Employing a multi-molecular-beam approach, we have measured the angular distribution of CO, molecules formed during CO oxidation under steady-state conditions on well oriented and shaped nm-sized Pd crystallites grown on an ordered alumina film. The experiment is combined with kinetic Monte Carlo simulations based on a realistic structural model. The results obtained allow us (i) to differentiate between local reaction rates on the particle nanofacets and (ii) to conclude that oxygen diffusion on and between the (111) facets is rapid compared to reaction
Spatially resolved, combined energy dispersive EXAFS (EDE) and diffuse reflectance infrared Fourier ...
Understanding nanoparticle catalysis requires novel approaches in which adjoining crystal orientatio...
Understanding nanoparticle catalysis requires novel approaches in which adjoining crystal orientatio...
Employing a multi-molecular-beam approach, we have measured the angular distribution of CO, molecule...
Applying molecular-beam methods to a nanolithographically prepared planar Pd/SiO2 model catalyst, we...
Employing molecular beam methods, we have studied the angular distribution of products desorbing fro...
Combining molecular beam methods and angular resolved mass spectrometry, we have studied the angular...
Combining multi-molecular beam (MB) experiments and in situ time-resolved infrared reflection absorp...
The kinetics of oxidation of ordered arrays of Co nanoparticles (NPs) supported on the ultrathin alu...
Adsorption of CO and O2 on Pd particles deposited on a well-ordered Fe3O4(111) film was studied by t...
Understanding nanoparticle catalysis requires novel approaches in which adjoining crystal orientatio...
To approach a microscopic understanding of the reaction kinetics on complex surfaces of heterogeneou...
Adsorption of CO and O2 on Pd particles deposited on a well-ordered Fe3O4(111) film was studied by t...
Interactions between oxygen and Pd-surfaces have important implications, especially towards oxidatio...
Femtosecond two-pulse correlation spectroscopy, temperature program desorption spectroscopy, and den...
Spatially resolved, combined energy dispersive EXAFS (EDE) and diffuse reflectance infrared Fourier ...
Understanding nanoparticle catalysis requires novel approaches in which adjoining crystal orientatio...
Understanding nanoparticle catalysis requires novel approaches in which adjoining crystal orientatio...
Employing a multi-molecular-beam approach, we have measured the angular distribution of CO, molecule...
Applying molecular-beam methods to a nanolithographically prepared planar Pd/SiO2 model catalyst, we...
Employing molecular beam methods, we have studied the angular distribution of products desorbing fro...
Combining molecular beam methods and angular resolved mass spectrometry, we have studied the angular...
Combining multi-molecular beam (MB) experiments and in situ time-resolved infrared reflection absorp...
The kinetics of oxidation of ordered arrays of Co nanoparticles (NPs) supported on the ultrathin alu...
Adsorption of CO and O2 on Pd particles deposited on a well-ordered Fe3O4(111) film was studied by t...
Understanding nanoparticle catalysis requires novel approaches in which adjoining crystal orientatio...
To approach a microscopic understanding of the reaction kinetics on complex surfaces of heterogeneou...
Adsorption of CO and O2 on Pd particles deposited on a well-ordered Fe3O4(111) film was studied by t...
Interactions between oxygen and Pd-surfaces have important implications, especially towards oxidatio...
Femtosecond two-pulse correlation spectroscopy, temperature program desorption spectroscopy, and den...
Spatially resolved, combined energy dispersive EXAFS (EDE) and diffuse reflectance infrared Fourier ...
Understanding nanoparticle catalysis requires novel approaches in which adjoining crystal orientatio...
Understanding nanoparticle catalysis requires novel approaches in which adjoining crystal orientatio...