International audience(Abstract Image)The use of synthetic inorganic complexes as supported catalysts is a key route in energy production and in industrial synthesis. However, their intrinsic oxygen sensitivity is sometimes an issue. Some of us have recently demonstrated that hydrogenases, the fragile but very efficient biological catalysts of H2 oxidation, can be protected from O2 damage upon integration into a film of a specifically designed redox polymer. Catalytic oxidation of H2 produces electrons which reduce oxygen near the film/solution interface, thus providing a self-activated protection from oxygen [Plumeré et al., Nat Chem. 2014, 6, 822–827]. Here, we rationalize this protection mechanism by examining the time-dependent distribu...
Polymerization reactions initiated at a surface or interface constitute a class of problems in which...
The immobilization, protection, and electrical wiring of sensitive catalysts by specifically designe...
International audienceAn artificial amyloid-based redox hydrogel was designed for mediating electron...
International audience(Abstract Image)The use of synthetic inorganic complexes as supported catalyst...
The use of synthetic inorganic complexes as supported catalysts is a key route in energy production ...
International audienceRedox catalysts, including hydrogenases, can be embedded into lms made of redo...
International audienceEnergy conversion schemes involving dihydrogen hold great potential for meetin...
In dieser Arbeit werden polymere Matrizen entworfen, um Hydrogenasen und bioinspirierte Katalysatore...
Efficient electrocatalytic energy conversion requires devices to function reversibly, that is, to de...
Hydrogenases catalyse the reversible oxidation and production of H₂. They have been the subject of i...
Recent packaging breakthroughs have demonstrated that placing a small amount of highly efficient oxy...
Using viologen-based redox polymers to wire a variety of different hydrogenases to electrodes and ga...
Protein film electrochemistry (PFE) is providing cutting-edge insight into the chemical principles u...
The immobilization, protection, and electrical wiring of sensitive catalysts by specifically designe...
Protein film electrochemistry (PFE) is providing cutting-edge insight into the chemical principles u...
Polymerization reactions initiated at a surface or interface constitute a class of problems in which...
The immobilization, protection, and electrical wiring of sensitive catalysts by specifically designe...
International audienceAn artificial amyloid-based redox hydrogel was designed for mediating electron...
International audience(Abstract Image)The use of synthetic inorganic complexes as supported catalyst...
The use of synthetic inorganic complexes as supported catalysts is a key route in energy production ...
International audienceRedox catalysts, including hydrogenases, can be embedded into lms made of redo...
International audienceEnergy conversion schemes involving dihydrogen hold great potential for meetin...
In dieser Arbeit werden polymere Matrizen entworfen, um Hydrogenasen und bioinspirierte Katalysatore...
Efficient electrocatalytic energy conversion requires devices to function reversibly, that is, to de...
Hydrogenases catalyse the reversible oxidation and production of H₂. They have been the subject of i...
Recent packaging breakthroughs have demonstrated that placing a small amount of highly efficient oxy...
Using viologen-based redox polymers to wire a variety of different hydrogenases to electrodes and ga...
Protein film electrochemistry (PFE) is providing cutting-edge insight into the chemical principles u...
The immobilization, protection, and electrical wiring of sensitive catalysts by specifically designe...
Protein film electrochemistry (PFE) is providing cutting-edge insight into the chemical principles u...
Polymerization reactions initiated at a surface or interface constitute a class of problems in which...
The immobilization, protection, and electrical wiring of sensitive catalysts by specifically designe...
International audienceAn artificial amyloid-based redox hydrogel was designed for mediating electron...