Efficient long-range energy transport along supramolecular architectures of functional organic molecules is a key step in nature for converting sunlight into a useful form of energy. Understanding and manipulating these transport processes on a molecular and supramolecular scale is a long-standing goal. However, the realization of a well-defined system that allows for tuning morphology and electronic properties as well as for resolution of transport in space and time is challenging. Here we show how the excited-state energy landscape and thus the coherence characteristics of electronic excitations can be modified by the hierarchical level of H-type supramolecular architectures. We visualize, at room temperature, long-range incoherent transp...
Recent evidence suggests that quantum coherence enhances excitation energy transfer (EET) through in...
Photophysical properties of molecular aggregates are largely determined by exciton coherence size: a...
Quantum properties like coherence and entanglement can lead to enhanced performance characteristics ...
Efficient long-range energy transport along supramolecular architectures of functional organic molec...
Under physiological conditions, ballistic long-range transfer of electronic excitations in molecular...
Nature's photosynthetic machinery uses precisely arranged pigment-protein complexes, often represent...
Long-range exciton transport, when coupled with reduced exciton-exciton annihilation (EEA), is pivot...
Efficient energy transport is desirable in organic semiconductor (OSC) devices. However, photogenera...
© 2017 American Chemical Society. Self-assembled aggregates of pigment molecules are potential build...
18 pags., 14 figs., 5 apps.Self-assembled supramolecular aggregates are excellent candidates for the...
We report 1.6 ± 1 μm exciton transport in self-assembled supramolecular light-harvesting nanotubes (...
Efficient energy transport over long distances is essential for optoelectronic and light-harvesting ...
Nature's highly efficient light-harvesting antennae, such as those found in green sulfur bacteria, c...
Efficient energy transport is desirable in organic semiconductor (OSC) devices. However, photogenera...
Directed transport of singlet excitation energy is a key process in natural light-harvesting systems...
Recent evidence suggests that quantum coherence enhances excitation energy transfer (EET) through in...
Photophysical properties of molecular aggregates are largely determined by exciton coherence size: a...
Quantum properties like coherence and entanglement can lead to enhanced performance characteristics ...
Efficient long-range energy transport along supramolecular architectures of functional organic molec...
Under physiological conditions, ballistic long-range transfer of electronic excitations in molecular...
Nature's photosynthetic machinery uses precisely arranged pigment-protein complexes, often represent...
Long-range exciton transport, when coupled with reduced exciton-exciton annihilation (EEA), is pivot...
Efficient energy transport is desirable in organic semiconductor (OSC) devices. However, photogenera...
© 2017 American Chemical Society. Self-assembled aggregates of pigment molecules are potential build...
18 pags., 14 figs., 5 apps.Self-assembled supramolecular aggregates are excellent candidates for the...
We report 1.6 ± 1 μm exciton transport in self-assembled supramolecular light-harvesting nanotubes (...
Efficient energy transport over long distances is essential for optoelectronic and light-harvesting ...
Nature's highly efficient light-harvesting antennae, such as those found in green sulfur bacteria, c...
Efficient energy transport is desirable in organic semiconductor (OSC) devices. However, photogenera...
Directed transport of singlet excitation energy is a key process in natural light-harvesting systems...
Recent evidence suggests that quantum coherence enhances excitation energy transfer (EET) through in...
Photophysical properties of molecular aggregates are largely determined by exciton coherence size: a...
Quantum properties like coherence and entanglement can lead to enhanced performance characteristics ...