Aligned polymer nanofibres are prepared by means of the electrospinning of a chlorobenzene solution containing regioregular poly(3-hexyltiophene-2,5-diyl), P3HT, and poly(ethylene oxide), PEO. The PEO scaffold is easily dissolved with acetonitrile, leaving pure P3HT fibres, which do not show structural modification. Polymer fibres, either with or without the PEO supporting polymer, are effectively doped by exposure to iodine vapours. Doping is monitored following the changes in the doping-induced vibrational bands (IRAVs) observed in the infrared spectra and by means of Raman spectroscopy. Molecular orientation inside the fibres has been assessed by means of IR experiments in polarised light, clearly demonstrating that electrospinning induc...
Optical properties of blends made of poly(9,9-dioctyl-fluorene-2,7-diyl) (PFO) and poly(3-hexylthiop...
In order to gain a deeper understanding of the interplay between microstructure and functional prope...
Due to the “insulation” of the π-conjugated backbones, insulated molecular wires (IMWs) are expected...
Aligned polymer nanofibres are prepared by means of the electrospinning of a chlorobenzene solution ...
The nature of polaron formation has profound implications on the transport of charge carriers in con...
Molecular doping is a key process to increase the density of charge carriers in organic semiconducto...
Charge transfer doping efficiencies of π-stacked poly(3-hexylthiophene) (P3HT) aggregate nanofibers...
Solution processable organic semiconducting polymers show favourable properties for applications in ...
This thesis reports on the fabrication and characterisation of self-assembled nanofibres of poly(3-h...
Plastic electronics have an essential role in the future technologies owing to their compelling char...
Understanding and controlling polymer semiconductor morphology is critical to achieving high charge ...
The recent development of photonics and applications puts new challenges for systems using emission,...
The orientation dependence in space of Raman-active vibrations in the hexagonal structure of polyoxy...
The molecular orientation in polymer fibers is investigated for the purpose of enhancing their optic...
A novel method for functionalising solution based polyaniline (PAni) nanofibres is reported whereby ...
Optical properties of blends made of poly(9,9-dioctyl-fluorene-2,7-diyl) (PFO) and poly(3-hexylthiop...
In order to gain a deeper understanding of the interplay between microstructure and functional prope...
Due to the “insulation” of the π-conjugated backbones, insulated molecular wires (IMWs) are expected...
Aligned polymer nanofibres are prepared by means of the electrospinning of a chlorobenzene solution ...
The nature of polaron formation has profound implications on the transport of charge carriers in con...
Molecular doping is a key process to increase the density of charge carriers in organic semiconducto...
Charge transfer doping efficiencies of π-stacked poly(3-hexylthiophene) (P3HT) aggregate nanofibers...
Solution processable organic semiconducting polymers show favourable properties for applications in ...
This thesis reports on the fabrication and characterisation of self-assembled nanofibres of poly(3-h...
Plastic electronics have an essential role in the future technologies owing to their compelling char...
Understanding and controlling polymer semiconductor morphology is critical to achieving high charge ...
The recent development of photonics and applications puts new challenges for systems using emission,...
The orientation dependence in space of Raman-active vibrations in the hexagonal structure of polyoxy...
The molecular orientation in polymer fibers is investigated for the purpose of enhancing their optic...
A novel method for functionalising solution based polyaniline (PAni) nanofibres is reported whereby ...
Optical properties of blends made of poly(9,9-dioctyl-fluorene-2,7-diyl) (PFO) and poly(3-hexylthiop...
In order to gain a deeper understanding of the interplay between microstructure and functional prope...
Due to the “insulation” of the π-conjugated backbones, insulated molecular wires (IMWs) are expected...