The electrical conductivity and morphological characteristics of two conjugated polymers, P3HT and PCPDTBT, p-doped with the strong electron acceptor tetrafluoro-tetracyanoquinodimethane (F4-TCNQ) are studied as a function of dopant concentration. By combining scanning and transmission electron microscopy, SEM and TEM, with electrical characterization, we observe a correlation between the saturation in electrical conductivity and the formation of dopant rich clusters. We demonstrate that SEM is a useful technique to observe imaging contrast for locating doped regions in thin polymer films, while in parallel monitoring the surface morphology. The results are relevant for the understanding of structure property relationships in doped conjugat...
Characterizing doping effects in a conductive polymer and physical diffusion in a passive polymer we...
Molecular doping is a method used to increase the charge carrier concentration within organic semico...
The electrical performance of doped semiconducting polymers is strongly governed by processing metho...
The electrical conductivity and morphological characteristics of two conjugated polymers, P3HT and P...
While molecular doping is ubiquitous in all branches of organic electronics, little is known about t...
Doping polymeric semiconductors often drastically reduces the solubility of the polymer, leading to ...
Electrical doping of organic semiconductors is critical for their use in electrical devices. However...
International audienceThe polymer Poly[(4,8-bis-(2-ethylhexyloxy)-benzo(1,2-b:4,5-b’)dithiophene)-2,...
Polymeric semiconductors show potential as materials for electronic applications unrealizable by ino...
Since their discovery, semiconducting conjugated polymers have shown great promise as active materia...
We have successfully measured electron transport nanostructures of conjugated polymer thin films by ...
Nanoscale properties of conjugated polymers by Scanning Probe Microscopy Atomic force microscopy (AF...
Molecular p-doping of the conjugated polymer poly(3-hexylthiophene) (P3HT) with 2,3,5,6-tetrafluoro-...
Organic semiconductors enable fabrication and efficient processing of electronic devices with light ...
This work is focused on understanding how molecular-level structural control can improve charge carr...
Characterizing doping effects in a conductive polymer and physical diffusion in a passive polymer we...
Molecular doping is a method used to increase the charge carrier concentration within organic semico...
The electrical performance of doped semiconducting polymers is strongly governed by processing metho...
The electrical conductivity and morphological characteristics of two conjugated polymers, P3HT and P...
While molecular doping is ubiquitous in all branches of organic electronics, little is known about t...
Doping polymeric semiconductors often drastically reduces the solubility of the polymer, leading to ...
Electrical doping of organic semiconductors is critical for their use in electrical devices. However...
International audienceThe polymer Poly[(4,8-bis-(2-ethylhexyloxy)-benzo(1,2-b:4,5-b’)dithiophene)-2,...
Polymeric semiconductors show potential as materials for electronic applications unrealizable by ino...
Since their discovery, semiconducting conjugated polymers have shown great promise as active materia...
We have successfully measured electron transport nanostructures of conjugated polymer thin films by ...
Nanoscale properties of conjugated polymers by Scanning Probe Microscopy Atomic force microscopy (AF...
Molecular p-doping of the conjugated polymer poly(3-hexylthiophene) (P3HT) with 2,3,5,6-tetrafluoro-...
Organic semiconductors enable fabrication and efficient processing of electronic devices with light ...
This work is focused on understanding how molecular-level structural control can improve charge carr...
Characterizing doping effects in a conductive polymer and physical diffusion in a passive polymer we...
Molecular doping is a method used to increase the charge carrier concentration within organic semico...
The electrical performance of doped semiconducting polymers is strongly governed by processing metho...