Doping to enhance the electrical conductivity of organic semiconductors is not without its challenges: The efficacy of this process depends on many factors and it is not always clear how to remedy poor doping. In the case of doping with salts, one of the possible causes of poor doping is a limited yield of integer charge transfer resulting in the presence of both cations and anions in the film. The charge of such ions can severely limit the electrical conductivity, but their presence is not easily determined. Here we introduce a set of simple conductivity measurements to determine whether poor doping in the case where the dopant is a salt is due to limited integer charge transfer. By tracking how the conductivity changes over time when appl...
Semiconductor films that allow facile ion transport can be electronically doped via electrochemistry...
The properties of organic semiconductors make them well-suited for certain applications in electroni...
Polymeric semiconductors show potential as materials for electronic applications unrealizable by ino...
Doping to enhance the electrical conductivity of organic semiconductors is not without its challenge...
Ionizing chemical dopants are widely used in organic semiconductors to enhance the charge transport ...
High electrical conductivity is a prerequisite for improving the performance of organic semiconducto...
Doping is an extremely important process where intentional insertion of impurities in semiconductors...
Conductivity doping of organic semiconductors is an essential prerequisite for many organic devices,...
International audienceDoped organic semiconductors are critical to emerging device applications, inc...
We report an unusual transition in the conductivity of an organic semiconductor upon doping: For low...
Organic semiconductors (OSCs) have incredible prospects for next-generation, flexible electronic dev...
A method to determine the doping induced charge carrier profiles in lightly and moderately doped org...
Enhancing the dielectric permittivity of organic semiconductors may open new opportunities to contro...
One of the most commonly used cathode interlayers for increasing the efficiency of electron injectio...
Molecular doping is a method used to increase the charge carrier concentration within organic semico...
Semiconductor films that allow facile ion transport can be electronically doped via electrochemistry...
The properties of organic semiconductors make them well-suited for certain applications in electroni...
Polymeric semiconductors show potential as materials for electronic applications unrealizable by ino...
Doping to enhance the electrical conductivity of organic semiconductors is not without its challenge...
Ionizing chemical dopants are widely used in organic semiconductors to enhance the charge transport ...
High electrical conductivity is a prerequisite for improving the performance of organic semiconducto...
Doping is an extremely important process where intentional insertion of impurities in semiconductors...
Conductivity doping of organic semiconductors is an essential prerequisite for many organic devices,...
International audienceDoped organic semiconductors are critical to emerging device applications, inc...
We report an unusual transition in the conductivity of an organic semiconductor upon doping: For low...
Organic semiconductors (OSCs) have incredible prospects for next-generation, flexible electronic dev...
A method to determine the doping induced charge carrier profiles in lightly and moderately doped org...
Enhancing the dielectric permittivity of organic semiconductors may open new opportunities to contro...
One of the most commonly used cathode interlayers for increasing the efficiency of electron injectio...
Molecular doping is a method used to increase the charge carrier concentration within organic semico...
Semiconductor films that allow facile ion transport can be electronically doped via electrochemistry...
The properties of organic semiconductors make them well-suited for certain applications in electroni...
Polymeric semiconductors show potential as materials for electronic applications unrealizable by ino...