The self-assembly of flat organic molecules on metal surfaces is controlled, apart from the kinetic factors, by the interplay between the molecule-molecule and molecule-surface interactions. These are typically calculated using standard density functional theory within the generalized gradient approximation, which significantly underestimates nonlocal correlations, i.e. van der Waals (vdW) contributions, and thus affects interactions between molecules and the metal surface in the junction. In this paper we address this question systematically for the Au(111) surface and a number of popular flat organic molecules which form directional hydrogen bonds with each other. This is done using the recently developed first-principles vdW-DF method wh...
The accurate description of interface characteristics between organic molecules and metal surfaces h...
The interaction of water molecules with metal surfaces is typically weak and as a result van der Waa...
Electronic charge rearrangements at interfaces between organic molecules and solid surfaces play a k...
CONSPECTUS: The understanding of adsorption and reactions of (large) organic molecules at metal surf...
Van der Waals (vdW) interactions play a prominent role in the structure and function of organic/orga...
peer reviewedVan der Waals (vdW) interactions play a prominent role in the structure and function of...
Modeling the adsorption of atoms and molecules on surfaces requires efficient electronic-structure m...
The work in this thesis is focused on molecules that are able to self-assemble on different surfaces...
Halogenated aromatic molecules assemble on surfaces forming both hydrogen and halogen bonds. Even th...
We present the results of ab initio electronic structure calculations for the adsorption characteris...
We perform first-principles calculations aimed at investigating the role of a heteroatom such as N i...
We present the results of ab initio electronic structure calculations for the adsorption characteris...
The adsorption of 1,4-benzenediamine (BDA) on Au(111) and azobenzene on Ag(111) is investigated usin...
Using density functional theory and many-body perturbation theory within a GW approximation, we calc...
How strong is the effect of van der Waals (vdW) interactions on the electronic properties of molecul...
The accurate description of interface characteristics between organic molecules and metal surfaces h...
The interaction of water molecules with metal surfaces is typically weak and as a result van der Waa...
Electronic charge rearrangements at interfaces between organic molecules and solid surfaces play a k...
CONSPECTUS: The understanding of adsorption and reactions of (large) organic molecules at metal surf...
Van der Waals (vdW) interactions play a prominent role in the structure and function of organic/orga...
peer reviewedVan der Waals (vdW) interactions play a prominent role in the structure and function of...
Modeling the adsorption of atoms and molecules on surfaces requires efficient electronic-structure m...
The work in this thesis is focused on molecules that are able to self-assemble on different surfaces...
Halogenated aromatic molecules assemble on surfaces forming both hydrogen and halogen bonds. Even th...
We present the results of ab initio electronic structure calculations for the adsorption characteris...
We perform first-principles calculations aimed at investigating the role of a heteroatom such as N i...
We present the results of ab initio electronic structure calculations for the adsorption characteris...
The adsorption of 1,4-benzenediamine (BDA) on Au(111) and azobenzene on Ag(111) is investigated usin...
Using density functional theory and many-body perturbation theory within a GW approximation, we calc...
How strong is the effect of van der Waals (vdW) interactions on the electronic properties of molecul...
The accurate description of interface characteristics between organic molecules and metal surfaces h...
The interaction of water molecules with metal surfaces is typically weak and as a result van der Waa...
Electronic charge rearrangements at interfaces between organic molecules and solid surfaces play a k...