Two model compounds of the active site of [NiFe]-hydrogenases with an unusual {S2Ni(μ-S)(μ-CO)Fe(CO)2S}-coordination environment around the metals are reported. The neutral compound [Ni(xbsms)(μ-CO)(μ-S)Fe(CO)2(‘S’)], (1) (H2xbsms = 1,2-bis(4-mercapto-3,3-dimethyl-2-thiabutyl)benzene) is converted to [1H][BF4] by reversible protonation using HBF4·Et2O. The protonation takes place at the terminal thiolate sulfur atom that is coordinated to nickel. Catalytic intermediates with a protonated terminal cysteinate were suggested for the native protein but have not yet been confirmed experimentally. [1H][BF4] is the first dinuclear [NiFe] model compound for such a species. Both complexes have been synthesized and characterized by X-ray crystallogra...
Described are the syntheses of several Ni(μ-SR)2Fe complexes, including hydride derivatives, in a s...
International audienceIn nature, dihydrogen is catalytically produced or split by the [FeFe] and [Ni...
The development of synthetic analogs of the active sites of [NiFe] hydrogenases remains challenging ...
Two model compounds of the active site of [NiFe]-hydrogenases with an unusual {S2Ni(μ-S)(μ-CO)Fe(CO)...
Two model compounds of the active site of [NiFe]-hydrogenases with an unusual {S<sub>2</sub>Ni(μ-S)...
The hydrogenases are metalloenzymes that act to catalytically interconvert dihydrogen with protons a...
As humans continue to rely heavily on fossil fuels for our energy sources, many scientists are resea...
This thesis describes the syntheses and characterisations of heterobimetallic dithiolate complexes o...
Hydrogenases are a diverse group of metalloenzymes widespread in nature; they occur in archaea, bact...
The [NiFe] hydrogenases catalyse the reversible conversion of H2 to protons and electrons. The activ...
A new class of synthetic models for the active site of [NiFe]-hydrogenases are described. The Ni<sup...
International audienceHydrogen production through water splitting is one of the most promising solut...
Synthetic analogues and computationally assisted structure–function analyses have been used to explo...
[NiFe] hydrogenases catalyze the reversible oxidation of dihydrogen. The corresponding catalytic cyc...
Described are the syntheses of several Ni(μ-SR)2Fe complexes, including hydride derivatives, in a s...
International audienceIn nature, dihydrogen is catalytically produced or split by the [FeFe] and [Ni...
The development of synthetic analogs of the active sites of [NiFe] hydrogenases remains challenging ...
Two model compounds of the active site of [NiFe]-hydrogenases with an unusual {S2Ni(μ-S)(μ-CO)Fe(CO)...
Two model compounds of the active site of [NiFe]-hydrogenases with an unusual {S<sub>2</sub>Ni(μ-S)...
The hydrogenases are metalloenzymes that act to catalytically interconvert dihydrogen with protons a...
As humans continue to rely heavily on fossil fuels for our energy sources, many scientists are resea...
This thesis describes the syntheses and characterisations of heterobimetallic dithiolate complexes o...
Hydrogenases are a diverse group of metalloenzymes widespread in nature; they occur in archaea, bact...
The [NiFe] hydrogenases catalyse the reversible conversion of H2 to protons and electrons. The activ...
A new class of synthetic models for the active site of [NiFe]-hydrogenases are described. The Ni<sup...
International audienceHydrogen production through water splitting is one of the most promising solut...
Synthetic analogues and computationally assisted structure–function analyses have been used to explo...
[NiFe] hydrogenases catalyze the reversible oxidation of dihydrogen. The corresponding catalytic cyc...
Described are the syntheses of several Ni(μ-SR)2Fe complexes, including hydride derivatives, in a s...
International audienceIn nature, dihydrogen is catalytically produced or split by the [FeFe] and [Ni...
The development of synthetic analogs of the active sites of [NiFe] hydrogenases remains challenging ...