International audienceIron–thiolate complexes of the type [Fe2(μ-bdt)(CO)6−xP(OMe3)x] (bdt=S2C6H4=benzenedithiolate, x≤2) are simplified models of iron–iron hydrogenase enzymes. Recently, we have shown that these water-insoluble organometallic complexes, when included into micelles formed by sodium dodecyl sulfate (SDS), are good catalysts for the electrochemical production of hydrogen in aqueous solutions at pH<6. We herein report that the all-CO derivative [Fe2(μ-bdt)(CO)6] (1), owing to its comparatively low reduction potential, is also a robust molecular catalyst for visible-light-driven production of H2 in aqueous SDS solutions at pH 10.5. Irradiation at λ=455 nm of a system consisting of complex 1, Eosin Y as a sensitizer, and triethy...
A biomimetic model complex of the [FeFe]-hydrogenase active site (FeFeOH) with an ethylene bridge an...
A biomimetic model complex of the [FeFe]-hydrogenase active site (FeFeOH) with an ethylene bridge an...
The transition from a fossil-based economy to a hydrogen-based economy requires cheap and abundant, ...
International audienceIron–thiolate complexes of the type [Fe2(μ-bdt)(CO)6−xP(OMe3)x] (bdt=S2C6H4=be...
International audienceSynthetic models of the active site of iron–iron hydrogenases are currently th...
International audienceThe diiron hydrogenase model Fe2(bdt)(CO)6 (1, bdt = benzenedithiolate) was di...
International audienceThe substituted iron–thiolate complex [Fe2(μ-bdt)(CO)4{P(OMe)3}2] (bdt=benzene...
Increasing global energy demands have led to renewed interest in alternative energy sources such as ...
A global hydrogen economy could ensure environmentally sustainable, safe and cost-efficient renewabl...
A series of Fe(III) complexes were recently reported that are stable and active electrocatalysts fo...
[FeFe]-Hydrogenases (H2ases) are metalloenzymes that can catalyze the reversible reduction of proton...
The need to develop a renewable technology that is capable of generating and storing the sun\u27s tr...
A biomimetic model complex of the [FeFe]-hydrogenase active site (FeFeOH) with an ethylene bridge an...
A biomimetic model complex of the [FeFe]-hydrogenase active site (FeFeOH) with an ethylene bridge an...
The transition from a fossil-based economy to a hydrogen-based economy requires cheap and abundant, ...
International audienceIron–thiolate complexes of the type [Fe2(μ-bdt)(CO)6−xP(OMe3)x] (bdt=S2C6H4=be...
International audienceSynthetic models of the active site of iron–iron hydrogenases are currently th...
International audienceThe diiron hydrogenase model Fe2(bdt)(CO)6 (1, bdt = benzenedithiolate) was di...
International audienceThe substituted iron–thiolate complex [Fe2(μ-bdt)(CO)4{P(OMe)3}2] (bdt=benzene...
Increasing global energy demands have led to renewed interest in alternative energy sources such as ...
A global hydrogen economy could ensure environmentally sustainable, safe and cost-efficient renewabl...
A series of Fe(III) complexes were recently reported that are stable and active electrocatalysts fo...
[FeFe]-Hydrogenases (H2ases) are metalloenzymes that can catalyze the reversible reduction of proton...
The need to develop a renewable technology that is capable of generating and storing the sun\u27s tr...
A biomimetic model complex of the [FeFe]-hydrogenase active site (FeFeOH) with an ethylene bridge an...
A biomimetic model complex of the [FeFe]-hydrogenase active site (FeFeOH) with an ethylene bridge an...
The transition from a fossil-based economy to a hydrogen-based economy requires cheap and abundant, ...