International audienceSynthetic strategies towards molecular dyads based on peri-substituted dichalcogenide (S,Se) [FeFe]-hydrogenase synthetic mimics covalently linked to a ZnTPP photosensitizer are described. Dithiolate and diselenolate model systems 2–5 are prepared through condensation of 2-naphthaldehydes with p-methoxyaniline, reduction of the resulting Schiff base and oxidative insertion of Fe2(CO)6 into the dichalcogen bond of the imine or amine. Diselenolate-based [FeFe] complexes (imine 3 and amine 5) are more efficient in electrocatalysis of proton reduction than their sulfur analogues 2 and 4 with increasing concentrations of pTsOH. Molecular dyad 1 containing a peri-substituted naphthalene dithiolate Fe2(CO)6 cluster covalently...
[FeFe]-hydrogenases are powerful hydrogen evolution biocatalysts because of the activity of their un...
AbstractSynthesis and characterization of a novel type of ambident bridging ligands joining together...
A biomimetic model complex of the [FeFe]-hydrogenase active site (FeFeOH) with an ethylene bridge an...
International audienceEight dithiolato-, diselenolato-, and mixed S,Se-Fe 2 (CO) 6 complexes based o...
Eight dithiolato-, diselenolato-, and mixed S,Se-Fe<sub>2</sub>(CO)<sub>6</sub> complexes based on <...
[FeFe]-hydrogenase plays an important role in the microbial energy metabolism, catalysing the reduct...
A global hydrogen economy could ensure environmentally sustainable, safe and cost-efficient renewabl...
[FeFe]-Hydrogenases (H2ases) are metalloenzymes that can catalyze the reversible reduction of proton...
Hydrogen gas is a viable, sustainable alternative to fossil fuels, but only when produced from susta...
International audienceDuring the last decade, the structure of the subsite of [FeFe]H2ases (or Fe-on...
The nature of the bridging dithiolate has an important role on tuning the physical and electrochemic...
[FeFe]-hydrogenases have attracted research for more than twenty years as paragons for the design of...
The effect of the nature of the dithiolato ligand on the physical and electrochemical properties of ...
International audience[FeFe]-hydrogenases are powerful hydrogen evolution biocatalysts because of th...
A general method for immobilization of synthetic analogues of the [FeFe]‐hydrogenase in designed pep...
[FeFe]-hydrogenases are powerful hydrogen evolution biocatalysts because of the activity of their un...
AbstractSynthesis and characterization of a novel type of ambident bridging ligands joining together...
A biomimetic model complex of the [FeFe]-hydrogenase active site (FeFeOH) with an ethylene bridge an...
International audienceEight dithiolato-, diselenolato-, and mixed S,Se-Fe 2 (CO) 6 complexes based o...
Eight dithiolato-, diselenolato-, and mixed S,Se-Fe<sub>2</sub>(CO)<sub>6</sub> complexes based on <...
[FeFe]-hydrogenase plays an important role in the microbial energy metabolism, catalysing the reduct...
A global hydrogen economy could ensure environmentally sustainable, safe and cost-efficient renewabl...
[FeFe]-Hydrogenases (H2ases) are metalloenzymes that can catalyze the reversible reduction of proton...
Hydrogen gas is a viable, sustainable alternative to fossil fuels, but only when produced from susta...
International audienceDuring the last decade, the structure of the subsite of [FeFe]H2ases (or Fe-on...
The nature of the bridging dithiolate has an important role on tuning the physical and electrochemic...
[FeFe]-hydrogenases have attracted research for more than twenty years as paragons for the design of...
The effect of the nature of the dithiolato ligand on the physical and electrochemical properties of ...
International audience[FeFe]-hydrogenases are powerful hydrogen evolution biocatalysts because of th...
A general method for immobilization of synthetic analogues of the [FeFe]‐hydrogenase in designed pep...
[FeFe]-hydrogenases are powerful hydrogen evolution biocatalysts because of the activity of their un...
AbstractSynthesis and characterization of a novel type of ambident bridging ligands joining together...
A biomimetic model complex of the [FeFe]-hydrogenase active site (FeFeOH) with an ethylene bridge an...