Physisorption of CO and N2O on surfaces of ceria (CeO2) was investigated by means of high-level quantum-mechanical embedded cluster calculations. Both systems have high relevance in the field of environmental chemistry and heterogeneous catalysis. The CO/CeO2 system, has been investigated in a couple of both experimental and theoretical studies, but for the N2O/CeO2 system, this is the first study in the literature, experimental or theoretical. In physisorption, the interaction relies entirely on classical electrostatic interactions and electron dispersion forces. No covalent bond is formed between the molecule and the surface. A proper description of the dispersion requires some of the most accurate quantum-mechanical methods available, su...
Possible reaction paths for CO oxidation on ceria-supported Au nanoparticle catalysts were modeled b...
Possible reaction paths for CO oxidation on ceria-supported Au nanoparticle catalysts were modeled b...
Possible reaction paths for CO oxidation on ceria-supported Au nanoparticle catalysts were modeled b...
Physisorption of CO and N2O on surfaces of ceria (CeO2) was investigated by means of high-level quan...
Physisorption of CO and N2O on surfaces of ceria (CeO2) was investigated by means of high-level quan...
Physisorption of CO and N2O on surfaces of ceria (CeO2) was investigated by means of high-level quan...
First principles simulations of carbon dioxide adsorbed on the ceria (CeO2) (111) surface are discus...
First principles simulations of carbon dioxide adsorbed on the ceria (CeO2) (111) surface are discus...
The limiting steps of CO oxidation catalyzed by ceria via the Mars-van Krevelen reaction mechanism a...
The water-gas-shift (WGS) reaction (CO + H2O → H 2 + CO2) is important for CO removal. Ceria (CeO2) ...
The development and improvement of the functionality of metal oxides in heterogeneous catalysis and ...
The development and improvement of the functionality of metal oxides in heterogeneous catalysis and ...
The development and improvement of the functionality of metal oxides in heterogeneous catalysis and ...
The interaction of the (110) and (111) surfaces of ceria (CeO(2)) with atomic hydrogen is studied wi...
Possible reaction paths for CO oxidation on ceria-supported Au nanoparticle catalysts were modeled b...
Possible reaction paths for CO oxidation on ceria-supported Au nanoparticle catalysts were modeled b...
Possible reaction paths for CO oxidation on ceria-supported Au nanoparticle catalysts were modeled b...
Possible reaction paths for CO oxidation on ceria-supported Au nanoparticle catalysts were modeled b...
Physisorption of CO and N2O on surfaces of ceria (CeO2) was investigated by means of high-level quan...
Physisorption of CO and N2O on surfaces of ceria (CeO2) was investigated by means of high-level quan...
Physisorption of CO and N2O on surfaces of ceria (CeO2) was investigated by means of high-level quan...
First principles simulations of carbon dioxide adsorbed on the ceria (CeO2) (111) surface are discus...
First principles simulations of carbon dioxide adsorbed on the ceria (CeO2) (111) surface are discus...
The limiting steps of CO oxidation catalyzed by ceria via the Mars-van Krevelen reaction mechanism a...
The water-gas-shift (WGS) reaction (CO + H2O → H 2 + CO2) is important for CO removal. Ceria (CeO2) ...
The development and improvement of the functionality of metal oxides in heterogeneous catalysis and ...
The development and improvement of the functionality of metal oxides in heterogeneous catalysis and ...
The development and improvement of the functionality of metal oxides in heterogeneous catalysis and ...
The interaction of the (110) and (111) surfaces of ceria (CeO(2)) with atomic hydrogen is studied wi...
Possible reaction paths for CO oxidation on ceria-supported Au nanoparticle catalysts were modeled b...
Possible reaction paths for CO oxidation on ceria-supported Au nanoparticle catalysts were modeled b...
Possible reaction paths for CO oxidation on ceria-supported Au nanoparticle catalysts were modeled b...
Possible reaction paths for CO oxidation on ceria-supported Au nanoparticle catalysts were modeled b...