The enhancement and control of the electrical conductivity of organic semiconductors is fundamental for their use in optoelectronic applications and can be achieved by molecular doping, which introduces additional charge carriers through electron transfer between a dopant molecule and the organic semiconductor. Here, we use Electron Paramagnetic Resonance (EPR) spectroscopy to characterise the unpaired spins associated with the charges generated by molecular doping of the prototypical organic semiconductor poly(3-hexylthiophene) (P3HT) with 2,3,5,6-tetrafluoro-7,7,8,8-tetracyanoquinodimethane (F4TCNQ) and tris(pentafluorophenyl)borane (BCF). The EPR results reveal the P3HT radical cation as the only paramagnetic species in BCF-doped P3HT fi...
In the presented thesis, the various excited states encountered in conjugated organic semiconductors...
Efficient electrical doping of organic semiconductors is a necessary prerequisite for the fabricatio...
Delocalization of excited states of organic semiconductors is directly related to their efficiency i...
The enhancement and control of the electrical conductivity of organic semiconductors is fundamental ...
We use the electron spin as a probe to gain insight into the mechanism of molecular doping in a p-do...
International audienceMolecular doping strategies facilitate orders of magnitude enhancement in the ...
The results of an investigation at different (10-140 GHz) wavebands EPR of magnetic, relaxation and ...
\u3cp\u3eOrganic semiconductors are interesting materials for spintronics applications because of th...
Electrical conductivity, FTIR spectroscopy and electro-optic effect in a novel nonconjugated conduct...
The doping efficiencies of regioregular (r-Re) and regiorandom (r-Ra) poly(3-hexylthiophene) (P3HT)...
Summary form only given. Organic semiconductors (OSC) such as conjugated polymers/molecules are enab...
We investigate the spin-dependent opto-electronic pathways of organic semiconductors using pulsed el...
Organic semiconductors exhibit exceptionally long spin lifetimes, and recent observations of the inv...
Research in recent years on novel materials in organic solar cells (OSCs) have contributed to a rapi...
his thesis details a morphological study of organic semiconductors (OSCs) that is dopedthrough the u...
In the presented thesis, the various excited states encountered in conjugated organic semiconductors...
Efficient electrical doping of organic semiconductors is a necessary prerequisite for the fabricatio...
Delocalization of excited states of organic semiconductors is directly related to their efficiency i...
The enhancement and control of the electrical conductivity of organic semiconductors is fundamental ...
We use the electron spin as a probe to gain insight into the mechanism of molecular doping in a p-do...
International audienceMolecular doping strategies facilitate orders of magnitude enhancement in the ...
The results of an investigation at different (10-140 GHz) wavebands EPR of magnetic, relaxation and ...
\u3cp\u3eOrganic semiconductors are interesting materials for spintronics applications because of th...
Electrical conductivity, FTIR spectroscopy and electro-optic effect in a novel nonconjugated conduct...
The doping efficiencies of regioregular (r-Re) and regiorandom (r-Ra) poly(3-hexylthiophene) (P3HT)...
Summary form only given. Organic semiconductors (OSC) such as conjugated polymers/molecules are enab...
We investigate the spin-dependent opto-electronic pathways of organic semiconductors using pulsed el...
Organic semiconductors exhibit exceptionally long spin lifetimes, and recent observations of the inv...
Research in recent years on novel materials in organic solar cells (OSCs) have contributed to a rapi...
his thesis details a morphological study of organic semiconductors (OSCs) that is dopedthrough the u...
In the presented thesis, the various excited states encountered in conjugated organic semiconductors...
Efficient electrical doping of organic semiconductors is a necessary prerequisite for the fabricatio...
Delocalization of excited states of organic semiconductors is directly related to their efficiency i...