International audienceOver the last 15 years, a plethora of research has provided major insights into the structure and function of hydrogenase enzymes. This has led to the important development of chemical models that mimic the inorganic enzymatic co-factors, which in turn has further contributed to the understanding of the specific molecular features of these natural systems that facilitate such large and robust enzyme activities. More recently, efforts have been made to generate guest–host models and artificial hydrogenases, through the incorporation of transition metal-catalysts (guests) into various hosts. This adds a new layer of complexity to hydrogenase-like catalytic systems that allows for better tuning of their activity through m...
Hydrogen gas is used extensively in industry today and is often put forward as a suitable energy car...
[FeFe]-hydrogenases are powerful hydrogen evolution biocatalysts because of the activity of their un...
International audience[FeFe]-hydrogenases are powerful hydrogen evolution biocatalysts because of th...
International audienceOver the last 15 years, a plethora of research has provided major insights int...
International audienceThere is an urgent need for cheap, abundant and efficient catalysts as an alte...
International audienceCONSPECTUS: Water splitting into oxygen and hydrogen is one of the most attrac...
Biomimetic catalysis is an important research field, as a better understanding of nature´s powerful ...
[Fe]‐hydrogenase is an efficient biological hydrogenation catalyst. Despite intense research, Fe com...
Nature carefully selects specific metal ions for incorporation into the enzymes that catalyse the ch...
ConspectusWater splitting into oxygen and hydrogen is one of the most attractive strategies for stor...
International audienceHydrogenases are the most active molecular catalysts for hydrogen production a...
Hydrogen gas is used extensively in industry today and is often put forward as a suitable energy car...
[FeFe]-hydrogenases are powerful hydrogen evolution biocatalysts because of the activity of their un...
International audience[FeFe]-hydrogenases are powerful hydrogen evolution biocatalysts because of th...
International audienceOver the last 15 years, a plethora of research has provided major insights int...
International audienceThere is an urgent need for cheap, abundant and efficient catalysts as an alte...
International audienceCONSPECTUS: Water splitting into oxygen and hydrogen is one of the most attrac...
Biomimetic catalysis is an important research field, as a better understanding of nature´s powerful ...
[Fe]‐hydrogenase is an efficient biological hydrogenation catalyst. Despite intense research, Fe com...
Nature carefully selects specific metal ions for incorporation into the enzymes that catalyse the ch...
ConspectusWater splitting into oxygen and hydrogen is one of the most attractive strategies for stor...
International audienceHydrogenases are the most active molecular catalysts for hydrogen production a...
Hydrogen gas is used extensively in industry today and is often put forward as a suitable energy car...
[FeFe]-hydrogenases are powerful hydrogen evolution biocatalysts because of the activity of their un...
International audience[FeFe]-hydrogenases are powerful hydrogen evolution biocatalysts because of th...