10We report the interface energetics of decacyclene trianhydride (DTA) monolayers on top of two distinct model surfaces, namely, Au(111) and Ag(111). On the latter, combined valence band photoemission and X-ray absorption measurements that access the occupied and unoccupied molecular orbitals, respectively, reveal that electron transfer from substrate to surface sets in. Density functional theory calculations confirm our experimental findings and provide an understanding not only of the photoemission and X-ray absorption spectral features of this promising organic semiconductor but also of the fingerprints associated with the interface charge transfer.reservedmixedDe Oteyza D.G.; Garcia-Lastra J.M.; Toma F.M.; Borghetti P.; Floreano L.; Ver...
Organic/metal interfaces control the performance of many optoelectronic organic devices, including o...
The compressed 3,4,9,10-perylene tetracarboxylic dianhydride (PTCDA) herringbone monolayer structure...
Understanding organic semiconductor interfaces is critical to developing organic photovoltaics (OPV)...
We report the interface energetics of decacyclene trianhydride (DTA) monolayers on top of two distin...
The theoretical modeling of metal-organic interfaces represents a formidable challenge, especially c...
It is well proven that the properties of organic/metal interfaces play an utmost role in the perform...
Organic/metal interfaces control the performance of many optoelectronic organic devices, including o...
Controlling charge doping in organic semiconductors represents one of the key challenges in organic ...
The adsorption of aromatic molecules onmetal surfaces leads to a complex reorganization of the molec...
We investigate the molecular acceptors 3,4,9,10-perylene-tetracarboxylic acid dianhydride (PTCDA), 2...
We employ a variant of optical absorption spectroscopy, namely in situ differential reflectance spec...
Hybrid interfaces between organic molecules and inorganic substrates are key systems in many technol...
A detailed understanding of the organic molecule/substrate interface is of crucial importance for th...
The field of organic-based opto-electronic devices such as organic light- emitting diodes (OLEDs) or...
It is becoming accepted that ultrathin dielectric layers on metals are not merely passive decoupling...
Organic/metal interfaces control the performance of many optoelectronic organic devices, including o...
The compressed 3,4,9,10-perylene tetracarboxylic dianhydride (PTCDA) herringbone monolayer structure...
Understanding organic semiconductor interfaces is critical to developing organic photovoltaics (OPV)...
We report the interface energetics of decacyclene trianhydride (DTA) monolayers on top of two distin...
The theoretical modeling of metal-organic interfaces represents a formidable challenge, especially c...
It is well proven that the properties of organic/metal interfaces play an utmost role in the perform...
Organic/metal interfaces control the performance of many optoelectronic organic devices, including o...
Controlling charge doping in organic semiconductors represents one of the key challenges in organic ...
The adsorption of aromatic molecules onmetal surfaces leads to a complex reorganization of the molec...
We investigate the molecular acceptors 3,4,9,10-perylene-tetracarboxylic acid dianhydride (PTCDA), 2...
We employ a variant of optical absorption spectroscopy, namely in situ differential reflectance spec...
Hybrid interfaces between organic molecules and inorganic substrates are key systems in many technol...
A detailed understanding of the organic molecule/substrate interface is of crucial importance for th...
The field of organic-based opto-electronic devices such as organic light- emitting diodes (OLEDs) or...
It is becoming accepted that ultrathin dielectric layers on metals are not merely passive decoupling...
Organic/metal interfaces control the performance of many optoelectronic organic devices, including o...
The compressed 3,4,9,10-perylene tetracarboxylic dianhydride (PTCDA) herringbone monolayer structure...
Understanding organic semiconductor interfaces is critical to developing organic photovoltaics (OPV)...