Summarization: In this work we report on the combined impact of active phase nature (M: Co or Cu) and ceria nanoparticles support morphology (nanorods (NR) or nanocubes (NC)) on the physicochemical characteristics and CO2 hydrogenation performance of M/CeO2 composites at atmospheric pressure. It was found that CO2 conversion followed the order: Co/CeO2 > Cu/CeO2 > CeO2, independently of the support morphology. Co/CeO2 catalysts demonstrated the highest CO2 conversion (92% at 450◦ C), accompanied by 93% CH4 selectivity. On the other hand, Cu/CeO2 samples were very selective for CO production, exhibiting 52% CO2 conversion and 95% CO selectivity at 380◦ C. The results obtained in a wide range of H2:CO2 ratios (1–9) and temperatures (200–500◦ ...
Summarization: CO2 hydrogenation to value added chemicals/fuels has gained considerable interest, in...
CeO2 nanorods (CeO2-nrs), CeO2 nanocubes (CeO2-ncs) and CeO2 nanopolyhedrons (CeO2-nps) were prepare...
Dry reforming of methane (DRM) is a promising way to convert methane and carbon dioxide into H2 and ...
Ceria-based oxides have been extensively involved in a wide range of catalytic applications due to t...
A series of CeO2 supported Cu, Co, and Ni catalysts have been synthesized by the wetimpregnation met...
project code: T1EDK-00094 IF/01381/2013/CP1160/CT0007 UIDB/50020/2020 UIDB/50006/2020Nickel particle...
The performance of supported metal catalysts can depend on many factors, including metal particle si...
A series of CeO2 supported Cu, Co, and Ni catalysts have been synthesized by the wet-impregnation ...
The CO2 methanation reaction often attracts attention in the energy sector, since combined water ele...
The particle size of CeO2 was controlled to study the selectivity toward CO production in CO2 hydrog...
Despite of the huge number of papers about the catalytic preferential oxidation of CO (CO-PROX) for ...
CeO2 nanooctahedrons, nanorods, and nanocubes were prepared by the hydrothermal method and were then...
Small nanoparticles of ceria deposited on a powder of CuO display a very high selectivity for the pr...
In this study, ceria (CeO2) with three different shapes (nanooctahedra, nanocubes, nanorods) was syn...
CuO/CeO2 catalysts where the support has different nanoparticle shapes exposing different lattice pl...
Summarization: CO2 hydrogenation to value added chemicals/fuels has gained considerable interest, in...
CeO2 nanorods (CeO2-nrs), CeO2 nanocubes (CeO2-ncs) and CeO2 nanopolyhedrons (CeO2-nps) were prepare...
Dry reforming of methane (DRM) is a promising way to convert methane and carbon dioxide into H2 and ...
Ceria-based oxides have been extensively involved in a wide range of catalytic applications due to t...
A series of CeO2 supported Cu, Co, and Ni catalysts have been synthesized by the wetimpregnation met...
project code: T1EDK-00094 IF/01381/2013/CP1160/CT0007 UIDB/50020/2020 UIDB/50006/2020Nickel particle...
The performance of supported metal catalysts can depend on many factors, including metal particle si...
A series of CeO2 supported Cu, Co, and Ni catalysts have been synthesized by the wet-impregnation ...
The CO2 methanation reaction often attracts attention in the energy sector, since combined water ele...
The particle size of CeO2 was controlled to study the selectivity toward CO production in CO2 hydrog...
Despite of the huge number of papers about the catalytic preferential oxidation of CO (CO-PROX) for ...
CeO2 nanooctahedrons, nanorods, and nanocubes were prepared by the hydrothermal method and were then...
Small nanoparticles of ceria deposited on a powder of CuO display a very high selectivity for the pr...
In this study, ceria (CeO2) with three different shapes (nanooctahedra, nanocubes, nanorods) was syn...
CuO/CeO2 catalysts where the support has different nanoparticle shapes exposing different lattice pl...
Summarization: CO2 hydrogenation to value added chemicals/fuels has gained considerable interest, in...
CeO2 nanorods (CeO2-nrs), CeO2 nanocubes (CeO2-ncs) and CeO2 nanopolyhedrons (CeO2-nps) were prepare...
Dry reforming of methane (DRM) is a promising way to convert methane and carbon dioxide into H2 and ...