Predicting the interactions between a semiconducting polymer and dopant is not straightforward due to the intrinsic structural and energetic disorder in polymeric systems. Although the driving force for efficient charge transfer depends on a favorable offset between the electron donor and acceptor, we demonstrate that the efficacy of doping also relies on structural constraints of incorporating a dopant molecule into the semiconducting polymer film. Here, we report the evolution in spectroscopic and electrical properties of a model conjugated polymer upon exposure to two dopant types: one that directly oxidizes the polymeric backbone and one that protonates the polymer backbone. Through vapor phase infiltration, the common charge transfer d...
We provide evidence for highly localized charge-transfer complex formation between a series of thiop...
A series of polythiophenes with varying side chain density was synthesized, and their electrical and...
The fundamental understanding of the influence of molecular structure on the carrier transport prope...
Molecular p-doping of the conjugated polymer poly(3-hexylthiophene) (P3HT) with 2,3,5,6-tetrafluoro-...
Molecular doping is a method used to increase the charge carrier concentration within organic semico...
Electrical doping of organic semiconductors is critical for their use in electrical devices. However...
Ground-state integer charge transfer is commonly regarded as the basic mechanism of molecular electr...
Conjugated semiconducting polymers, such as poly(3-hexylthiophene) (P3HT), are poised to play an int...
The interplay between inter- and intrachain charge transport in bulk polythiophene in the hopping re...
The electrical conductivity of organic semiconductors can be enhanced by orders of magnitude via dop...
The electrical conductivity of organic semiconductors can be enhanced by orders of magnitude via do...
Reported here is a characterization of a series of NDI–thiophene copolymers with one, two, three, an...
We provide evidence for highly localized charge-transfer complex formation between a series of thiop...
Although extensive efforts have been devoted to understanding electronic transport in conjugated pol...
Disorder of doped conjugated polymers, which affects how effectively charge carriers are transported...
We provide evidence for highly localized charge-transfer complex formation between a series of thiop...
A series of polythiophenes with varying side chain density was synthesized, and their electrical and...
The fundamental understanding of the influence of molecular structure on the carrier transport prope...
Molecular p-doping of the conjugated polymer poly(3-hexylthiophene) (P3HT) with 2,3,5,6-tetrafluoro-...
Molecular doping is a method used to increase the charge carrier concentration within organic semico...
Electrical doping of organic semiconductors is critical for their use in electrical devices. However...
Ground-state integer charge transfer is commonly regarded as the basic mechanism of molecular electr...
Conjugated semiconducting polymers, such as poly(3-hexylthiophene) (P3HT), are poised to play an int...
The interplay between inter- and intrachain charge transport in bulk polythiophene in the hopping re...
The electrical conductivity of organic semiconductors can be enhanced by orders of magnitude via dop...
The electrical conductivity of organic semiconductors can be enhanced by orders of magnitude via do...
Reported here is a characterization of a series of NDI–thiophene copolymers with one, two, three, an...
We provide evidence for highly localized charge-transfer complex formation between a series of thiop...
Although extensive efforts have been devoted to understanding electronic transport in conjugated pol...
Disorder of doped conjugated polymers, which affects how effectively charge carriers are transported...
We provide evidence for highly localized charge-transfer complex formation between a series of thiop...
A series of polythiophenes with varying side chain density was synthesized, and their electrical and...
The fundamental understanding of the influence of molecular structure on the carrier transport prope...