International audienceProduction of formate via CO2/bicarbonate hydrogenation using cheap metal-based heterogeneous catalysts is attractive. Herein, we report the organometallic synthesis of a foam-like Ni@Ni(OH)2 composite nanomaterial which exhibited remarkable air stability and over 2 times higher catalytic activity than commercial Raney Ni catalyst in formate synthesis. Formate generation was reached with an optimal rate of 6.0 mmol/gcat/h at 100°C, a significantly lower operation temperature compared to the 200-260°C reported in the literature. Deep characterization evidenced that this nanomaterial was made of an amorphous Ni(OH)2 phase covering metallic Ni sites; a core-shell structure which is crucial for the stability of the catalys...
In this work, we present an investigation concerning the evaluation of the catalytic properties of N...
We report the development of palladium nanoparticles supported on Mo2C as an active catalyst for the...
Catalytic CO2 hydrogenation to CH4 offers a viable route for CO2 conversion into carbon feedstock. T...
International audienceProduction of formate via CO2/bicarbonate hydrogenation using cheap metal-base...
We studied the catalytic hydrogenation of CO2 to methane using nickel-niobia composite catalysts. Ca...
The nanoscale description of the reaction pathways and of the role of the intermediate species invol...
The burning of fossil fuels to meet energy demands has increased carbon dioxide (CO2) in the atmosph...
Identification of the key factors governing the activity and product selectivity of CO2 hydrogenatio...
The present research systematically investigated, for the first time, the transformation of sodium b...
The valorization of CO2 via renewable energy sources allows one to obtain carbon-neutral fuels thro...
We demonstrate that the key step for the reaction of CO2 with hydrogen on Ni(110) is a change of the...
We demonstrate that the key step for the reaction of CO2 with hydrogen on Ni(110) is a change of the...
The key challenge for CO2 methanation, an eight-electron process under kinetic limitation, relies on...
Despite the large number of studies on the catalytic hydrogenation of CO2 to CO and hydrocarbons by ...
Human life and the ecological environment have been affected by global warming and climate changes. ...
In this work, we present an investigation concerning the evaluation of the catalytic properties of N...
We report the development of palladium nanoparticles supported on Mo2C as an active catalyst for the...
Catalytic CO2 hydrogenation to CH4 offers a viable route for CO2 conversion into carbon feedstock. T...
International audienceProduction of formate via CO2/bicarbonate hydrogenation using cheap metal-base...
We studied the catalytic hydrogenation of CO2 to methane using nickel-niobia composite catalysts. Ca...
The nanoscale description of the reaction pathways and of the role of the intermediate species invol...
The burning of fossil fuels to meet energy demands has increased carbon dioxide (CO2) in the atmosph...
Identification of the key factors governing the activity and product selectivity of CO2 hydrogenatio...
The present research systematically investigated, for the first time, the transformation of sodium b...
The valorization of CO2 via renewable energy sources allows one to obtain carbon-neutral fuels thro...
We demonstrate that the key step for the reaction of CO2 with hydrogen on Ni(110) is a change of the...
We demonstrate that the key step for the reaction of CO2 with hydrogen on Ni(110) is a change of the...
The key challenge for CO2 methanation, an eight-electron process under kinetic limitation, relies on...
Despite the large number of studies on the catalytic hydrogenation of CO2 to CO and hydrocarbons by ...
Human life and the ecological environment have been affected by global warming and climate changes. ...
In this work, we present an investigation concerning the evaluation of the catalytic properties of N...
We report the development of palladium nanoparticles supported on Mo2C as an active catalyst for the...
Catalytic CO2 hydrogenation to CH4 offers a viable route for CO2 conversion into carbon feedstock. T...