Delocalization of excited states of organic semiconductors is directly related to their efficiency in devices. Time-resolved electron paramagnetic resonance spectroscopy provides unique capabilities in this respect because of its high spectral resolution and capability to probe the geometry and extent of excitons. Using magnetophotoselection experiments, the mode of exciton delocalization, along the backbone or parallel to the pi-pi stacking direction of the conjugated polymers, can be revealed. We demonstrate the robustness of this approach by applying it to building blocks of a prototypical conjugated polymer showing a symmetry of their excited states being far from ideal for this experiment. This renders magnetophotoselection superior to...
In the presented thesis, the various excited states encountered in conjugated organic semiconductors...
Understanding the electronic structure of semiconducting polymers and their respective building bloc...
Time-resolved electron paramagnetic resonance (TREPR) spectroscopy is shown to be a powerful tool to...
Delocalization of excited states of organic semiconductors is directly related to their efficiency i...
Delocalization of excited states of organic semiconductors is directly related to their efficiency i...
Processing from solution is a crucial aspect of organic semiconductors, as it is at the heart of the...
We investigate the spin-dependent opto-electronic pathways of organic semiconductors using pulsed el...
Insight into the electronic structure of conjugated polymers used for organic electronics applicatio...
Since the discovery of electroluminescence in the phenyl-based conjugated polymers in 1990, the fiel...
The performance of organic semiconductor devices is heavily dependent on the precise molecular-level...
Conformational and energetic disorder in organic semiconductors reduces charge and exciton transport...
Quantifying the spin-spin interactions which influence electronic transitions in organic semiconduct...
Organic semiconductors are increasingly important in our daily lives. Hence, gaining insights into t...
Conformational and energetic disorder in organic semiconductors reduces charge and exciton transport...
An appealing avenue for organic spintronics lies in direct coherent control of the spin population b...
In the presented thesis, the various excited states encountered in conjugated organic semiconductors...
Understanding the electronic structure of semiconducting polymers and their respective building bloc...
Time-resolved electron paramagnetic resonance (TREPR) spectroscopy is shown to be a powerful tool to...
Delocalization of excited states of organic semiconductors is directly related to their efficiency i...
Delocalization of excited states of organic semiconductors is directly related to their efficiency i...
Processing from solution is a crucial aspect of organic semiconductors, as it is at the heart of the...
We investigate the spin-dependent opto-electronic pathways of organic semiconductors using pulsed el...
Insight into the electronic structure of conjugated polymers used for organic electronics applicatio...
Since the discovery of electroluminescence in the phenyl-based conjugated polymers in 1990, the fiel...
The performance of organic semiconductor devices is heavily dependent on the precise molecular-level...
Conformational and energetic disorder in organic semiconductors reduces charge and exciton transport...
Quantifying the spin-spin interactions which influence electronic transitions in organic semiconduct...
Organic semiconductors are increasingly important in our daily lives. Hence, gaining insights into t...
Conformational and energetic disorder in organic semiconductors reduces charge and exciton transport...
An appealing avenue for organic spintronics lies in direct coherent control of the spin population b...
In the presented thesis, the various excited states encountered in conjugated organic semiconductors...
Understanding the electronic structure of semiconducting polymers and their respective building bloc...
Time-resolved electron paramagnetic resonance (TREPR) spectroscopy is shown to be a powerful tool to...