The model [FeFe]-hydrogenase subsite Fe2(µ-odt)(CO)4(PMe3)2 (odt = 2-oxapropane-1,3-dithiolate) has been crystallized for the first time, revealing an apical–basal arrangement of the two phosphane groups. Protonation of this species has been studied by a combination of stopped-flow ultraviolet and infrared techniques along with time-resolved NMR spectroscopy. The kinetics of the protonation are similar to those for Fe2(µ-edt)(CO)4(PMe3)2 (edt = ethane-1,2-dithiolate) and are much slower than those for the protonation of Fe2(µ-pdt)(CO)4(PMe3)2 (pdt = propane-1,3-dithiolate). The dithiolate bridge length is therefore not the key determinant of reactivity in these simple model systems
[FeFe]-hydrogenases are efficient metalloenzymes that catalyze the oxidation and evolution of molecu...
International audienceA novel unsymmetrically disubstituted propanedithiolate compound [Fe2(CO)4(κ2-...
International audienceDissymetrically disubstituted di-iron azadithiolate complexes [Fe2(CO)4(κ2-LL)...
The formation of transient metal hydride(s) at the metallo-sulfur active sites of [FeFe]-hydrogenase...
The formation of transient metal hydride(s) at the metallo-sulfur active sites of [FeFe]-hydrogenase...
We provide the first detailed time-resolved mechanistic information on the protonation of a model of...
International audienceThe ligand exchange reaction of IMe-(CH2)2-PPh2 (IMe = 1-methyimidazol-2-ylide...
Electron and proton transfer reactions of diiron complexes [Fe(2)adt(CO)(6)] (1) and [Fe(2)adt(CO)(4...
[FeFe]-Hydrogenases (H2ases) are metalloenzymes that can catalyze the reversible reduction of proton...
ABSTRACT: The [FeFe]-hydrogenase enzymes catalyze hydrogen oxidation and production efficiently with...
[FeFe]-hydrogenases have attracted research for more than twenty years as paragons for the design of...
The solution-phase photochemistry of the [FeFe] hydrogenase subsite model (µ-S(CH2)3S)Fe2(CO)4(PMe3)...
Results of density functional theory (DFT) calculations on the protonation of the [FeFe]-hydrogenase...
A novel [FeFe]-hydrogenase model complex containing phosphine oxide in the dithiolato ligand, namely...
The solution-phase photochemistry of the [FeFe] hydrogenase subsite model (mu-S(CH2)(3)S)Fe-2(CO)(4)...
[FeFe]-hydrogenases are efficient metalloenzymes that catalyze the oxidation and evolution of molecu...
International audienceA novel unsymmetrically disubstituted propanedithiolate compound [Fe2(CO)4(κ2-...
International audienceDissymetrically disubstituted di-iron azadithiolate complexes [Fe2(CO)4(κ2-LL)...
The formation of transient metal hydride(s) at the metallo-sulfur active sites of [FeFe]-hydrogenase...
The formation of transient metal hydride(s) at the metallo-sulfur active sites of [FeFe]-hydrogenase...
We provide the first detailed time-resolved mechanistic information on the protonation of a model of...
International audienceThe ligand exchange reaction of IMe-(CH2)2-PPh2 (IMe = 1-methyimidazol-2-ylide...
Electron and proton transfer reactions of diiron complexes [Fe(2)adt(CO)(6)] (1) and [Fe(2)adt(CO)(4...
[FeFe]-Hydrogenases (H2ases) are metalloenzymes that can catalyze the reversible reduction of proton...
ABSTRACT: The [FeFe]-hydrogenase enzymes catalyze hydrogen oxidation and production efficiently with...
[FeFe]-hydrogenases have attracted research for more than twenty years as paragons for the design of...
The solution-phase photochemistry of the [FeFe] hydrogenase subsite model (µ-S(CH2)3S)Fe2(CO)4(PMe3)...
Results of density functional theory (DFT) calculations on the protonation of the [FeFe]-hydrogenase...
A novel [FeFe]-hydrogenase model complex containing phosphine oxide in the dithiolato ligand, namely...
The solution-phase photochemistry of the [FeFe] hydrogenase subsite model (mu-S(CH2)(3)S)Fe-2(CO)(4)...
[FeFe]-hydrogenases are efficient metalloenzymes that catalyze the oxidation and evolution of molecu...
International audienceA novel unsymmetrically disubstituted propanedithiolate compound [Fe2(CO)4(κ2-...
International audienceDissymetrically disubstituted di-iron azadithiolate complexes [Fe2(CO)4(κ2-LL)...