CO2 reduction to higher value products is a promising way to produce fuels and key chemical building blocks while reducing CO2 emissions. The reaction at atmospheric pressure mainly yields CH4 via methanation and CO via the reverse water-gas shift (RWGS) reaction. Describing catalyst features that control the selectivity of these two pathways is important to determine the formation of specific products. At the same time, identification of morphological changes occurring to catalysts under reaction conditions can be crucial to tune their catalytic performance. In this contribution we investigate the dependency of selectivity for CO2 reduction on the size of Ru nanoparticles (NPs) and on support. We find that even at rather low temperatures (...
The metal-support interfaces of metallic nanoparticles supported on oxide surfaces determine the act...
Ru/CeO2 single-atom catalysts (SAC) are highly selective for the hydrogenation of CO2 to CO. In this...
Ru catalysts supported on different mesoporous silicas, MCM-41, MCM-48, SBA-15 and KIT-6, were appli...
In this study, CeO2 rods (CeO2/r), cubes (CeO2/c) and octahedra (CeO2/o) supported catalysts with id...
The CO2 methanation reaction often attracts attention in the energy sector, since combined water ele...
Utilization of CO2 through the reverse water gas shift (RWGS) reaction is a promising solution in ma...
CO<sub>2</sub> hydrogenation for the acquisition of value-added chemicals is an economical means to ...
The catalytic performance of a series of Ru/Al2O3 catalysts with Ru content in the 0.1-5% range was ...
We have investigated the impact of realistic high water contents up to 30% on the selective methanat...
CO2 collected from the outdoor atmosphere or produced in an aerospace cabin, may be recycled to pro...
Three morphology-controlled CeO2, namely nanorods (NRs), nanocubes (NCs), and nanopolyhedra (NPs), w...
The conversion of CO2 towards added valuable products is considered as a potential alternative to ac...
Supported Ru catalysts show a very high selectivity for the selective methanation of CO in CO2-rich ...
Increase in carbon dioxide emissions due to economic activity induce global warming. The strong incr...
Summarization: The catalytic performance of supported ruthenium catalysts for the selective methanat...
The metal-support interfaces of metallic nanoparticles supported on oxide surfaces determine the act...
Ru/CeO2 single-atom catalysts (SAC) are highly selective for the hydrogenation of CO2 to CO. In this...
Ru catalysts supported on different mesoporous silicas, MCM-41, MCM-48, SBA-15 and KIT-6, were appli...
In this study, CeO2 rods (CeO2/r), cubes (CeO2/c) and octahedra (CeO2/o) supported catalysts with id...
The CO2 methanation reaction often attracts attention in the energy sector, since combined water ele...
Utilization of CO2 through the reverse water gas shift (RWGS) reaction is a promising solution in ma...
CO<sub>2</sub> hydrogenation for the acquisition of value-added chemicals is an economical means to ...
The catalytic performance of a series of Ru/Al2O3 catalysts with Ru content in the 0.1-5% range was ...
We have investigated the impact of realistic high water contents up to 30% on the selective methanat...
CO2 collected from the outdoor atmosphere or produced in an aerospace cabin, may be recycled to pro...
Three morphology-controlled CeO2, namely nanorods (NRs), nanocubes (NCs), and nanopolyhedra (NPs), w...
The conversion of CO2 towards added valuable products is considered as a potential alternative to ac...
Supported Ru catalysts show a very high selectivity for the selective methanation of CO in CO2-rich ...
Increase in carbon dioxide emissions due to economic activity induce global warming. The strong incr...
Summarization: The catalytic performance of supported ruthenium catalysts for the selective methanat...
The metal-support interfaces of metallic nanoparticles supported on oxide surfaces determine the act...
Ru/CeO2 single-atom catalysts (SAC) are highly selective for the hydrogenation of CO2 to CO. In this...
Ru catalysts supported on different mesoporous silicas, MCM-41, MCM-48, SBA-15 and KIT-6, were appli...