Cu/CeO<sub>2</sub> works as an effective heterogeneous catalyst for hydrogenation of dimethyl carbonate to methanol at 433 K and even at low H<sub>2</sub> pressure of 2.5 MPa, and it provided 94% and 98% methanol yield based on the carbonyl and total produced methanol, respectively. This is the first report of high yield synthesis of methanol from DMC by hydrogenation with H<sub>2</sub> over heterogeneous catalysts. Characterization of the Cu/CeO<sub>2</sub> catalyst demonstrated that reduction of Cu/CeO<sub>2</sub> produced Cu metal with <1.0 nm (subnanoparticles). Cu metal subnanoparticles are easily formed by the interaction with the CeO<sub>2</sub> surface, which is responsible for the high catalytic performance
Converting CO2 into value-added chemicals and fuels, such as methanol, is a promising approach to li...
The synthesis of sustainable methanol and ethylene glycol (EG) via hydrogenation of ethylene carbona...
International audienceCurrently, carbon dioxide in the atmosphere is the major contributor toward gl...
Cu/ZnO catalysts with different mean Cu particle sizes were prepared by wet impregnation of copper n...
Methanol synthesized from carbonate hydrogenation is of great importance for CO2 utilization indirec...
Copper-silica nanocomposite catalysts with a uniform Cu dispersion prepared by a precipitation-gel m...
CO2 hydrogenation to methanol can play an important role in meeting sustainability goals of the chem...
Fundamental studies in catalysis rely on well-defined catalyst materials and reactions. In this thes...
A one pot catalytic system which involves Cu and an alkoxide co-catalyst has been used for methanol ...
This work will focus on the development of the methanol synthesis catalyst to find promising cataly...
The direct conversion of CO2 into methanol through hydrogenation reactions by heterogeneous catalyst...
Highly active and selective Cu-ZnO based catalysts with high BET surface areas and Cu surface areas ...
The role of the interface between a metal and oxide (CeOx-Cu and ZnO-Cu) is critical to the producti...
Copper-based catalysts for alcohol synthesis were prepared, tested for catalytic activity and select...
A series of zinc oxide and copper(0) colloidal nanocatalysts, produced by a one-pot synthesis, are s...
Converting CO2 into value-added chemicals and fuels, such as methanol, is a promising approach to li...
The synthesis of sustainable methanol and ethylene glycol (EG) via hydrogenation of ethylene carbona...
International audienceCurrently, carbon dioxide in the atmosphere is the major contributor toward gl...
Cu/ZnO catalysts with different mean Cu particle sizes were prepared by wet impregnation of copper n...
Methanol synthesized from carbonate hydrogenation is of great importance for CO2 utilization indirec...
Copper-silica nanocomposite catalysts with a uniform Cu dispersion prepared by a precipitation-gel m...
CO2 hydrogenation to methanol can play an important role in meeting sustainability goals of the chem...
Fundamental studies in catalysis rely on well-defined catalyst materials and reactions. In this thes...
A one pot catalytic system which involves Cu and an alkoxide co-catalyst has been used for methanol ...
This work will focus on the development of the methanol synthesis catalyst to find promising cataly...
The direct conversion of CO2 into methanol through hydrogenation reactions by heterogeneous catalyst...
Highly active and selective Cu-ZnO based catalysts with high BET surface areas and Cu surface areas ...
The role of the interface between a metal and oxide (CeOx-Cu and ZnO-Cu) is critical to the producti...
Copper-based catalysts for alcohol synthesis were prepared, tested for catalytic activity and select...
A series of zinc oxide and copper(0) colloidal nanocatalysts, produced by a one-pot synthesis, are s...
Converting CO2 into value-added chemicals and fuels, such as methanol, is a promising approach to li...
The synthesis of sustainable methanol and ethylene glycol (EG) via hydrogenation of ethylene carbona...
International audienceCurrently, carbon dioxide in the atmosphere is the major contributor toward gl...