Stepped metal surfaces are usually assumed to exhibit an increased catalytic activity for bond cleavage of small molecules over their flat single-crystal counterparts. We present experimental and theoretical data on the dissociative adsorption of molecular hydrogen on copper that contradicts this notion. We observe hydrogen molecules to be more reactive on the flat Cu(111) than on the stepped Cu(211) surface. We suggest that this exceptional behavior is due to a geometric effect, that is, that bond cleavage on the flat surface does not occur preferentially over a top site
The research presented in this thesis makes use of small molecules (as H2 , D2 and O2 ) ...
Obtaining quantitative agreement between theory and experiment for dissociative adsorption of hydrog...
The interaction of hydrogen with the Cu(100) surface has been investigated using a variety of experi...
The research presented in this thesis makes use of small molecules (as H2 , D2 and O2 ) ...
We report quantum-state resolved measurements of angular and velocity distributions of the associati...
Abstract: We have studied the effect of lattice displacement on the interaction of H(2) with the Cu(...
We determine absolute reactivities for dissociation at low coordinated Pt sites. Two curved Pt(111) ...
The role of steps in the dissociation of molecules on metal surfaces has been extensively investigat...
It has been shown in recent experiments that the Cu(111) surface doped by a small amount of Pd atoms...
Reactions on stepped surfaces are relevant to heterogeneous catalysis, in which a reaction often tak...
The role of steps in the dissociation of molecules on metal surfaces has been extensively investigat...
The role of steps in the dissociation of molecules on metal surfaces has been extensively investigat...
Controlling hydrocarbon chemistry on metal surfaces is important for both heterogeneous catalysis an...
The influence of open steps on the surface properties is shown by investigating the interaction of m...
An atomic level insight into the chemistry of hydrogen sulfide (H<sub>2</sub>S) splitting by metalli...
The research presented in this thesis makes use of small molecules (as H2 , D2 and O2 ) ...
Obtaining quantitative agreement between theory and experiment for dissociative adsorption of hydrog...
The interaction of hydrogen with the Cu(100) surface has been investigated using a variety of experi...
The research presented in this thesis makes use of small molecules (as H2 , D2 and O2 ) ...
We report quantum-state resolved measurements of angular and velocity distributions of the associati...
Abstract: We have studied the effect of lattice displacement on the interaction of H(2) with the Cu(...
We determine absolute reactivities for dissociation at low coordinated Pt sites. Two curved Pt(111) ...
The role of steps in the dissociation of molecules on metal surfaces has been extensively investigat...
It has been shown in recent experiments that the Cu(111) surface doped by a small amount of Pd atoms...
Reactions on stepped surfaces are relevant to heterogeneous catalysis, in which a reaction often tak...
The role of steps in the dissociation of molecules on metal surfaces has been extensively investigat...
The role of steps in the dissociation of molecules on metal surfaces has been extensively investigat...
Controlling hydrocarbon chemistry on metal surfaces is important for both heterogeneous catalysis an...
The influence of open steps on the surface properties is shown by investigating the interaction of m...
An atomic level insight into the chemistry of hydrogen sulfide (H<sub>2</sub>S) splitting by metalli...
The research presented in this thesis makes use of small molecules (as H2 , D2 and O2 ) ...
Obtaining quantitative agreement between theory and experiment for dissociative adsorption of hydrog...
The interaction of hydrogen with the Cu(100) surface has been investigated using a variety of experi...