International audienceEnergy conversion schemes involving dihydrogen hold great potential for meeting sustainable energy needs, but widespread implementation cannot proceed without solutions that mitigate the cost of rare metal catalysts and the O 2 instability of biological and bioinspired replacements. Recently, thick films (>100 μm) of redox polymers were shown to prevent O 2 catalyst damage but also resulted in unnecessary catalyst load and mass transport limitations. Here we apply novel homogeneous thin films (down to 3 μm) that provide protection from O 2 while achieving highly efficient catalyst utilization. Our empirical data are explained by modeling, demonstrating that resistance to O 2 inactivation can be obtained for nonlimiting...
Hydrogenases are oxygen-sensitive enzymes that catalyze the conversion between protons and hydrogen....
Protein film electrochemistry (PFE) is providing cutting-edge insight into the chemical principles u...
Dans la nature, la réduction de l'oxygène et l'oxydation de l'hydrogène sont catalysées par des enzy...
International audienceEnergy conversion schemes involving dihydrogen hold great potential for meetin...
International audience(Abstract Image)The use of synthetic inorganic complexes as supported catalyst...
International audienceRedox catalysts, including hydrogenases, can be embedded into lms made of redo...
The use of synthetic inorganic complexes as supported catalysts is a key route in energy production ...
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...
Variants of the highly active [NiFeSe] hydrogenase from D. vulgaris Hildenborough that exhibit enhan...
Hydrogenases are structurally complex enzymes that catalyse the production and oxidation of H2 in a ...
Nature has developed an impressive repertoire of metal-based enzymes that perform complex chemical r...
International audienceO2, which is abundant and environmentally benign, is the ideal green oxidant f...
In dieser Arbeit werden polymere Matrizen entworfen, um Hydrogenasen und bioinspirierte Katalysatore...
Protein film electrochemistry (PFE) is providing cutting-edge insight into the chemical principles u...
Hydrogenases are oxygen-sensitive enzymes that catalyze the conversion between protons and hydrogen....
Protein film electrochemistry (PFE) is providing cutting-edge insight into the chemical principles u...
Dans la nature, la réduction de l'oxygène et l'oxydation de l'hydrogène sont catalysées par des enzy...
International audienceEnergy conversion schemes involving dihydrogen hold great potential for meetin...
International audience(Abstract Image)The use of synthetic inorganic complexes as supported catalyst...
International audienceRedox catalysts, including hydrogenases, can be embedded into lms made of redo...
The use of synthetic inorganic complexes as supported catalysts is a key route in energy production ...
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...
Variants of the highly active [NiFeSe] hydrogenase from D. vulgaris Hildenborough that exhibit enhan...
Hydrogenases are structurally complex enzymes that catalyse the production and oxidation of H2 in a ...
Nature has developed an impressive repertoire of metal-based enzymes that perform complex chemical r...
International audienceO2, which is abundant and environmentally benign, is the ideal green oxidant f...
In dieser Arbeit werden polymere Matrizen entworfen, um Hydrogenasen und bioinspirierte Katalysatore...
Protein film electrochemistry (PFE) is providing cutting-edge insight into the chemical principles u...
Hydrogenases are oxygen-sensitive enzymes that catalyze the conversion between protons and hydrogen....
Protein film electrochemistry (PFE) is providing cutting-edge insight into the chemical principles u...
Dans la nature, la réduction de l'oxygène et l'oxydation de l'hydrogène sont catalysées par des enzy...