The current study generates profound atomistic insights into doping-induced changes of the optical and electronic properties of the prototypical PTCDA/Ag(111) interface. For doping K atoms are used, as KxPTCDA/Ag(111) has the distinct advantage of forming well-defined stoichiometric phases. To arrive at a conclusive, unambiguous, and fully atomistic understanding of the interface properties, we combine state-of-the-art density-functional theory calculations with optical differential reflectance data, photoelectron spectra, and X-ray standing wave measurements. In combination with the full structural characterization of the KxPTCDA/Ag(111) interface by low-energy electron diffraction and scanning tunneling microscopy experiments (ACS Nano 20...
The future success of organic semiconductors in electronic or spintronic devices depends crucially o...
We employ a variant of optical absorption spectroscopy, namely in situ differential reflectance spec...
Morphology- and layer-dependent electronic structure and dynamics at the PTCDA/Ag(111) interface hav...
The current study generates profound atomistic insights into doping-induced changes of the optical a...
The theoretical modeling of metal-organic interfaces represents a formidable challenge, especially c...
A modified scheme of scanning tunneling spectroscopy (STS) data analysis has been used to reconstruc...
The properties of molecular films are determined by the geometric structure of the first layers near...
Molecular materials enable a vast variety of functionalities for novel electronic and spintronic dev...
The electron transfer processes at the interface between 3,4,9,10-perylene-tetracarboxylic acid dian...
We investigate the interaction of Ti atoms with thin films made of 3,4,9,10 perylenetetracarboxylic ...
Resumen del póster presentado a la 13th European Conference on Surface Crystallography and Dynamics,...
Alkali metal atoms are frequently used for simple yet efficient n-type doping of organic semiconduct...
The formation of a metal/PTCDA (3, 4, 9, 10-perylenetetracarboxylic dianhydride) interface barrier ...
The application potential of organic semiconductors for molecular electronics makes them interesting...
Efficient charge transfer across metal–organic interfaces is a key physical process in modern organi...
The future success of organic semiconductors in electronic or spintronic devices depends crucially o...
We employ a variant of optical absorption spectroscopy, namely in situ differential reflectance spec...
Morphology- and layer-dependent electronic structure and dynamics at the PTCDA/Ag(111) interface hav...
The current study generates profound atomistic insights into doping-induced changes of the optical a...
The theoretical modeling of metal-organic interfaces represents a formidable challenge, especially c...
A modified scheme of scanning tunneling spectroscopy (STS) data analysis has been used to reconstruc...
The properties of molecular films are determined by the geometric structure of the first layers near...
Molecular materials enable a vast variety of functionalities for novel electronic and spintronic dev...
The electron transfer processes at the interface between 3,4,9,10-perylene-tetracarboxylic acid dian...
We investigate the interaction of Ti atoms with thin films made of 3,4,9,10 perylenetetracarboxylic ...
Resumen del póster presentado a la 13th European Conference on Surface Crystallography and Dynamics,...
Alkali metal atoms are frequently used for simple yet efficient n-type doping of organic semiconduct...
The formation of a metal/PTCDA (3, 4, 9, 10-perylenetetracarboxylic dianhydride) interface barrier ...
The application potential of organic semiconductors for molecular electronics makes them interesting...
Efficient charge transfer across metal–organic interfaces is a key physical process in modern organi...
The future success of organic semiconductors in electronic or spintronic devices depends crucially o...
We employ a variant of optical absorption spectroscopy, namely in situ differential reflectance spec...
Morphology- and layer-dependent electronic structure and dynamics at the PTCDA/Ag(111) interface hav...