Cu-Al spinet oxide is a highly active catalyst for CO2 conversion to CO. However, it suffers from low surface area. By depositing a silica layer, we protected the catalyst surface and preserved the Cu2+ ions during the calcination process. These ions form well-dispersed Cu sites which participate in the reaction
Iron-based CO2 catalysts have shown promise as a viable route to the production of olefins from CO2 ...
ABSTRACT: Co3O4 is an attractive earth-abundant catalyst for CO oxidation, and its high catalytic ac...
Developing an efficient catalyst for the electrocatalytic CO2 reduction reaction (CO2RR) is highly d...
CO2 catalytic conversion to CO would likely be an important part of CO2 mitigation and utilization. ...
CO2 catalytic hydrogenation to CO will likely be an important part of CO2 mitigation and valorizatio...
Due to the complexity of the structure–activity relationship of the CuAl2O4 spinel catalyst, optimiz...
CO oxidation, one of the most important chemical reactions, has been commonly studied in both academ...
Powder and structured catalysts based on CuO–CeO2 nanoparticles dispersed on different silica are st...
The effect of the support on the formation of the Cu-CeO2 interface and its thermal stability afte...
A multi-technique analytical approach has been used to show that carbonaceous material entrapped in ...
Cu–Co-based model catalysts were prepared by a sophisticated alkali-free synthesis method and tested...
Catalysts have been used for decades to produce various materials on a large scale. A good catalyst ...
The selective partial oxidation of methane to methanol remains a great challenge in the field of cat...
Copper-based silica is a promising catalyst for several reaction pathways for CO2 conversion to hydr...
Carbon dioxide electroreduction in aqueous media using Cu catalysts can generate many different C2 a...
Iron-based CO2 catalysts have shown promise as a viable route to the production of olefins from CO2 ...
ABSTRACT: Co3O4 is an attractive earth-abundant catalyst for CO oxidation, and its high catalytic ac...
Developing an efficient catalyst for the electrocatalytic CO2 reduction reaction (CO2RR) is highly d...
CO2 catalytic conversion to CO would likely be an important part of CO2 mitigation and utilization. ...
CO2 catalytic hydrogenation to CO will likely be an important part of CO2 mitigation and valorizatio...
Due to the complexity of the structure–activity relationship of the CuAl2O4 spinel catalyst, optimiz...
CO oxidation, one of the most important chemical reactions, has been commonly studied in both academ...
Powder and structured catalysts based on CuO–CeO2 nanoparticles dispersed on different silica are st...
The effect of the support on the formation of the Cu-CeO2 interface and its thermal stability afte...
A multi-technique analytical approach has been used to show that carbonaceous material entrapped in ...
Cu–Co-based model catalysts were prepared by a sophisticated alkali-free synthesis method and tested...
Catalysts have been used for decades to produce various materials on a large scale. A good catalyst ...
The selective partial oxidation of methane to methanol remains a great challenge in the field of cat...
Copper-based silica is a promising catalyst for several reaction pathways for CO2 conversion to hydr...
Carbon dioxide electroreduction in aqueous media using Cu catalysts can generate many different C2 a...
Iron-based CO2 catalysts have shown promise as a viable route to the production of olefins from CO2 ...
ABSTRACT: Co3O4 is an attractive earth-abundant catalyst for CO oxidation, and its high catalytic ac...
Developing an efficient catalyst for the electrocatalytic CO2 reduction reaction (CO2RR) is highly d...