Graphitic carbons are suitable supports of metal nanoparticles with catalytic activity. In the present study, the preparation of N-doped graphitic carbon supporting clusters of Fe-Co alloys starting from biomass waste is reported. These sub-nanometric Co-Fe clusters supported on N-doped graphitic carbon at a metal loading below 0.2 wt % exhibit high activity for the selective hydrogenation of CO2 to CO. Operating at 500 °C and 10 bar with an H2/CO2 molar ratio of 7 and a space velocity of 600 h-1, a conversion of 56% with a selectivity of over 98% to CO, and remarkable stability over 30 h operation was obtained. Interestingly, analogous catalysts based on N-doped graphitic carbon with much higher Co-Fe loadings and an average particle size ...
Monodisperse nanoparticles (NPs) of CoFe2O4 were synthesized as efficient catalyst precursors for CO...
Atomically dispersed Fe immobilized within N-doped carbon nanosheets (Fe-SA) is successfully synthes...
10 figures, 4 tables.-- © 2020. This manuscript version is made available under the CC-BY-NC-ND 4.0 ...
Pyrolysis of chitosan containing various loadings of Co and Fe renders Co-Fe alloy nanoparticles sup...
A catalyst based on first-row Fe and Co with a record of 51% selectivity to C-C hydrocarbons at 36% ...
We report a stable and efficient Fe-Co catalyst derived from N-coordinated Co single-atom carbon (Fe...
In comparison with the Co analog, small Fe clusters incorporated in a graphene matrix exhibit a phot...
[EN] Pyrolysis of chitosan containing various loadings of Co and Fe renders Co-Fe alloy nanoparticle...
The thermo-catalytic synthesis of hydrocarbons from CO2 and H2 is of great interest for the conversi...
The conversion of CO2 into chemical fuels represents an attractive route for greenhouse gas emission...
The conversion of CO 2 into chemical fuels represents an attractive route for greenhouse gas emissio...
In comparison with the Co analog, small Fe clusters incorporated in a graphene matrix exhibit a phot...
The thermo-catalytic synthesis of hydrocarbons from CO2 and H2 is of great interest for the conversi...
Synthetic fuels produced from CO2 show promise in combating climate change. The reverse water gas sh...
[EN] Starting from the reported activity of Co-Fe nanoparticles wrapped onto graphitic carbon (Co-Fe...
Monodisperse nanoparticles (NPs) of CoFe2O4 were synthesized as efficient catalyst precursors for CO...
Atomically dispersed Fe immobilized within N-doped carbon nanosheets (Fe-SA) is successfully synthes...
10 figures, 4 tables.-- © 2020. This manuscript version is made available under the CC-BY-NC-ND 4.0 ...
Pyrolysis of chitosan containing various loadings of Co and Fe renders Co-Fe alloy nanoparticles sup...
A catalyst based on first-row Fe and Co with a record of 51% selectivity to C-C hydrocarbons at 36% ...
We report a stable and efficient Fe-Co catalyst derived from N-coordinated Co single-atom carbon (Fe...
In comparison with the Co analog, small Fe clusters incorporated in a graphene matrix exhibit a phot...
[EN] Pyrolysis of chitosan containing various loadings of Co and Fe renders Co-Fe alloy nanoparticle...
The thermo-catalytic synthesis of hydrocarbons from CO2 and H2 is of great interest for the conversi...
The conversion of CO2 into chemical fuels represents an attractive route for greenhouse gas emission...
The conversion of CO 2 into chemical fuels represents an attractive route for greenhouse gas emissio...
In comparison with the Co analog, small Fe clusters incorporated in a graphene matrix exhibit a phot...
The thermo-catalytic synthesis of hydrocarbons from CO2 and H2 is of great interest for the conversi...
Synthetic fuels produced from CO2 show promise in combating climate change. The reverse water gas sh...
[EN] Starting from the reported activity of Co-Fe nanoparticles wrapped onto graphitic carbon (Co-Fe...
Monodisperse nanoparticles (NPs) of CoFe2O4 were synthesized as efficient catalyst precursors for CO...
Atomically dispersed Fe immobilized within N-doped carbon nanosheets (Fe-SA) is successfully synthes...
10 figures, 4 tables.-- © 2020. This manuscript version is made available under the CC-BY-NC-ND 4.0 ...