The special properties of O 2-tolerant [NiFe]-hydrogenases make it possible, in principle, to operate all-enzyme hydrogen fuel cells. These devices show unusual power characteristics, as revealed in a series of experiments in which the O 2-tolerant hydrogenase (Hyd-1) from Escherichia coli is used as H 2-oxidation catalyst (anode) and a bilirubin oxidase is used as O 2-reduction catalyst (cathode). In a fuel cell adaptable for variable fuel and oxidant supply, three limiting conditions were examined: (1) the anode and cathode separated by a Nafion membrane and 100% H 2 and 100% O 2 fed to the separa...
Many hydrogenases are highly electroactive when attached to an electrode, and most exhibit reversibl...
Many hydrogenases are highly electroactive when attached to an electrode, and most exhibit reversibl...
Many hydrogenases are highly electroactive when attached to an electrode, and most exhibit reversibl...
Hydrogenases catalyse the reversible oxidation and production of H₂. They have been the subject of i...
Hydrogenases catalyse the reversible oxidation and production of H₂. They have been the subject of i...
The unusual ability of O2-tolerant hydrogenases (H 2ase) to produce electricity from a H2-air mixtur...
The unusual ability of O2-tolerant hydrogenases (H 2ase) to produce electricity from a H2-air mixtur...
International audienceIntensive research during the last 15 years on mechanistic understanding of hy...
International audienceIntensive research during the last 15 years on mechanistic understanding of hy...
International audienceIntensive research during the last 15 years on mechanistic understanding of hy...
Hydrogenases provide an inspiration for future energy technologies. The active sites of these microb...
Many hydrogenases are highly electroactive when attached to an electrode, and most exhibit reversibl...
Many hydrogenases are highly electroactive when attached to an electrode, and most exhibit reversibl...
Many hydrogenases are highly electroactive when attached to an electrode, and most exhibit reversibl...
Many hydrogenases are highly electroactive when attached to an electrode, and most exhibit reversibl...
Many hydrogenases are highly electroactive when attached to an electrode, and most exhibit reversibl...
Many hydrogenases are highly electroactive when attached to an electrode, and most exhibit reversibl...
Many hydrogenases are highly electroactive when attached to an electrode, and most exhibit reversibl...
Hydrogenases catalyse the reversible oxidation and production of H₂. They have been the subject of i...
Hydrogenases catalyse the reversible oxidation and production of H₂. They have been the subject of i...
The unusual ability of O2-tolerant hydrogenases (H 2ase) to produce electricity from a H2-air mixtur...
The unusual ability of O2-tolerant hydrogenases (H 2ase) to produce electricity from a H2-air mixtur...
International audienceIntensive research during the last 15 years on mechanistic understanding of hy...
International audienceIntensive research during the last 15 years on mechanistic understanding of hy...
International audienceIntensive research during the last 15 years on mechanistic understanding of hy...
Hydrogenases provide an inspiration for future energy technologies. The active sites of these microb...
Many hydrogenases are highly electroactive when attached to an electrode, and most exhibit reversibl...
Many hydrogenases are highly electroactive when attached to an electrode, and most exhibit reversibl...
Many hydrogenases are highly electroactive when attached to an electrode, and most exhibit reversibl...
Many hydrogenases are highly electroactive when attached to an electrode, and most exhibit reversibl...
Many hydrogenases are highly electroactive when attached to an electrode, and most exhibit reversibl...
Many hydrogenases are highly electroactive when attached to an electrode, and most exhibit reversibl...
Many hydrogenases are highly electroactive when attached to an electrode, and most exhibit reversibl...