Nowadays, there is a growing awareness of the great environmental impact caused by the enormous amounts of carbon dioxide emitted. Several alternatives exist to solve this problem, and one of them is the hydrogenation of carbon dioxide into methanol by using nanomaterials as catalysts. The aim of this alternative is to produce a value-added chemical, such as methanol, which is a cheaply available feedstock. The development of improved materials for this conversion reaction and a deeper study of the existing ones are important for obtaining higher efficiencies in terms of yield, conversion, and methanol selectivity, in addition to allowing milder reaction conditions in terms of pressure and temperature. In this work, the performance of coppe...
CO2 conversion into valuable chemicals is an attractive option to deal with the increasing CO2 conce...
The thermocatalytic hydrogenation of carbon dioxide (CO2 ) to methanol is considered as a potentia...
Catalysts have been used for decades to produce various materials on a large scale. A good catalyst ...
Recently, the increasing level of atmospheric CO2 has been widely noticed due to its association wit...
International audienceThe thermocatalytic hydrogenation of carbon dioxide (CO2) to methanol is consi...
The process of methanol synthesis based on the hydrogenation of CO2 was investigated over binary Cu/...
A series of zinc oxide and copper(0) colloidal nanocatalysts, produced by a one-pot synthesis, are s...
Carbon dioxide emissions are one of the major causes of global climate change. In this regard, carbo...
Carbon dioxide is highly thermochemical stable molecules where it is very difficult to activate the ...
The production of methanol from CO2 hydrogenation is a promising potential route to a renewable liqu...
A series of zinc oxide and copper(0) colloidal nanocatalysts, produced by a one-pot synthesis, are s...
Methanol synthesis via C02 hydrogenation provides alternative route for methanol production and att...
This article describes the synthesis of methanol by the direct hydrogenation of CO2 over Cu/ZrO2 cat...
The thermocatalytic hydrogenation of carbon dioxide (CO2) to methanol is considered as a potential r...
Cu/ZnO catalysts with different mean Cu particle sizes were prepared by wet impregnation of copper n...
CO2 conversion into valuable chemicals is an attractive option to deal with the increasing CO2 conce...
The thermocatalytic hydrogenation of carbon dioxide (CO2 ) to methanol is considered as a potentia...
Catalysts have been used for decades to produce various materials on a large scale. A good catalyst ...
Recently, the increasing level of atmospheric CO2 has been widely noticed due to its association wit...
International audienceThe thermocatalytic hydrogenation of carbon dioxide (CO2) to methanol is consi...
The process of methanol synthesis based on the hydrogenation of CO2 was investigated over binary Cu/...
A series of zinc oxide and copper(0) colloidal nanocatalysts, produced by a one-pot synthesis, are s...
Carbon dioxide emissions are one of the major causes of global climate change. In this regard, carbo...
Carbon dioxide is highly thermochemical stable molecules where it is very difficult to activate the ...
The production of methanol from CO2 hydrogenation is a promising potential route to a renewable liqu...
A series of zinc oxide and copper(0) colloidal nanocatalysts, produced by a one-pot synthesis, are s...
Methanol synthesis via C02 hydrogenation provides alternative route for methanol production and att...
This article describes the synthesis of methanol by the direct hydrogenation of CO2 over Cu/ZrO2 cat...
The thermocatalytic hydrogenation of carbon dioxide (CO2) to methanol is considered as a potential r...
Cu/ZnO catalysts with different mean Cu particle sizes were prepared by wet impregnation of copper n...
CO2 conversion into valuable chemicals is an attractive option to deal with the increasing CO2 conce...
The thermocatalytic hydrogenation of carbon dioxide (CO2 ) to methanol is considered as a potentia...
Catalysts have been used for decades to produce various materials on a large scale. A good catalyst ...