Reactions on stepped surfaces are relevant to heterogeneous catalysis, in which a reaction often takes place at the edges of nanoparticles where the edges resemble steps on single-crystal stepped surfaces. Previous results on H2 + Cu(211) showed that, in this system, steps do not enhance the reactivity and raised the question of whether this effect could be, in any way, related to the neglect of quantum dynamical effects in the theory. To investigate this, we present full quantum dynamical molecular beam simulations of sticking of H2 on Cu(211), in which all important rovibrational states populated in a molecular beam experiment are taken into account. We find that the reaction of H2 with Cu(211) is very well described with quasi-classical ...
The correct prediction of elementary processes occurring when H2 scatters from a metal surface is on...
Obtaining quantitative agreement between theory and experiment for dissociative adsorption of hydrog...
The correct prediction of elementary processes occurring when H 2 scatters from a metal surface is ...
We report quantum-state resolved measurements of angular and velocity distributions of the associati...
We present new experimental and theoretical results for reactive scattering of dihydrogen from Cu(1...
We report quantum-state resolved measurements of angular and velocity distributions of the associati...
Stepped metal surfaces are usually assumed to exhibit an increased catalytic activity for bond cleav...
The following article appeared in Journal of Chemical Physic 137.6 (2012): 064707 and may be found a...
The research presented in this thesis makes use of small molecules (as H2 , D2 and O2 ) ...
Ab initio molecular dynamics (AIMD) calculations using the specific reaction parameter approach to d...
The activation and dissociation of H2 molecules on Cu(001) surface is studied theoretically. The act...
Obtaining quantitative agreement between theory and experiment for dissociative adsorption of hydrog...
Despite significant progress made in the past decades, it remains extremely challenging to investiga...
At present, much remains unknown about the effect surface phonons and surface temperature may have o...
Results of experimental studies, and theoretical calculations utilizing classical trajectories, have...
The correct prediction of elementary processes occurring when H2 scatters from a metal surface is on...
Obtaining quantitative agreement between theory and experiment for dissociative adsorption of hydrog...
The correct prediction of elementary processes occurring when H 2 scatters from a metal surface is ...
We report quantum-state resolved measurements of angular and velocity distributions of the associati...
We present new experimental and theoretical results for reactive scattering of dihydrogen from Cu(1...
We report quantum-state resolved measurements of angular and velocity distributions of the associati...
Stepped metal surfaces are usually assumed to exhibit an increased catalytic activity for bond cleav...
The following article appeared in Journal of Chemical Physic 137.6 (2012): 064707 and may be found a...
The research presented in this thesis makes use of small molecules (as H2 , D2 and O2 ) ...
Ab initio molecular dynamics (AIMD) calculations using the specific reaction parameter approach to d...
The activation and dissociation of H2 molecules on Cu(001) surface is studied theoretically. The act...
Obtaining quantitative agreement between theory and experiment for dissociative adsorption of hydrog...
Despite significant progress made in the past decades, it remains extremely challenging to investiga...
At present, much remains unknown about the effect surface phonons and surface temperature may have o...
Results of experimental studies, and theoretical calculations utilizing classical trajectories, have...
The correct prediction of elementary processes occurring when H2 scatters from a metal surface is on...
Obtaining quantitative agreement between theory and experiment for dissociative adsorption of hydrog...
The correct prediction of elementary processes occurring when H 2 scatters from a metal surface is ...