithiolate=adtBn...
International audienceElectrochemical studies of [Fe2(CO)4(κ2-dmpe)(μ-dithiolate)] (dithiolate=adtBn...
International audienceElectrochemical studies of [Fe2(CO)4(κ2-dmpe)(μ-dithiolate)] (dithiolate=adtBn...
International audienceElectrochemical studies of [Fe2(CO)4(κ2-dmpe)(μ-dithiolate)] (dithiolate=adtBn...
The [Fe]-hydrogenase is an ideal system for studying the electronic properties of the low spin iron ...
[[abstract]]The discovery of a diiron organometallic site in nature within the diiron hydrogenase, [...
Mitigation of climate change motivates researchers to explore hydrogen as a potential energy carrier...
International audienceSynthetic diiron compounds of the general formula Fe2(μ-S2R)(CO)n(L)6−n (R = a...
International audienceSynthetic diiron compounds of the general formula Fe2(μ-S2R)(CO)n(L)6−n (R = a...
International audienceSynthetic diiron compounds of the general formula Fe2(μ-S2R)(CO)n(L)6−n (R = a...
International audienceSynthetic diiron compounds of the general formula Fe2(μ-S2R)(CO)n(L)6−n (R = a...
Synthetic diiron compounds of the general formula Fe2(μ-S2R)(CO)n(L)6−n (R = alkyl or aromatic group...
The active site for hydrogen production in [FeFe] hydrogenase comprises a diiron unit. Bioinorganic ...
International audienceElectrochemical studies of [Fe2(CO)4(κ2-dmpe)(μ-dithiolate)] (dithiolate=adtBn...
International audienceElectrochemical studies of [Fe2(CO)4(κ2-dmpe)(μ-dithiolate)] (dithiolate=adtBn...
International audienceElectrochemical studies of [Fe2(CO)4(κ2-dmpe)(μ-dithiolate)] (dithiolate=adtBn...
International audienceElectrochemical studies of [Fe2(CO)4(κ2-dmpe)(μ-dithiolate)] (dithiolate=adtBn...
International audienceElectrochemical studies of [Fe2(CO)4(κ2-dmpe)(μ-dithiolate)] (dithiolate=adtBn...
International audienceElectrochemical studies of [Fe2(CO)4(κ2-dmpe)(μ-dithiolate)] (dithiolate=adtBn...
The [Fe]-hydrogenase is an ideal system for studying the electronic properties of the low spin iron ...
[[abstract]]The discovery of a diiron organometallic site in nature within the diiron hydrogenase, [...
Mitigation of climate change motivates researchers to explore hydrogen as a potential energy carrier...