While molecular doping is ubiquitous in all branches of organic electronics, little is known about the spatial distribution of dopants, especially at molecular length scales. Moreover, a homogeneous distribution is often assumed when simulating transport properties of these materials, even though the distribution is expected to be inhomogeneous. In this study, electron tomography is used to determine the position of individual molybdenum dithiolene complexes and their three-dimensional distribution in a semiconducting polymer at the sub-nanometre scale. A heterogeneous distribution is observed, the characteristics of which depend on the dopant concentration. At 5 mol% of the molybdenum dithiolene complex, the majority of the dopant species ...
Doped organic semiconductors are critical to emerging device applications, including thermoelectrics...
Polymeric semiconductors show potential as materials for electronic applications unrealizable by ino...
Doping is one of the most important methods to control charge carrier concentration in semiconductor...
While molecular doping is ubiquitous in all branches of organic electronics, little is known about t...
While molecular doping is ubiquitous in all branches of organic electronics, little is known about t...
International audienceThe polymer Poly[(4,8-bis-(2-ethylhexyloxy)-benzo(1,2-b:4,5-b’)dithiophene)-2,...
The electrical conductivity and morphological characteristics of two conjugated polymers, P3HT and P...
Organic semiconductors enable fabrication and efficient processing of electronic devices with light ...
Molecular doping is a method used to increase the charge carrier concentration within organic semico...
Doping the electron-transport polymer poly{[N,N '-bis(2-octyldodecyl)naphthalene-1,4,5,8-bis(dicarbo...
International audienceDepending on the sample preparation protocol, various structures for doped sem...
Chemically doped poly[2,5-bis(3-alkylthiophen-2-yl)thieno[3,2-b]thiophene] (PBTTT) shows promise for...
Although there is an agreement about the local structural order of semiconducting polymers such as p...
Semiconducting polymers are a class of materials that engenders the solution processibility, mechani...
Doping of organic semiconductors is crucial for tuning the charge-carrier density of conjugated poly...
Doped organic semiconductors are critical to emerging device applications, including thermoelectrics...
Polymeric semiconductors show potential as materials for electronic applications unrealizable by ino...
Doping is one of the most important methods to control charge carrier concentration in semiconductor...
While molecular doping is ubiquitous in all branches of organic electronics, little is known about t...
While molecular doping is ubiquitous in all branches of organic electronics, little is known about t...
International audienceThe polymer Poly[(4,8-bis-(2-ethylhexyloxy)-benzo(1,2-b:4,5-b’)dithiophene)-2,...
The electrical conductivity and morphological characteristics of two conjugated polymers, P3HT and P...
Organic semiconductors enable fabrication and efficient processing of electronic devices with light ...
Molecular doping is a method used to increase the charge carrier concentration within organic semico...
Doping the electron-transport polymer poly{[N,N '-bis(2-octyldodecyl)naphthalene-1,4,5,8-bis(dicarbo...
International audienceDepending on the sample preparation protocol, various structures for doped sem...
Chemically doped poly[2,5-bis(3-alkylthiophen-2-yl)thieno[3,2-b]thiophene] (PBTTT) shows promise for...
Although there is an agreement about the local structural order of semiconducting polymers such as p...
Semiconducting polymers are a class of materials that engenders the solution processibility, mechani...
Doping of organic semiconductors is crucial for tuning the charge-carrier density of conjugated poly...
Doped organic semiconductors are critical to emerging device applications, including thermoelectrics...
Polymeric semiconductors show potential as materials for electronic applications unrealizable by ino...
Doping is one of the most important methods to control charge carrier concentration in semiconductor...