The performance of a range of nanoparticulate gold catalysts in the hydrogenation of carbon dioxide to formates was investigated and a superior performance of Au/Al2O3 was revealed. The comparative studies with unsupported gold nanoparticles pointed to the crucial role of the metal–support interaction for the CO2 hydrogenation activity. Cyanide leaching tests complemented by XPS and STEM studies point to the importance of metallic Au0 species for the catalytic activity. The Au/Al2O3 catalyst shows stable activity that allows reaching equilibrium formate yields in a broad temperature range. A kinetic study revealed that a near-zero apparent activation barrier for the hydrogenation reaction is an intrinsic property of the catalytic system. Th...
Au nanoparticles supported on ZrO2 enhance its surface acidic/basic properties to produce a high yie...
Netherlands’ Catalysis and Chemistry Conference (NCCC) - 09-11/05/2022 - poste
An effective solvent-free method based on a solid-reduction process was developed to fabricate ultra...
The performance of a range of nanoparticulate gold catalysts in the hydrogenation of carbon dioxide ...
Summarization: The present work aims to explore the impact of the support (MxOy: Al2O3, TiO2, Fe2O3,...
Catalytic transformation of CO2 to formate is generally realized through bicarbonate hydrogenation i...
Supported gold nanoparticles are highly selective catalysts for a range of both liquid-phase and gas...
Characteristics and catalytic activity in hydrogen production from formic acid of Au catalysts suppo...
Gold has supreme cultural and financial value and, in form of nanoparticles smaller than 10 nm, is a...
Supported gold nanoparticles are highly selective catalysts for a range of both liquid-phase and gas...
Summarization: Au nanoparticles (2.2 nm) deposited on TiO2 by the deposition-precipitation method we...
We report the development of palladium nanoparticles supported on Mo2C as an active catalyst for the...
Supported gold nanoparticles are emerging catalysts for heterogeneous catalytic reactions, including...
Propelled by the vision of carbon-neutral energy systems, heterogeneous hydrogenation of CO2 to form...
Silica-supported silver nanoparticles exhibit outstanding efficiency in the CO2 hydrogenation to met...
Au nanoparticles supported on ZrO2 enhance its surface acidic/basic properties to produce a high yie...
Netherlands’ Catalysis and Chemistry Conference (NCCC) - 09-11/05/2022 - poste
An effective solvent-free method based on a solid-reduction process was developed to fabricate ultra...
The performance of a range of nanoparticulate gold catalysts in the hydrogenation of carbon dioxide ...
Summarization: The present work aims to explore the impact of the support (MxOy: Al2O3, TiO2, Fe2O3,...
Catalytic transformation of CO2 to formate is generally realized through bicarbonate hydrogenation i...
Supported gold nanoparticles are highly selective catalysts for a range of both liquid-phase and gas...
Characteristics and catalytic activity in hydrogen production from formic acid of Au catalysts suppo...
Gold has supreme cultural and financial value and, in form of nanoparticles smaller than 10 nm, is a...
Supported gold nanoparticles are highly selective catalysts for a range of both liquid-phase and gas...
Summarization: Au nanoparticles (2.2 nm) deposited on TiO2 by the deposition-precipitation method we...
We report the development of palladium nanoparticles supported on Mo2C as an active catalyst for the...
Supported gold nanoparticles are emerging catalysts for heterogeneous catalytic reactions, including...
Propelled by the vision of carbon-neutral energy systems, heterogeneous hydrogenation of CO2 to form...
Silica-supported silver nanoparticles exhibit outstanding efficiency in the CO2 hydrogenation to met...
Au nanoparticles supported on ZrO2 enhance its surface acidic/basic properties to produce a high yie...
Netherlands’ Catalysis and Chemistry Conference (NCCC) - 09-11/05/2022 - poste
An effective solvent-free method based on a solid-reduction process was developed to fabricate ultra...