Biohybrid technologies like semiartificial photosynthesis are attracting increased attention, as they enable the combination of highly efficient synthetic light-harvesters with the self-healing and outstanding performance of biocatalysis. However, such systems are intrinsically complex, with multiple interacting components. Herein, we explore a whole-cell photocatalytic system for hydrogen (H2) gas production as a model system for semiartificial photosynthesis. The employed whole-cell photo catalytic system is based on Escherichia coli cells heterologously expressing a highly efficient, but oxygen-sensitive, [FeFe] hydrogenase. The system is driven by the organic photosensitizer eosin Y under broad-spectrum white light illumination. The dir...
Biohydrogen is a potentially useful product of microbial energy metabolism. One approach to engineer...
International audienceIn the enzyme FeFe hydrogenase, hydrogen oxidation and production occur at the...
AbstractBiohydrogen is a potentially useful product of microbial energy metabolism. One approach to ...
Biohybrid technologies like semiartificial photosynthesis are attracting increased attention, as the...
Both photo- and biocatalysis are well-established andintensivelystudied. The combination of these tw...
[FeFe] hydrogenases rare Nature’s best H2-processing catalysts, and one of the best candidates to sa...
[FeFe]-Hydrogenases are hydrogen producing metalloenzymes with excellent catalytic capacities, highl...
Hydrogen (H2) is a promising future chemical energy carrier and feedstock with several renewable pro...
Background FeFe-hydrogenases are the most active class of H2-producing enzymes known in nature and ...
Background: Solar energy is the ultimate energy source on the Earth. The conversion of solar energy ...
Hydrogen is considered one of the key enablers of the transition towards a sustainable and net-zero ...
A global hydrogen economy could ensure environmentally sustainable, safe and cost-efficient renewabl...
Abstract Background Solar energy is the ultimate energy source on the Earth. The conversion of solar...
International audienceThe conversion of solar energy into hydrogen represents a highly attractive st...
Artificial photosynthesis—the direct photochemical generation of hydrogen from water—is a promising ...
Biohydrogen is a potentially useful product of microbial energy metabolism. One approach to engineer...
International audienceIn the enzyme FeFe hydrogenase, hydrogen oxidation and production occur at the...
AbstractBiohydrogen is a potentially useful product of microbial energy metabolism. One approach to ...
Biohybrid technologies like semiartificial photosynthesis are attracting increased attention, as the...
Both photo- and biocatalysis are well-established andintensivelystudied. The combination of these tw...
[FeFe] hydrogenases rare Nature’s best H2-processing catalysts, and one of the best candidates to sa...
[FeFe]-Hydrogenases are hydrogen producing metalloenzymes with excellent catalytic capacities, highl...
Hydrogen (H2) is a promising future chemical energy carrier and feedstock with several renewable pro...
Background FeFe-hydrogenases are the most active class of H2-producing enzymes known in nature and ...
Background: Solar energy is the ultimate energy source on the Earth. The conversion of solar energy ...
Hydrogen is considered one of the key enablers of the transition towards a sustainable and net-zero ...
A global hydrogen economy could ensure environmentally sustainable, safe and cost-efficient renewabl...
Abstract Background Solar energy is the ultimate energy source on the Earth. The conversion of solar...
International audienceThe conversion of solar energy into hydrogen represents a highly attractive st...
Artificial photosynthesis—the direct photochemical generation of hydrogen from water—is a promising ...
Biohydrogen is a potentially useful product of microbial energy metabolism. One approach to engineer...
International audienceIn the enzyme FeFe hydrogenase, hydrogen oxidation and production occur at the...
AbstractBiohydrogen is a potentially useful product of microbial energy metabolism. One approach to ...