A mononuclear hexa-coordinated iron carbonyl complex [Fe(mu-bdt)(CO)(2)(PTA)(2)](1) (bdt = 1,2-benzenedithiolate; PTA = 1,3,5-triaza-7-phosphaadamantane) with two bulky phosphine ligands in the trans position was synthesized and characterized by X-ray structural analysis coulometry data, FTIR, electrochemistry and electronic structure calculations. The complex undergoes a facilitated two-electron reduction 1/1(2-) and shows an inverted one-electron reduction for 1/1(-) at higher potentials. Electrochemical investigations of 1 are compared to the closely related [Fe(bdt)(CO)(2)(PMe3)(2)] compound. A mechanistic suggestion for the hydrogen evolution reaction upon proton reduction from acid media is derived. The stability of 1 in both weak and...
Two diironhexacarbonyl clusters containing (trifluoromethyl)thiophenolates, as models for the active...
International audienceThe ligand exchange reaction of IMe-(CH2)2-PPh2 (IMe = 1-methyimidazol-2-ylide...
The effect of core geometry constraints of hydrogenase H-cluster analogues on reduction chemistry ha...
Two pentacoordinate mononuclear iron carbonyls of the form (bdt)Fe(CO)P<sub>2</sub> [bdt = benzen...
A series of six mononuclear iron complexes of the type [Fe(X-bdt)((P2N2Ph)-N-R)(CO)] ((P2N2Ph)-N-R =...
[FeFe]-hydrogenases feature a unique active site in which the primary catalytic unit is directly coo...
Addition of the bulky redox-active diphosphine 1,8-bis(diphenylphosphino)naphthalene (dppn) to [Fe2(...
A new series of homodinuclear iron complexes as models of the [FeFe]-hydrogenase active site was pre...
A new series of homodinuclear iron complexes as models of the [FeFe]-hydrogenase active site was pre...
International audience[Fe2(S2C3H6)(CO)5{P(OMe)3}] (2) and [Fe2(S2C3H6)(CO)4{P(OMe)3}2] (3) were sele...
The mixed-valence triiron complexes [Fe3(CO)7-x (PPh3) x (μ-edt)2] (x = 0-2; edt = SCH2CH2S) and [Fe...
To probe the influence of redox non‐innocent ligands on a well‐known class of [FeFe]‐hydrogenase mod...
AbstractHere we report the synthesis, electrochemistry and electrocatalytic activity of Fe2(CO)6(μ-S...
[FeFe]-Hydrogenases (H2ases) are metalloenzymes that can catalyze the reversible reduction of proton...
Two diironhexacarbonyl clusters containing (trifluoromethyl)thiophenolates, as models for the active...
International audienceThe ligand exchange reaction of IMe-(CH2)2-PPh2 (IMe = 1-methyimidazol-2-ylide...
The effect of core geometry constraints of hydrogenase H-cluster analogues on reduction chemistry ha...
Two pentacoordinate mononuclear iron carbonyls of the form (bdt)Fe(CO)P<sub>2</sub> [bdt = benzen...
A series of six mononuclear iron complexes of the type [Fe(X-bdt)((P2N2Ph)-N-R)(CO)] ((P2N2Ph)-N-R =...
[FeFe]-hydrogenases feature a unique active site in which the primary catalytic unit is directly coo...
Addition of the bulky redox-active diphosphine 1,8-bis(diphenylphosphino)naphthalene (dppn) to [Fe2(...
A new series of homodinuclear iron complexes as models of the [FeFe]-hydrogenase active site was pre...
A new series of homodinuclear iron complexes as models of the [FeFe]-hydrogenase active site was pre...
International audience[Fe2(S2C3H6)(CO)5{P(OMe)3}] (2) and [Fe2(S2C3H6)(CO)4{P(OMe)3}2] (3) were sele...
The mixed-valence triiron complexes [Fe3(CO)7-x (PPh3) x (μ-edt)2] (x = 0-2; edt = SCH2CH2S) and [Fe...
To probe the influence of redox non‐innocent ligands on a well‐known class of [FeFe]‐hydrogenase mod...
AbstractHere we report the synthesis, electrochemistry and electrocatalytic activity of Fe2(CO)6(μ-S...
[FeFe]-Hydrogenases (H2ases) are metalloenzymes that can catalyze the reversible reduction of proton...
Two diironhexacarbonyl clusters containing (trifluoromethyl)thiophenolates, as models for the active...
International audienceThe ligand exchange reaction of IMe-(CH2)2-PPh2 (IMe = 1-methyimidazol-2-ylide...
The effect of core geometry constraints of hydrogenase H-cluster analogues on reduction chemistry ha...