Obtaining insight into the type of surface sites involved in a reaction is essential to understand catalytic mechanisms at the atomic level and a key for understanding selectivity in surface-catalyzed reactions. Here we use ultrafast broad-band vibrational spectroscopy to follow in real-time diffusion of CO molecules over a palladium nanoparticle surface toward an active site. Site-to-site hopping is triggered by laser excitation of electrons and followed in real-time from subpicosecond changes in the vibrational spectra. CO photoexcitation occurs in 400 fs and hopping from NP facets to edges follows within ∼1 ps. Kinetic modeling allows to quantify the contribution of different facet sites to the catalytic reaction. These results provide u...
A direct correlation between the reaction activity and the surface structure of a catalyst is genera...
Understanding nanoparticle catalysis requires novel approaches in which adjoining crystal orientatio...
In this work, we have developed methods to elucidate the fundamental influence of catalytically rele...
Femtosecond two-pulse correlation spectroscopy, temperature program desorption spectroscopy, and den...
The laser-induced movement of CO molecules over a platinum surface was followed in real time by mean...
Spatially resolved, combined energy dispersive EXAFS (EDE) and diffuse reflectance infrared Fourier ...
To identify the nature and the local structure of the surface of supported catalyst nanoparticles, w...
Spatially resolved, combined energy dispersive EXAFS (EDE) and diffuse reflectance infrared Fourier ...
Energy migrations at metal nanomaterial surfaces are fundamentally important to heterogeneous reacti...
Energy migrations at metal nanomaterial surfaces are fundamentally important to heterogeneous reacti...
Understanding the role of nanoparticle size and shape in the binding of molecules is very relevant f...
This thesis presents experimental studies of three different chemical reaction steps relevant for he...
Understanding nanoparticle catalysis requires novel approaches in which adjoining crystal orientatio...
A direct correlation between the reaction activity and the surface structure of a catalyst is genera...
ConspectusMotivated mainly by catalysis, gas-surface interaction between single crystal surfaces and...
A direct correlation between the reaction activity and the surface structure of a catalyst is genera...
Understanding nanoparticle catalysis requires novel approaches in which adjoining crystal orientatio...
In this work, we have developed methods to elucidate the fundamental influence of catalytically rele...
Femtosecond two-pulse correlation spectroscopy, temperature program desorption spectroscopy, and den...
The laser-induced movement of CO molecules over a platinum surface was followed in real time by mean...
Spatially resolved, combined energy dispersive EXAFS (EDE) and diffuse reflectance infrared Fourier ...
To identify the nature and the local structure of the surface of supported catalyst nanoparticles, w...
Spatially resolved, combined energy dispersive EXAFS (EDE) and diffuse reflectance infrared Fourier ...
Energy migrations at metal nanomaterial surfaces are fundamentally important to heterogeneous reacti...
Energy migrations at metal nanomaterial surfaces are fundamentally important to heterogeneous reacti...
Understanding the role of nanoparticle size and shape in the binding of molecules is very relevant f...
This thesis presents experimental studies of three different chemical reaction steps relevant for he...
Understanding nanoparticle catalysis requires novel approaches in which adjoining crystal orientatio...
A direct correlation between the reaction activity and the surface structure of a catalyst is genera...
ConspectusMotivated mainly by catalysis, gas-surface interaction between single crystal surfaces and...
A direct correlation between the reaction activity and the surface structure of a catalyst is genera...
Understanding nanoparticle catalysis requires novel approaches in which adjoining crystal orientatio...
In this work, we have developed methods to elucidate the fundamental influence of catalytically rele...