Previously, we reported a strong Fe-Cu synergy in CO2 hydrogenation to olefin-rich C2+ hydrocarbons over the γ-Al2O3 supported bimetallic Fe-Cu catalysts. In this work, we aimed to clarify such a synergy by investigating the catalyst structure, Fe-Cu interaction, and catalyst surface properties through a series of characterizations. H2-TPR results showed that the addition of Cu made both Fe and Cu easier to reduce via the strong interaction between Fe and Cu. It was further confirmed by X-ray absorption spectroscopy (XAS) and TEM, which showed the presence of metallic Fe and Fe-Cu alloy phases in the reduced Fe-Cu(0.17) catalyst induced by Cu addition. By correlating TPD results with the reaction performance, we found that the addition of C...
Selective CO2 hydrogenation to light olefins over Fe−Co/K−Al2O3 catalysts was enhanced by tuning bon...
Hydrogenation into light olefins is an attractive strategy for CO2fixation into chemicals. In this a...
CO hydrogenation to higher alcohols (C<sub>2+</sub>OH) provides a promising route to convert coal, n...
Conversion of CO<sub>2</sub> to sustainable chemical feedstocks and fuels by reacting with renewable...
Iron-based CO2 catalysts have shown promise as a viable route to the production of olefins from CO2 ...
The performances of representative Co-based and Fe-based Fischer-Tropsch catalysts have been compara...
Alkali metal K- and/or Na-promoted FeCoCuAl catalysts were synthesized by precipitation and impregna...
AbstractThe hydrogenation of carbon dioxide over the catalyst comprised of Fe and Cu (Fe-Cu catalyst...
The conversion of CO2 to value-added products such as olefins is one of the suggested strategies in ...
The conversion of CO2 to value-added products such as olefins is one of the suggested strategies in ...
Currently, Fe-based catalysts are a highly promising option for CO2 hydrogenation to produce hydroca...
Fe, Co, Ni and Cu are the main non-noble industrially significant catalysts in the CO2 and CO gas ph...
Selective CO2 hydrogenation to light olefins over Fe−Co/K−Al2O3 catalysts was enhanced by tuning bon...
Density functional theory (DFT) calculations were carried out to investigate Fe–Cu bimetallic cataly...
International audienceIn this presentation, Mn-promoted Na-CuFeO2 catalysts were prepared with a two...
Selective CO2 hydrogenation to light olefins over Fe−Co/K−Al2O3 catalysts was enhanced by tuning bon...
Hydrogenation into light olefins is an attractive strategy for CO2fixation into chemicals. In this a...
CO hydrogenation to higher alcohols (C<sub>2+</sub>OH) provides a promising route to convert coal, n...
Conversion of CO<sub>2</sub> to sustainable chemical feedstocks and fuels by reacting with renewable...
Iron-based CO2 catalysts have shown promise as a viable route to the production of olefins from CO2 ...
The performances of representative Co-based and Fe-based Fischer-Tropsch catalysts have been compara...
Alkali metal K- and/or Na-promoted FeCoCuAl catalysts were synthesized by precipitation and impregna...
AbstractThe hydrogenation of carbon dioxide over the catalyst comprised of Fe and Cu (Fe-Cu catalyst...
The conversion of CO2 to value-added products such as olefins is one of the suggested strategies in ...
The conversion of CO2 to value-added products such as olefins is one of the suggested strategies in ...
Currently, Fe-based catalysts are a highly promising option for CO2 hydrogenation to produce hydroca...
Fe, Co, Ni and Cu are the main non-noble industrially significant catalysts in the CO2 and CO gas ph...
Selective CO2 hydrogenation to light olefins over Fe−Co/K−Al2O3 catalysts was enhanced by tuning bon...
Density functional theory (DFT) calculations were carried out to investigate Fe–Cu bimetallic cataly...
International audienceIn this presentation, Mn-promoted Na-CuFeO2 catalysts were prepared with a two...
Selective CO2 hydrogenation to light olefins over Fe−Co/K−Al2O3 catalysts was enhanced by tuning bon...
Hydrogenation into light olefins is an attractive strategy for CO2fixation into chemicals. In this a...
CO hydrogenation to higher alcohols (C<sub>2+</sub>OH) provides a promising route to convert coal, n...