Hydrogenases with Ni- and/or Fe-based active sites are highly active hydrogen oxidation catalysts with activities similar to those of noble metal catalysts. However, the activity is connected to a sensitivity towards high-potential deactivation and oxygen damage. Here we report a fully protected polymer multilayer/hydrogenase-based bioanode in which the sensitive hydrogen oxidation catalyst is protected from high-potential deactivation and from oxygen damage by using a polymer multilayer architecture. The active catalyst is embedded in a low-potential polymer (protection from high-potential deactivation) and covered with a polymer-supported bienzymatic oxygen removal system. In contrast to previously reported polymer-based protection system...
International audienceEnergy conversion schemes involving dihydrogen hold great potential for meetin...
International audienceEfficient electrocatalytic energy conversion requires the devices to function ...
Photosystem I (PSI) is combined with Desulfovibrio gigas hydrogenase for the bioelectrocatalytic pho...
Hydrogenases with Ni- and/or Fe-based active sites are highly active hydrogen oxidation catalysts wi...
Hydrogen is one of the most promising alternatives for fossil fuels. However, the power output of hy...
The incorporation of highly active but also highly sensitive catalysts (e.g. the [FeFe] hydrogenase ...
The incorporation of highly active but also highly sensitive catalysts (e.g. the [FeFe] hydrogenase ...
The incorporation of highly active but also highly sensitive catalysts (e.g. the [FeFe] hydrogenase ...
Variants of the highly active [NiFeSe] hydrogenase from D. vulgaris Hildenborough that exhibit enhan...
Using viologen-based redox polymers to wire a variety of different hydrogenases to electrodes and ga...
In dieser Arbeit werden polymere Matrizen entworfen, um Hydrogenasen und bioinspirierte Katalysatore...
The special properties of O 2-tolerant [NiFe]-hydrogenases make it possible,...
International audienceRedox catalysts, including hydrogenases, can be embedded into lms made of redo...
Hydrogenases catalyse the reversible oxidation and production of H₂. They have been the subject of i...
PhotosystemI (PSI) is combined with Desulfovibrio gigas hydrogenase for the bioelectrocatalytic phot...
International audienceEnergy conversion schemes involving dihydrogen hold great potential for meetin...
International audienceEfficient electrocatalytic energy conversion requires the devices to function ...
Photosystem I (PSI) is combined with Desulfovibrio gigas hydrogenase for the bioelectrocatalytic pho...
Hydrogenases with Ni- and/or Fe-based active sites are highly active hydrogen oxidation catalysts wi...
Hydrogen is one of the most promising alternatives for fossil fuels. However, the power output of hy...
The incorporation of highly active but also highly sensitive catalysts (e.g. the [FeFe] hydrogenase ...
The incorporation of highly active but also highly sensitive catalysts (e.g. the [FeFe] hydrogenase ...
The incorporation of highly active but also highly sensitive catalysts (e.g. the [FeFe] hydrogenase ...
Variants of the highly active [NiFeSe] hydrogenase from D. vulgaris Hildenborough that exhibit enhan...
Using viologen-based redox polymers to wire a variety of different hydrogenases to electrodes and ga...
In dieser Arbeit werden polymere Matrizen entworfen, um Hydrogenasen und bioinspirierte Katalysatore...
The special properties of O 2-tolerant [NiFe]-hydrogenases make it possible,...
International audienceRedox catalysts, including hydrogenases, can be embedded into lms made of redo...
Hydrogenases catalyse the reversible oxidation and production of H₂. They have been the subject of i...
PhotosystemI (PSI) is combined with Desulfovibrio gigas hydrogenase for the bioelectrocatalytic phot...
International audienceEnergy conversion schemes involving dihydrogen hold great potential for meetin...
International audienceEfficient electrocatalytic energy conversion requires the devices to function ...
Photosystem I (PSI) is combined with Desulfovibrio gigas hydrogenase for the bioelectrocatalytic pho...