[FeFe]-hydrogenases feature a unique active site in which the primary catalytic unit is directly coordinated via a bridging cysteine thiolate to a secondary, redox active [4Fe4S] unit. The goal of this study was to evaluate the impact of a bidentate, redox non-innocent ligand on the electrocatalytic properties of the (μ-S(CH2)3S)Fe2(CO)4L2 family of [FeFe]-hydrogenase models as a proxy for the iron–sulfur cluster. Reaction of the redox non-innocent ligand 2,2′-bipyridyl (bpy) with (μ-S(CH2)3S)Fe2(CO)6 leads to substitution of two carbonyls to form the asymmetric complex (μ-S(CH2)3S)Fe2(CO)4(κ2-bpy) which was structurally characterized by single crystal X-ray crystallography. This complex can be protonated by HBF4·OEt2 to form a bridging hyd...
International audienceSynthetic models of the active site of iron–iron hydrogenases are currently th...
AbstractHere we report the synthesis, electrochemistry and electrocatalytic activity of Fe2(CO)6(μ-S...
[FeFe]-hydrogenases are efficient metalloenzymes that catalyze the oxidation and evolution of molecu...
To probe the influence of redox non‐innocent ligands on a well‐known class of [FeFe]‐hydrogenase mod...
Diiron complexes bearing redox active diamine ligands have been studied as models of the active site...
Mitigation of climate change motivates researchers to explore hydrogen as a potential energy carrier...
[FeFe]-Hydrogenases (H2ases) are metalloenzymes that can catalyze the reversible reduction of proton...
The work in this thesis is focused on the synthesis, reactivity and electrochemistry of chemical mod...
As humans continue to rely heavily on fossil fuels for our energy sources, many scientists are resea...
International audienceIn nature, dihydrogen is catalytically produced or split by the [FeFe] and [Ni...
International audienceA DFT study of protonation thermodynamics in H2-evolving biomimetic catalysts ...
Iron–iron hydrogenase are fascinating metallo‐enzymes able to reversibly perform interconversion bet...
A mononuclear hexa-coordinated iron carbonyl complex [Fe(mu-bdt)(CO)(2)(PTA)(2)](1) (bdt = 1,2-benze...
A large number of catalysts for hydrogen evolution reaction (HER) that are related (structurally and...
Addition of the bulky redox-active diphosphine 1,8-bis(diphenylphosphino)naphthalene (dppn) to [Fe2(...
International audienceSynthetic models of the active site of iron–iron hydrogenases are currently th...
AbstractHere we report the synthesis, electrochemistry and electrocatalytic activity of Fe2(CO)6(μ-S...
[FeFe]-hydrogenases are efficient metalloenzymes that catalyze the oxidation and evolution of molecu...
To probe the influence of redox non‐innocent ligands on a well‐known class of [FeFe]‐hydrogenase mod...
Diiron complexes bearing redox active diamine ligands have been studied as models of the active site...
Mitigation of climate change motivates researchers to explore hydrogen as a potential energy carrier...
[FeFe]-Hydrogenases (H2ases) are metalloenzymes that can catalyze the reversible reduction of proton...
The work in this thesis is focused on the synthesis, reactivity and electrochemistry of chemical mod...
As humans continue to rely heavily on fossil fuels for our energy sources, many scientists are resea...
International audienceIn nature, dihydrogen is catalytically produced or split by the [FeFe] and [Ni...
International audienceA DFT study of protonation thermodynamics in H2-evolving biomimetic catalysts ...
Iron–iron hydrogenase are fascinating metallo‐enzymes able to reversibly perform interconversion bet...
A mononuclear hexa-coordinated iron carbonyl complex [Fe(mu-bdt)(CO)(2)(PTA)(2)](1) (bdt = 1,2-benze...
A large number of catalysts for hydrogen evolution reaction (HER) that are related (structurally and...
Addition of the bulky redox-active diphosphine 1,8-bis(diphenylphosphino)naphthalene (dppn) to [Fe2(...
International audienceSynthetic models of the active site of iron–iron hydrogenases are currently th...
AbstractHere we report the synthesis, electrochemistry and electrocatalytic activity of Fe2(CO)6(μ-S...
[FeFe]-hydrogenases are efficient metalloenzymes that catalyze the oxidation and evolution of molecu...