The theoretical modeling of metal-organic interfaces represents a formidable challenge, especially considering the delicate balance of various interaction mechanisms and the large size of the involved molecular species. In the present study, the energies of interface states, which are known to display a high sensitivity to the adsorption geometry and electronic structure of the deposited molecular species, have been used to test the suitability and reliability of current theoretical approaches. Two well-ordered overlayer structures (relaxed and compressed monolayers) of 1,4,5,8-naphthalene-tetracarboxylic acid dianhydride (NTCDA) on Ag(111) have been investigated using two-photon photoemission to derive precise interface-state energies for ...
We study the dipole layer formed at metal-organic interfaces by means of first-principles calculatio...
Functional surfaces based on monolayers of organic molecules are currently subject of an intense res...
For organic and hybrid electronic devices, the physicochemical properties of the contained interface...
The theoretical modeling of metal-organic interfaces represents a formidable challenge, especially c...
We employ density functional theory (DFT) to analyze the dispersion of the electronic state that exi...
The adsorption of aromatic molecules onmetal surfaces leads to a complex reorganization of the molec...
It is well proven that the properties of organic/metal interfaces play an utmost role in the perform...
The organic semiconductor molecule 3,4,9,10-perylene-tetracarboxylic-dianhydride (PTCDA) exhibits tw...
The properties of molecular films are determined by the geometric structure of the first layers near...
The current study generates profound atomistic insights into doping-induced changes of the optical a...
10We report the interface energetics of decacyclene trianhydride (DTA) monolayers on top of two dist...
What do energy level alignments at metal–organic interfaces reveal about the metal–molecule bonding ...
The geometrical and electronic properties of the monolayer (ML) of tetracene (Tc) molecules on Ag(11...
The compressed 3,4,9,10-perylene tetracarboxylic dianhydride (PTCDA) herringbone monolayer structure...
We report the interface energetics of decacyclene trianhydride (DTA) monolayers on top of two distin...
We study the dipole layer formed at metal-organic interfaces by means of first-principles calculatio...
Functional surfaces based on monolayers of organic molecules are currently subject of an intense res...
For organic and hybrid electronic devices, the physicochemical properties of the contained interface...
The theoretical modeling of metal-organic interfaces represents a formidable challenge, especially c...
We employ density functional theory (DFT) to analyze the dispersion of the electronic state that exi...
The adsorption of aromatic molecules onmetal surfaces leads to a complex reorganization of the molec...
It is well proven that the properties of organic/metal interfaces play an utmost role in the perform...
The organic semiconductor molecule 3,4,9,10-perylene-tetracarboxylic-dianhydride (PTCDA) exhibits tw...
The properties of molecular films are determined by the geometric structure of the first layers near...
The current study generates profound atomistic insights into doping-induced changes of the optical a...
10We report the interface energetics of decacyclene trianhydride (DTA) monolayers on top of two dist...
What do energy level alignments at metal–organic interfaces reveal about the metal–molecule bonding ...
The geometrical and electronic properties of the monolayer (ML) of tetracene (Tc) molecules on Ag(11...
The compressed 3,4,9,10-perylene tetracarboxylic dianhydride (PTCDA) herringbone monolayer structure...
We report the interface energetics of decacyclene trianhydride (DTA) monolayers on top of two distin...
We study the dipole layer formed at metal-organic interfaces by means of first-principles calculatio...
Functional surfaces based on monolayers of organic molecules are currently subject of an intense res...
For organic and hybrid electronic devices, the physicochemical properties of the contained interface...