Methane, which has a high energy storage density and is safely stored and transported in our existing infrastructure, can be produced through conversion of the undesired energy carrier H2 with CO2. Methane production with standard transition-metal catalysts requires high-temperature activation (300–500 °C). Alternatively, semiconductor metal oxide photocatalysts can be used, but they require high-intensity UV light. Here, we report a Ru metal catalyst that facilitates methanation below 250 °C using sunlight as an energy source. Although at low solar intensity (1 sun) the activity of the Ru catalyst is mainly attributed to thermal effects, we identified a large nonthermal contribution at slightly elevated intensities (5.7 and 8.5 sun) result...
Carbon dioxide (CO2) hydrogenation to methane (CH4) is regarded as a promising approach for CO2 util...
This is the peer reviewed version of the following article:Mateo-Mateo, Diego, De Masi, Deborah , Al...
Sunlight-powered reduction of CO2 to fuels and chemicals is a promising strategy to close the carbon...
Methane, which has a high energy storage density and is safely stored and transported in our existin...
Plasmonic CO2 methanation using γ-Al2O3-supported Ru nanorods was carried out under continuous-flow ...
It is attractive to convert CO2 greenhouse gas into valuable compounds via photocatalysis with solar...
Plasmon catalysis is an interesting technology concept for powering chemical processes with light. H...
International audienceAu and Ru nanoparticles have been deposited on Siralox® substrate by impregnat...
RuO nanoparticles supported on strontium titanate (STO) have demonstrated outstanding photothermal a...
Steam reforming of methane (SRM) is one of the most important industrial processes, which produces 9...
Many heterogeneous catalytic reactions occur at high temperatures, which may cause large energy cost...
Fischer–Tropsch synthesis (FTS) converts carbon monoxide and hydrogen to liquid fuels and chemicals ...
Converting CO2 into fuel or chemical feedstock compounds could in principle reduce fossil fuel consu...
Carbon dioxide (CO2) hydrogenation to methane (CH4) is regarded as a promising approach for CO2 util...
This is the peer reviewed version of the following article:Mateo-Mateo, Diego, De Masi, Deborah , Al...
Sunlight-powered reduction of CO2 to fuels and chemicals is a promising strategy to close the carbon...
Methane, which has a high energy storage density and is safely stored and transported in our existin...
Plasmonic CO2 methanation using γ-Al2O3-supported Ru nanorods was carried out under continuous-flow ...
It is attractive to convert CO2 greenhouse gas into valuable compounds via photocatalysis with solar...
Plasmon catalysis is an interesting technology concept for powering chemical processes with light. H...
International audienceAu and Ru nanoparticles have been deposited on Siralox® substrate by impregnat...
RuO nanoparticles supported on strontium titanate (STO) have demonstrated outstanding photothermal a...
Steam reforming of methane (SRM) is one of the most important industrial processes, which produces 9...
Many heterogeneous catalytic reactions occur at high temperatures, which may cause large energy cost...
Fischer–Tropsch synthesis (FTS) converts carbon monoxide and hydrogen to liquid fuels and chemicals ...
Converting CO2 into fuel or chemical feedstock compounds could in principle reduce fossil fuel consu...
Carbon dioxide (CO2) hydrogenation to methane (CH4) is regarded as a promising approach for CO2 util...
This is the peer reviewed version of the following article:Mateo-Mateo, Diego, De Masi, Deborah , Al...
Sunlight-powered reduction of CO2 to fuels and chemicals is a promising strategy to close the carbon...