Nanophase carbides obtained by ball milling elemental iron and carbon powders at room temperature (mechanochemical synthesis or mechanosynthesis) are shown to be more active and selective in the hydrogenation of carbon dioxide than Fe/C mixtures and coarse-grained conventionally synthesized carbides; a positive effect is also observed for a ball-milled commercial cementite powder
Monodisperse Fe(0) nanoparticles with diameters between 1.8 and 9.0 nm were prepared from organometa...
Catalytic transformation of COx (x = 1, 2) with renewable H2 into valuable fuels and chemicals provi...
CoFe2O4 nanoparticles were synthesized as efficient catalyst precursors for CO2 hydrogenation to pro...
International audienceThe carbidization of Fe(0) nanoparticles (NPs) under syngas (CO/H2) produces c...
In this study we investigated the mechanochemical hydrogenation of carbon monoxide over nanostructur...
Fe/h-BN nanocatalysts were obtained by a combination of precipitation and high-energy ball-milling (...
International audienceThe use of magnetic nanoparticles to convert electromagnetic energy into heat ...
The quest for renewable and cleaner energy sources to meet the rapid population and economic growth ...
The hydrogenation of CO by mechanical milling under hydrogen in presence of Mg-Ni and Ti-based mater...
The thermo-catalytic synthesis of hydrocarbons from CO2 and H2 is of great interest for the conversi...
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...
Presented at the 248th National Meeting of the American Chemical Society (ACS), San Francisco, Calif...
There have been studied the catalytic properties in the reaction of CO hydrogenation of nano-catalys...
The effect of different active phases of Fe/SiO2 catalyst on the physio-chemical properties and the ...
Monodisperse Fe(0) nanoparticles with diameters between 1.8 and 9.0 nm were prepared from organometa...
Catalytic transformation of COx (x = 1, 2) with renewable H2 into valuable fuels and chemicals provi...
CoFe2O4 nanoparticles were synthesized as efficient catalyst precursors for CO2 hydrogenation to pro...
International audienceThe carbidization of Fe(0) nanoparticles (NPs) under syngas (CO/H2) produces c...
In this study we investigated the mechanochemical hydrogenation of carbon monoxide over nanostructur...
Fe/h-BN nanocatalysts were obtained by a combination of precipitation and high-energy ball-milling (...
International audienceThe use of magnetic nanoparticles to convert electromagnetic energy into heat ...
The quest for renewable and cleaner energy sources to meet the rapid population and economic growth ...
The hydrogenation of CO by mechanical milling under hydrogen in presence of Mg-Ni and Ti-based mater...
The thermo-catalytic synthesis of hydrocarbons from CO2 and H2 is of great interest for the conversi...
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...
Presented at the 248th National Meeting of the American Chemical Society (ACS), San Francisco, Calif...
There have been studied the catalytic properties in the reaction of CO hydrogenation of nano-catalys...
The effect of different active phases of Fe/SiO2 catalyst on the physio-chemical properties and the ...
Monodisperse Fe(0) nanoparticles with diameters between 1.8 and 9.0 nm were prepared from organometa...
Catalytic transformation of COx (x = 1, 2) with renewable H2 into valuable fuels and chemicals provi...
CoFe2O4 nanoparticles were synthesized as efficient catalyst precursors for CO2 hydrogenation to pro...