[FeFe] hydrogenase (H2ase) enzymes are effective proton reduction catalysts capable of forming molecular dihydrogen with a high turnover frequency at low overpotential. The active sites of these enzymes are buried within the protein structures, and substrates required for hydrogen evolution (both protons and electrons) are shuttled to the active sites through channels from the protein surface. Metal-organic frameworks (MOFs) provide a unique platform for mimicking such enzymes due to their inherent porosity which permits substrate diffusion and their structural tunability which allows for the incorporation of multiple functional linkers. Herein, we describe the preparation and characterization of a redox-active PCN-700-based MOF (PCN = poro...
[FeFe] hydrogenases, metalloenzymes catalyzing proton/dihydrogeninterconversion, have attracted inte...
International audienceIn the quest for new, efficient, and noble-metal-free H2-evolution catalysts, ...
International audienceIn the quest for new, efficient, and noble-metal-free H2-evolution catalysts, ...
[FeFe] hydrogenase (H2ase) enzymes are effective proton reduction catalysts capable of forming molec...
Biomimetic catalysis is an important research field, as a better understanding of nature´s powerful ...
Biomimetic catalysis is an important research field, as a better understanding of nature´s powerful ...
Protein film electrochemistry (PFE) is providing cutting-edge insight into the chemical principles u...
Protein film electrochemistry (PFE) is providing cutting-edge insight into the chemical principles u...
Iron–iron hydrogenase are fascinating metallo‐enzymes able to reversibly perform interconversion bet...
The modularity and synthetic flexibility of metal–organic frameworks (MOFs) have provoked analogies ...
The modularity and synthetic flexibility of metal–organic frameworks (MOFs) have provoked analogies ...
As humans continue to rely heavily on fossil fuels for our energy sources, many scientists are resea...
[FeFe] hydrogenases, metalloenzymes catalyzing proton/dihydrogeninterconversion, have attracted inte...
International audienceIn the quest for new, efficient, and noble-metal-free H2-evolution catalysts, ...
International audienceIn the quest for new, efficient, and noble-metal-free H2-evolution catalysts, ...
[FeFe] hydrogenases, metalloenzymes catalyzing proton/dihydrogeninterconversion, have attracted inte...
International audienceIn the quest for new, efficient, and noble-metal-free H2-evolution catalysts, ...
International audienceIn the quest for new, efficient, and noble-metal-free H2-evolution catalysts, ...
[FeFe] hydrogenase (H2ase) enzymes are effective proton reduction catalysts capable of forming molec...
Biomimetic catalysis is an important research field, as a better understanding of nature´s powerful ...
Biomimetic catalysis is an important research field, as a better understanding of nature´s powerful ...
Protein film electrochemistry (PFE) is providing cutting-edge insight into the chemical principles u...
Protein film electrochemistry (PFE) is providing cutting-edge insight into the chemical principles u...
Iron–iron hydrogenase are fascinating metallo‐enzymes able to reversibly perform interconversion bet...
The modularity and synthetic flexibility of metal–organic frameworks (MOFs) have provoked analogies ...
The modularity and synthetic flexibility of metal–organic frameworks (MOFs) have provoked analogies ...
As humans continue to rely heavily on fossil fuels for our energy sources, many scientists are resea...
[FeFe] hydrogenases, metalloenzymes catalyzing proton/dihydrogeninterconversion, have attracted inte...
International audienceIn the quest for new, efficient, and noble-metal-free H2-evolution catalysts, ...
International audienceIn the quest for new, efficient, and noble-metal-free H2-evolution catalysts, ...
[FeFe] hydrogenases, metalloenzymes catalyzing proton/dihydrogeninterconversion, have attracted inte...
International audienceIn the quest for new, efficient, and noble-metal-free H2-evolution catalysts, ...
International audienceIn the quest for new, efficient, and noble-metal-free H2-evolution catalysts, ...