International audienceIn this study, we aim to improve our understanding of the doping mechanism involved in the polymer poly[(4,8-bis-(2-ethylhexyloxy)-benzo(1,2-b:4,5-b')dithiophene)-2,6-diyl-alt-(4-(2-ethylhexanoyl)-thieno[3,4-b]thiophene-)-2-6-diyl)] (PBDTTT-c) doped with tris[1-(trifluoroethanoyl)-2-(trifluoromethyl)ethane-1,2-dithiolene] [Mo(tfd-COCF3)(3)]. We follow the evolution of the hole density with dopant concentration to highlight the limits of organic semiconductor doping. To enable the use of doping to enhance the performance of organic electronic devices, doping efficiency must be understood and improved. We report here a study using complementary optical and electrical characterization techniques, which sheds some light on...
The field of organic electronics thrives on the hope of enabling low-cost, solution-processed electr...
The mechanism by which molecular dopants donate free charge carriers to the host organic semiconduct...
Organic semiconductors (OSCs) have incredible prospects for next-generation, flexible electronic dev...
International audienceIn this study, we aim to improve our understanding of the doping mechanism inv...
International audienceThe polymer Poly[(4,8-bis-(2-ethylhexyloxy)-benzo(1,2-b:4,5-b’)dithiophene)-2,...
Molecular doping is a method used to increase the charge carrier concentration within organic semico...
Although there is an agreement about the local structural order of semiconducting polymers such as p...
Described in this thesis are positive and negative molecular doping of conjugated polymers. These pr...
Electrical doping is essentially required for high-performance organic thermoelectric (TE) materials...
We demonstrate the key role of charge-transfer complexes in surface doping as a successful methodolo...
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...
Molecular doping of conjugated polymers represents an important strategy for improving organic elect...
A world that runs on electronic devices is here to stay. The widespread use of electronic devices in...
Doping is an effective strategy for controlling the charge density and device performance of thin-fi...
The field of organic electronics thrives on the hope of enabling low-cost, solution-processed electr...
The mechanism by which molecular dopants donate free charge carriers to the host organic semiconduct...
Organic semiconductors (OSCs) have incredible prospects for next-generation, flexible electronic dev...
International audienceIn this study, we aim to improve our understanding of the doping mechanism inv...
International audienceThe polymer Poly[(4,8-bis-(2-ethylhexyloxy)-benzo(1,2-b:4,5-b’)dithiophene)-2,...
Molecular doping is a method used to increase the charge carrier concentration within organic semico...
Although there is an agreement about the local structural order of semiconducting polymers such as p...
Described in this thesis are positive and negative molecular doping of conjugated polymers. These pr...
Electrical doping is essentially required for high-performance organic thermoelectric (TE) materials...
We demonstrate the key role of charge-transfer complexes in surface doping as a successful methodolo...
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...
Molecular doping of conjugated polymers represents an important strategy for improving organic elect...
A world that runs on electronic devices is here to stay. The widespread use of electronic devices in...
Doping is an effective strategy for controlling the charge density and device performance of thin-fi...
The field of organic electronics thrives on the hope of enabling low-cost, solution-processed electr...
The mechanism by which molecular dopants donate free charge carriers to the host organic semiconduct...
Organic semiconductors (OSCs) have incredible prospects for next-generation, flexible electronic dev...