A powerful approach for studying hydrogenases, applying a suite of dynamic electrochemical techniques known as protein film electrochemistry, is trailblazing fresh discoveries and providing a wealth of quantitative data on these complex enzymes. The information now stemming from experiments on tiny quantities of hydrogenases ranges from their kinetics and catalytic bias (a preference to operate in H(2) oxidation vs. H(2) production) to wide differences in the ways they react with oxygen and other inhibitors. Tolerance of hydrogenase catalysis to oxygen is essential if organisms are to be exploited for photosynthetic hydrogen production, and is crucial in enabling aerobes to use trace H(2) as an energy source. Experiments described in this a...
A new strategy is described for comparing, quantitatively, the ability of hydrogenases to tolerate e...
The mechanism of catalytic hydrogen evolution and oxidation by Allochromatium vinosum [NiFe]-hydroge...
Electrochemical studies of hydrogenases, the biological catalysts of H2 oxidation and production, ha...
A variety of dynamic electrochemical techniques are being applied in order to learn about the proper...
This tutorial review describes studies of hydrogen production and oxidation by biological catalysts-...
Protein film electrochemistry (PFE) is providing cutting-edge insight into the chemical principles u...
This tutorial review decribes studies of hydrogen production and oxidation by biological catalysts -...
Protein film electrochemistry (PFE) is providing cutting-edge insight into the chemical principles u...
Hydrogenases provide an inspiration for future energy technologies. The active sites of these microb...
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...
Conspectus Many enzymes that produce or transform small molecules such as O2, H2, and CO2 embed inor...
Conspectus Many enzymes that produce or transform small molecules such as O2, H2, and CO2 embed inor...
International audienceConspectus Many enzymes that produce or transform small molecules such as O 2 ...
International audienceConspectus Many enzymes that produce or transform small molecules such as O 2 ...
A new strategy is described for comparing, quantitatively, the ability of hydrogenases to tolerate e...
The mechanism of catalytic hydrogen evolution and oxidation by Allochromatium vinosum [NiFe]-hydroge...
Electrochemical studies of hydrogenases, the biological catalysts of H2 oxidation and production, ha...
A variety of dynamic electrochemical techniques are being applied in order to learn about the proper...
This tutorial review describes studies of hydrogen production and oxidation by biological catalysts-...
Protein film electrochemistry (PFE) is providing cutting-edge insight into the chemical principles u...
This tutorial review decribes studies of hydrogen production and oxidation by biological catalysts -...
Protein film electrochemistry (PFE) is providing cutting-edge insight into the chemical principles u...
Hydrogenases provide an inspiration for future energy technologies. The active sites of these microb...
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...
Conspectus Many enzymes that produce or transform small molecules such as O2, H2, and CO2 embed inor...
Conspectus Many enzymes that produce or transform small molecules such as O2, H2, and CO2 embed inor...
International audienceConspectus Many enzymes that produce or transform small molecules such as O 2 ...
International audienceConspectus Many enzymes that produce or transform small molecules such as O 2 ...
A new strategy is described for comparing, quantitatively, the ability of hydrogenases to tolerate e...
The mechanism of catalytic hydrogen evolution and oxidation by Allochromatium vinosum [NiFe]-hydroge...
Electrochemical studies of hydrogenases, the biological catalysts of H2 oxidation and production, ha...