International audienceThis review summarizes the current understanding of electrostatic phenomena in ordered and disordered organic semiconductors, outlines numerical schemes developed for quantitative evaluation of electrostatic and induction contributions to ionization potentials and electron affinities of organic molecules in a solid state, and illustrates two applications of these techniques: interpretation of photoelectron spectroscopy of thin films and energetics of heterointerfaces in organic solar cells
The built-in voltage in solar cells has a significant influence on the extraction of photogenerated ...
In this short review, we will give examples on how photoelectron spectroscopy (PES) assisted by mode...
ConspectusIn the past two decades, organic materials have been extensively investigated by numerous ...
This review summarizes the current understanding of electrostatic phenomena in ordered and disordere...
The extraordinary semiconducting properties of conjugated organic materials continue to attract atte...
Energy levels of organic molecular films exert paramount influence on the electronic properties of o...
Exciton dissociation at organic semiconductor interfaces is an important process for the design of f...
none5siImproving the performance of organic photovoltaic cells requires the individuation of the spe...
In this paper, the properties of organic charge-transport materials are investigated. Nowadays, orga...
The physics of organic semiconductors is dominated by the effects of energetic disorder. We show tha...
Energy level engineering has become one of the central ideas in organic optoelectronics; particularl...
We study the evolution of the electric surface potential for small molecular organic semiconductors ...
This dissertation details work done on two different descriptions of charge transport. The first top...
A key breakthrough in modern electronics was the introduction of band structure engineering, the des...
Organic semiconductors are disordered molecular solids, and as a result, their internal charge gener...
The built-in voltage in solar cells has a significant influence on the extraction of photogenerated ...
In this short review, we will give examples on how photoelectron spectroscopy (PES) assisted by mode...
ConspectusIn the past two decades, organic materials have been extensively investigated by numerous ...
This review summarizes the current understanding of electrostatic phenomena in ordered and disordere...
The extraordinary semiconducting properties of conjugated organic materials continue to attract atte...
Energy levels of organic molecular films exert paramount influence on the electronic properties of o...
Exciton dissociation at organic semiconductor interfaces is an important process for the design of f...
none5siImproving the performance of organic photovoltaic cells requires the individuation of the spe...
In this paper, the properties of organic charge-transport materials are investigated. Nowadays, orga...
The physics of organic semiconductors is dominated by the effects of energetic disorder. We show tha...
Energy level engineering has become one of the central ideas in organic optoelectronics; particularl...
We study the evolution of the electric surface potential for small molecular organic semiconductors ...
This dissertation details work done on two different descriptions of charge transport. The first top...
A key breakthrough in modern electronics was the introduction of band structure engineering, the des...
Organic semiconductors are disordered molecular solids, and as a result, their internal charge gener...
The built-in voltage in solar cells has a significant influence on the extraction of photogenerated ...
In this short review, we will give examples on how photoelectron spectroscopy (PES) assisted by mode...
ConspectusIn the past two decades, organic materials have been extensively investigated by numerous ...