Electron and proton transfer reactions of diiron complexes [Fe(2)adt(CO)(6)] (1) and [Fe(2)adt(CO)(4)(PMe3)(2)] (4), with the biomimetic azadithiolate (adt) bridging ligand, have been investigated by real-time IR- and UV-vis-spectroscopic observation to elucidate the role of the adt-N as a potential proton shuttle in catalytic H-2 formation. Protonation of the one-electron reduced complex, 1(-), occurs on the adt-N yielding 1H and the same species is obtained by one-electron reduction of 1H(+). The preference for ligand vs. metal protonation in the Fe-2(i,0) state is presumably kinetic but no evidence for tautomerization of 1H to the hydride 1Hy was observed. This shows that the adt ligand does not work as a proton relay in the formation of...
An azadithiolate bridged monocyanide derivative [Fe-2(adt)(CO)(5)(CN)](-) of [Fe-2(adt)(CO)(4)(CN)(2...
International audienceThis review focuses on electron and proton transfers involving hexacarbonyl an...
Directed design of improved molecular catalysts for hydrogen evolution reactions relies on rational ...
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...
International audienceThe electrochemical reduction and protonation of [Fe2(adtH)(CO)6] (1, adtH = S...
The formation of transient metal hydride(s) at the metallo-sulfur active sites of [FeFe]-hydrogenase...
International audienceDissymetrically disubstituted di-iron azadithiolate complexes [Fe2(CO)4(κ2-LL)...
ABSTRACT: The [FeFe]-hydrogenase enzymes catalyze hydrogen oxidation and production efficiently with...
The formation of transient metal hydride(s) at the metallo-sulfur active sites of [FeFe]-hydrogenase...
International audienceThe ligand exchange reaction of IMe-(CH2)2-PPh2 (IMe = 1-methyimidazol-2-ylide...
As humans continue to rely heavily on fossil fuels for our energy sources, many scientists are resea...
An azadithiolate bridged monocyanide derivative [Fe-2(adt)(CO)(5)(CN)](-) of [Fe-2(adt)(CO)(4)(CN)(2...
International audienceThis review focuses on electron and proton transfers involving hexacarbonyl an...
Directed design of improved molecular catalysts for hydrogen evolution reactions relies on rational ...
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...
International audienceThe electrochemical reduction and protonation of [Fe2(adtH)(CO)6] (1, adtH = S...
The formation of transient metal hydride(s) at the metallo-sulfur active sites of [FeFe]-hydrogenase...
International audienceDissymetrically disubstituted di-iron azadithiolate complexes [Fe2(CO)4(κ2-LL)...
ABSTRACT: The [FeFe]-hydrogenase enzymes catalyze hydrogen oxidation and production efficiently with...
The formation of transient metal hydride(s) at the metallo-sulfur active sites of [FeFe]-hydrogenase...
International audienceThe ligand exchange reaction of IMe-(CH2)2-PPh2 (IMe = 1-methyimidazol-2-ylide...
As humans continue to rely heavily on fossil fuels for our energy sources, many scientists are resea...
An azadithiolate bridged monocyanide derivative [Fe-2(adt)(CO)(5)(CN)](-) of [Fe-2(adt)(CO)(4)(CN)(2...
International audienceThis review focuses on electron and proton transfers involving hexacarbonyl an...
Directed design of improved molecular catalysts for hydrogen evolution reactions relies on rational ...