[FeFe] hydrogenase enzymes can reversibly catalyze the conversion of protons into molecular hydrogen. The active site of the [FeFe] hydrogenase enzyme is buried inside the protein. The transport of electrons and protons to the active site of the protein is crucial for an efficient catalytic cycle. A chain of iron-sulfur cubane cofactors forms a pathway for the electron transfer in these [FeFe] hydrogenases. We have studied the electron transfer process via the iron-sulfur clusters in the enzyme using classical molecular dynamics simulations. Our simulations show that the protein matrix acts as a porous medium for the transport of water molecules in and out during the electron transfer process. When an electron is transferred through the pat...
To better understand the proton transport through the H<sub>2</sub> production catalysts, the [FeFe]...
[FeFe] hydrogenase (H2ase) enzymes are effective proton reduction catalysts capable of forming molec...
[FeFe] hydrogenase (H2ase) enzymes are effective proton reduction catalysts capable of forming molec...
Hydrogenase enzymes are natural biocatalysts that might be harnessed to reduce the cost of hydrogen ...
Biohydrogen is a versatile energy carrier for the generation of electric energy from renewable sourc...
AbstractPossible proton transport pathways in Clostridium pasteurianum (CpI) [FeFe]-hydrogenase were...
Hydrogenase enzymes are being used in enzymatic fuel cells immobilized on a graphite or carbon elect...
Hydrogenase enzymes are being used in enzymatic fuel cells immobilized on a graphite or carbon elect...
FeFe hydrogenases are the most efficient H2-producing enzymes. However, inactivation by O2 remains a...
AbstractProton transfer to the [Fe―Fe]H sub-cluster in the Desulfovibrio desulfuricans (DdH) and Clo...
International audienceFeFe hydrogenases are the most efficient H$_2$-producing enzymes. However, ina...
AbstractStructural, energetic, and dynamical studies of Azotobacter vinelandii ferredoxin I are pres...
[FeFe] hydrogenases, metalloenzymes catalyzing proton/dihydrogeninterconversion, have attracted inte...
International audience[NiFe]-hydrogenases catalyse the cleavage of molecular hydrogen into protons a...
Fe-only hydrogenases are enzymes that catalyze dihydrogen production or oxidation, due to the presen...
To better understand the proton transport through the H<sub>2</sub> production catalysts, the [FeFe]...
[FeFe] hydrogenase (H2ase) enzymes are effective proton reduction catalysts capable of forming molec...
[FeFe] hydrogenase (H2ase) enzymes are effective proton reduction catalysts capable of forming molec...
Hydrogenase enzymes are natural biocatalysts that might be harnessed to reduce the cost of hydrogen ...
Biohydrogen is a versatile energy carrier for the generation of electric energy from renewable sourc...
AbstractPossible proton transport pathways in Clostridium pasteurianum (CpI) [FeFe]-hydrogenase were...
Hydrogenase enzymes are being used in enzymatic fuel cells immobilized on a graphite or carbon elect...
Hydrogenase enzymes are being used in enzymatic fuel cells immobilized on a graphite or carbon elect...
FeFe hydrogenases are the most efficient H2-producing enzymes. However, inactivation by O2 remains a...
AbstractProton transfer to the [Fe―Fe]H sub-cluster in the Desulfovibrio desulfuricans (DdH) and Clo...
International audienceFeFe hydrogenases are the most efficient H$_2$-producing enzymes. However, ina...
AbstractStructural, energetic, and dynamical studies of Azotobacter vinelandii ferredoxin I are pres...
[FeFe] hydrogenases, metalloenzymes catalyzing proton/dihydrogeninterconversion, have attracted inte...
International audience[NiFe]-hydrogenases catalyse the cleavage of molecular hydrogen into protons a...
Fe-only hydrogenases are enzymes that catalyze dihydrogen production or oxidation, due to the presen...
To better understand the proton transport through the H<sub>2</sub> production catalysts, the [FeFe]...
[FeFe] hydrogenase (H2ase) enzymes are effective proton reduction catalysts capable of forming molec...
[FeFe] hydrogenase (H2ase) enzymes are effective proton reduction catalysts capable of forming molec...