Funneling excitation energy toward lower energy excited states is a key concept in photosynthesis, which is often realized with at most two chemically different types of pigment molecules. However, current synthetic approaches to establish energy funnels, or gradients, typically rely on Förster-type energy-transfer cascades along many chemically different molecules. Here, we demonstrate an elegant concept for a gradient in the excited-state energy landscape along micrometer-long supramolecular nanofibers based on the conjugated polymer poly(3-hexylthiophene), P3HT, as the single component. Precisely aligned P3HT nanofibers within a supramolecular superstructure are prepared by solution processing involving an efficient supramolecular nuclea...
Supramolecular assemblies that interact with light have recently garnered much interest as well-defi...
This thesis reports on the fabrication and characterisation of self-assembled nanofibres of poly(3-h...
University of Minnesota Ph.D. dissertation. July 2014. Major: Chemical Physics. Advisor:David A. Bla...
Funneling excitation energy toward lower energy excited states is a key concept in photosynthesis, w...
Plastic electronics have an essential role in the future technologies owing to their compelling char...
Understanding the mechanisms of long-range energy transfer through polychromophoric assemblies is cr...
Nature's photosynthetic machinery uses precisely arranged pigment-protein complexes, often represent...
Under certain conditions the conjugated polymer poly(3-hexylthiophene) (P3HT) self-assembles into hi...
The spectral breadth of conjugated polymers gives these materials a clear advantage over other molec...
We show that mechanically and chemically robust functionalized poly(3-hexylthiophene) (P3HT) nanofib...
Published: June 7, 2017The excited states of conjugated polymers play a central role in their applic...
The morphology dependence of exciton transport in the widely used conjugated polymer poly(3-hexylthi...
The morphology dependence of exciton transport in the widely used conjugated polymer poly(3-hexylth...
The generation of charge carriers in organic photovoltaic devices requires exciton diffusion to an i...
We fabricated hybrid poly(3-hexylthiophene) nano fibers (P3HT NFs) with rigid backbone organization ...
Supramolecular assemblies that interact with light have recently garnered much interest as well-defi...
This thesis reports on the fabrication and characterisation of self-assembled nanofibres of poly(3-h...
University of Minnesota Ph.D. dissertation. July 2014. Major: Chemical Physics. Advisor:David A. Bla...
Funneling excitation energy toward lower energy excited states is a key concept in photosynthesis, w...
Plastic electronics have an essential role in the future technologies owing to their compelling char...
Understanding the mechanisms of long-range energy transfer through polychromophoric assemblies is cr...
Nature's photosynthetic machinery uses precisely arranged pigment-protein complexes, often represent...
Under certain conditions the conjugated polymer poly(3-hexylthiophene) (P3HT) self-assembles into hi...
The spectral breadth of conjugated polymers gives these materials a clear advantage over other molec...
We show that mechanically and chemically robust functionalized poly(3-hexylthiophene) (P3HT) nanofib...
Published: June 7, 2017The excited states of conjugated polymers play a central role in their applic...
The morphology dependence of exciton transport in the widely used conjugated polymer poly(3-hexylthi...
The morphology dependence of exciton transport in the widely used conjugated polymer poly(3-hexylth...
The generation of charge carriers in organic photovoltaic devices requires exciton diffusion to an i...
We fabricated hybrid poly(3-hexylthiophene) nano fibers (P3HT NFs) with rigid backbone organization ...
Supramolecular assemblies that interact with light have recently garnered much interest as well-defi...
This thesis reports on the fabrication and characterisation of self-assembled nanofibres of poly(3-h...
University of Minnesota Ph.D. dissertation. July 2014. Major: Chemical Physics. Advisor:David A. Bla...