A detailed comparative study of CH3OH adsorption on two categories of supported Palladium nanoparticles is reported: (1) MgO and gamma-Al2O3-supported Pd metal catalysts prepared by impregnation techniques and characterized by different degrees of regularity and perfection and (2) single-crystal-based Pd/Al2O3 model catalysts prepared under ultrahigh vacuum (UHV) conditions. A detailed structural characterization of the supported Pd nanoparticles allows the assignment of vibrational frequencies of CH3OH and its decomposition products to well-defined types of sites on these systems. The decomposition of methanol on both types of catalysts is compared as an example for a reactivity study. On the model catalyst, infrared reflection–absorption ...
Palladium nanoparticles consisting of metallic cores and encapsulating shells serve as an intriguing...
We report results on CO, H2, C2H4 and CH3OH adsorption and reaction on Pd nanoparticles deposited on...
Combining multi-molecular beam (MB) experiments and in situ time-resolved infrared reflection absorp...
A detailed comparative study of CH3OH adsorption on two categories of supported Palladium nanopartic...
A detailed comparative study of CH3OH adsorption on two categories of supported Palladium nanopartic...
To identify the nature and the local structure of the surface of supported catalyst nanoparticles, w...
To identify the nature and the local structure of the surface of supported catalyst nanoparticles, w...
Model catalytic studies under ambient conditions require materials with well-defined structures for ...
γ-Alumina is widely used as an oxide support in catalysis, and palladium nanoparticles supported by ...
The adsorption and decomposition of methanol on a highly dispersed supported Pd/SiO2 catalyst (2% Pd...
Five alumina-supported palladium catalysts have been prepared from a range of precursor compounds [p...
Five alumina-supported palladium catalysts have been prepared from a range of precursor compounds [p...
Five alumina-supported palladium catalysts have been prepared from a range of precursor compounds [p...
A synthesis method for producing MgAl oxide supported uniform palladium nanoparticles with varying d...
We report results on CO, H2, C2H4 and CH3OH adsorption and reaction on Pd nanoparticles deposited on...
Palladium nanoparticles consisting of metallic cores and encapsulating shells serve as an intriguing...
We report results on CO, H2, C2H4 and CH3OH adsorption and reaction on Pd nanoparticles deposited on...
Combining multi-molecular beam (MB) experiments and in situ time-resolved infrared reflection absorp...
A detailed comparative study of CH3OH adsorption on two categories of supported Palladium nanopartic...
A detailed comparative study of CH3OH adsorption on two categories of supported Palladium nanopartic...
To identify the nature and the local structure of the surface of supported catalyst nanoparticles, w...
To identify the nature and the local structure of the surface of supported catalyst nanoparticles, w...
Model catalytic studies under ambient conditions require materials with well-defined structures for ...
γ-Alumina is widely used as an oxide support in catalysis, and palladium nanoparticles supported by ...
The adsorption and decomposition of methanol on a highly dispersed supported Pd/SiO2 catalyst (2% Pd...
Five alumina-supported palladium catalysts have been prepared from a range of precursor compounds [p...
Five alumina-supported palladium catalysts have been prepared from a range of precursor compounds [p...
Five alumina-supported palladium catalysts have been prepared from a range of precursor compounds [p...
A synthesis method for producing MgAl oxide supported uniform palladium nanoparticles with varying d...
We report results on CO, H2, C2H4 and CH3OH adsorption and reaction on Pd nanoparticles deposited on...
Palladium nanoparticles consisting of metallic cores and encapsulating shells serve as an intriguing...
We report results on CO, H2, C2H4 and CH3OH adsorption and reaction on Pd nanoparticles deposited on...
Combining multi-molecular beam (MB) experiments and in situ time-resolved infrared reflection absorp...