Unambiguous information about spatiotemporal exciton dynamics in three-dimensional nanometer- to micrometer-sized organic structures is difficult to obtain experimentally. Exciton dynamics can be modified by annihilation processes, and different light propagation mechanisms can take place, such as active waveguiding and photon recycling. Since these various processes and mechanisms can lead to similar spectroscopic and microscopic signatures on comparable time scales, their discrimination is highly demanding. Here, we study individual organic single crystals grown from thiophene-based oligomers. We use time-resolved detection-beam scanning microscopy to excite a local singlet exciton population and monitor the subsequent broadening of the p...
Understanding the spatial dynamics of nanoscale exciton transport beyond the temporal decay is essen...
Natural light-harvesting antennae employ a dense array of chromophores to optimize energy transport ...
Directed transport of singlet excitation energy is a key process in natural light-harvesting systems...
Unambiguous information about spatiotemporal exciton dynamics in three-dimensional nanometer- to mic...
Exciton transport in most organic materials is based on an incoherent hopping process between neighb...
ABSTRACT: Exciton or energy transport in organic crystals is commonly described by a series of incoh...
This thesis focuses on the development and application of new methods for spatially and temporally r...
Using diffraction-limited ultrafast imaging techniques, we investigate the propagation of singlet an...
Transport of nanoscale energy in the form of excitons is at the core of photosynthesis and the opera...
A fundamental question relating to the nature of light emission and absorption in organic semiconduc...
Excitons are quasi-particles, which are responsible for energy transport in organic semiconductors. ...
Exciton or energy transport in organic crystals is commonly described by a series of incoherent hopp...
Efficient energy transport is desirable in organic semiconductor (OSC) devices. However, photogenera...
The movement of excitons is fundamental to many light harvesting systems. This dissertation describe...
We study exciton migration in low molecular weight poly[3-(2,5-dioctylphenyl)thiophene] in dilute so...
Understanding the spatial dynamics of nanoscale exciton transport beyond the temporal decay is essen...
Natural light-harvesting antennae employ a dense array of chromophores to optimize energy transport ...
Directed transport of singlet excitation energy is a key process in natural light-harvesting systems...
Unambiguous information about spatiotemporal exciton dynamics in three-dimensional nanometer- to mic...
Exciton transport in most organic materials is based on an incoherent hopping process between neighb...
ABSTRACT: Exciton or energy transport in organic crystals is commonly described by a series of incoh...
This thesis focuses on the development and application of new methods for spatially and temporally r...
Using diffraction-limited ultrafast imaging techniques, we investigate the propagation of singlet an...
Transport of nanoscale energy in the form of excitons is at the core of photosynthesis and the opera...
A fundamental question relating to the nature of light emission and absorption in organic semiconduc...
Excitons are quasi-particles, which are responsible for energy transport in organic semiconductors. ...
Exciton or energy transport in organic crystals is commonly described by a series of incoherent hopp...
Efficient energy transport is desirable in organic semiconductor (OSC) devices. However, photogenera...
The movement of excitons is fundamental to many light harvesting systems. This dissertation describe...
We study exciton migration in low molecular weight poly[3-(2,5-dioctylphenyl)thiophene] in dilute so...
Understanding the spatial dynamics of nanoscale exciton transport beyond the temporal decay is essen...
Natural light-harvesting antennae employ a dense array of chromophores to optimize energy transport ...
Directed transport of singlet excitation energy is a key process in natural light-harvesting systems...