The urgent need to reduce CO2 emissions has motivated the development of CO2 capture and utilization technologies. An emerging application is CO2 transformation into storage chemicals for clean energy carriers. Formic acid (FA), a valuable product of CO2 reduction, is an excellent hydrogen carrier. CO2 conversion to FA, followed by H2 release from FA, are conventionally chemically catalyzed. Biocatalysts offer a highly specific and less energy-intensive alternative. CO2 conversion to formate is catalyzed by formate dehydrogenase (FDH), which usually requires a cofactor to function. Several FDHs have been incorporated in bioelectrochemical systems where formate is produced by the biocathode and the cofactor is electrochemically regenerated. ...
Hydrogen‐dependent reduction of carbon dioxide to formic acid offers a promising route to greenhouse...
Hydrogen‐dependent reduction of carbon dioxide to formic acid offers a promising route to greenhouse...
Hydrogen‐dependent reduction of carbon dioxide to formic acid offers a promising route to greenhouse...
Formic acid (FA) is a promising reservoir for hydrogen storage and distribution. Its dehydrogenation...
Recently, several formate dehydrogenases have been reported to be able to catalyze the reduction of ...
Background: Molecular hydrogen (H2) is an attractive future energy carrier to replace fossil fuels. ...
Recently, several formate dehydrogenases have been reported to be able to catalyze the reduction of ...
Electrochemical reduction of carbon dioxide (CO2) into value-added chemicals have been one of promis...
The biological formate hydrogenlyase (FHL) complex links a formate dehydrogenase (FDH) to a hydrogen...
CO2 utilization for producing value-added chemicals has recently emerged as a strategy to mitigate a...
The biological conversion of CO2 and H2 into formate offers a sustainable route to a valuable commod...
Hydrogen‐dependent reduction of carbon dioxide to formic acid offers a promising route to greenhouse...
Hydrogen‐dependent reduction of carbon dioxide to formic acid offers a promising route to greenhouse...
Hydrogen‐dependent reduction of carbon dioxide to formic acid offers a promising route to greenhouse...
Hydrogen‐dependent reduction of carbon dioxide to formic acid offers a promising route to greenhouse...
Hydrogen‐dependent reduction of carbon dioxide to formic acid offers a promising route to greenhouse...
Hydrogen‐dependent reduction of carbon dioxide to formic acid offers a promising route to greenhouse...
Hydrogen‐dependent reduction of carbon dioxide to formic acid offers a promising route to greenhouse...
Formic acid (FA) is a promising reservoir for hydrogen storage and distribution. Its dehydrogenation...
Recently, several formate dehydrogenases have been reported to be able to catalyze the reduction of ...
Background: Molecular hydrogen (H2) is an attractive future energy carrier to replace fossil fuels. ...
Recently, several formate dehydrogenases have been reported to be able to catalyze the reduction of ...
Electrochemical reduction of carbon dioxide (CO2) into value-added chemicals have been one of promis...
The biological formate hydrogenlyase (FHL) complex links a formate dehydrogenase (FDH) to a hydrogen...
CO2 utilization for producing value-added chemicals has recently emerged as a strategy to mitigate a...
The biological conversion of CO2 and H2 into formate offers a sustainable route to a valuable commod...
Hydrogen‐dependent reduction of carbon dioxide to formic acid offers a promising route to greenhouse...
Hydrogen‐dependent reduction of carbon dioxide to formic acid offers a promising route to greenhouse...
Hydrogen‐dependent reduction of carbon dioxide to formic acid offers a promising route to greenhouse...
Hydrogen‐dependent reduction of carbon dioxide to formic acid offers a promising route to greenhouse...
Hydrogen‐dependent reduction of carbon dioxide to formic acid offers a promising route to greenhouse...
Hydrogen‐dependent reduction of carbon dioxide to formic acid offers a promising route to greenhouse...
Hydrogen‐dependent reduction of carbon dioxide to formic acid offers a promising route to greenhouse...