We present an analytical one-dimensional model potential for the description of electronic interface states that form at the interface between a metal surface and flat-lying adlayers of π-conjugated organic molecules. The model utilizes graphene as a universal representation of these organic adlayers. It predicts the energy position of the interface state as well as the overlap of its wave function with the bulk metal without free fitting parameters. We show that the energy of the interface state depends systematically on the bond distance between the carbon backbone of the adayers and the metal. The general applicability and robustness of the model is demonstrated by a comparison of the calculated energies with numerous experimental result...
The energy level alignment at the metal-organic and organic-organic interfaces of the Cu(100)/benzen...
In this project, different molecules have been investigated with the purpose of creating anohmic con...
We study the dipole layer formed at metal-organic interfaces by means of first-principles calculatio...
The realization of metal-molecule junctions for future electronic devices relies on our ability to a...
The realization of metal-molecule junctions for future electronic devices relies on our ability to a...
A key quantity for molecule-metal interfaces is the energy level alignment of molecular electronic s...
The field of organic-based opto-electronic devices such as organic light- emitting diodes (OLEDs) or...
A detailed understanding of the organic molecule/substrate interface is of crucial importance for th...
In this work, we analyze theoretically a Au/C60 interface based on the results obtained using DFT fo...
Highly structured nanomaterials offer promise to revolutionize numerous areas of energy conversion t...
The rapidly developing field of organic electronics has stimulated intensive research into the funda...
This dissertation research is focused on first principles studies of graphene and single organic mol...
A detailed understanding of the organic molecule/substrate interface is of crucial importance for th...
Submission note: A thesis submitted in total fulfilment of the requirements for the degree of Doctor...
A detailed understanding of the organic molecule/substrate interface is of crucial importance for th...
The energy level alignment at the metal-organic and organic-organic interfaces of the Cu(100)/benzen...
In this project, different molecules have been investigated with the purpose of creating anohmic con...
We study the dipole layer formed at metal-organic interfaces by means of first-principles calculatio...
The realization of metal-molecule junctions for future electronic devices relies on our ability to a...
The realization of metal-molecule junctions for future electronic devices relies on our ability to a...
A key quantity for molecule-metal interfaces is the energy level alignment of molecular electronic s...
The field of organic-based opto-electronic devices such as organic light- emitting diodes (OLEDs) or...
A detailed understanding of the organic molecule/substrate interface is of crucial importance for th...
In this work, we analyze theoretically a Au/C60 interface based on the results obtained using DFT fo...
Highly structured nanomaterials offer promise to revolutionize numerous areas of energy conversion t...
The rapidly developing field of organic electronics has stimulated intensive research into the funda...
This dissertation research is focused on first principles studies of graphene and single organic mol...
A detailed understanding of the organic molecule/substrate interface is of crucial importance for th...
Submission note: A thesis submitted in total fulfilment of the requirements for the degree of Doctor...
A detailed understanding of the organic molecule/substrate interface is of crucial importance for th...
The energy level alignment at the metal-organic and organic-organic interfaces of the Cu(100)/benzen...
In this project, different molecules have been investigated with the purpose of creating anohmic con...
We study the dipole layer formed at metal-organic interfaces by means of first-principles calculatio...