The authors study the contact resistance of gold-pentacene interface by applying the transmission-line method to a few monolayers thick pentacene films in thin film transistor geometry. It was found that tetrafluorotetracyanoquinodimethane (F(4)TCNQ) doping reduces the contact resistance by more than a factor of 20. In addition, a significant improvement of the conductance of pentacene nanocrystals self-assembled on 10 nm gap Au nanojunction devices by F(4)TCNQ doping is observed. The result demonstrates the importance of doping on the performance of organic electronic devices from 10 nm scale up to 100 mu m scale. (C) 2007 American Institute of Physics
Pentacene field-effect transistor performance can be improved by modifying metal electrodes with sel...
n-channel organic thin film transistors were fabricated on polyethylene naphthalate substrates. The ...
We show that the performance of pentacene transistors can be significantly improved by maximizing th...
The authors study temperature dependent electrical transport in pristine and tetrafluorotetracyanoqu...
To investigate the effects of metal penetration into organic semiconductors on the electrical proper...
AbstractBy electrochemically p-doping pentacene in the vicinity of the source-drain electrodes in or...
© 2010 American Institute of Physics. The electronic version of this article is the complete one and...
Molecular surface doping was studied for organic thin film transistors consisting of an active layer...
Abstract The geometrical arrangement of single-molecule-high islands and the contact between them ha...
Efficient injection of charge carriers from the contacts into the semiconductor layer is crucial for...
The contact resistance between organic semiconductors and metallic electrodesaffectsthe performance ...
Surface modifications of the dielectric and the metal of pentacene-based field effect transistors us...
We report ambipolar transport in bottom gold contact, pentacene field-effect transistors (FETs) fabr...
AbstractIn this work we present in situ electrical and surface analytical, as well as ex situ atomic...
International audienceThe aim of this work is to improve charge injection by interposing an appropri...
Pentacene field-effect transistor performance can be improved by modifying metal electrodes with sel...
n-channel organic thin film transistors were fabricated on polyethylene naphthalate substrates. The ...
We show that the performance of pentacene transistors can be significantly improved by maximizing th...
The authors study temperature dependent electrical transport in pristine and tetrafluorotetracyanoqu...
To investigate the effects of metal penetration into organic semiconductors on the electrical proper...
AbstractBy electrochemically p-doping pentacene in the vicinity of the source-drain electrodes in or...
© 2010 American Institute of Physics. The electronic version of this article is the complete one and...
Molecular surface doping was studied for organic thin film transistors consisting of an active layer...
Abstract The geometrical arrangement of single-molecule-high islands and the contact between them ha...
Efficient injection of charge carriers from the contacts into the semiconductor layer is crucial for...
The contact resistance between organic semiconductors and metallic electrodesaffectsthe performance ...
Surface modifications of the dielectric and the metal of pentacene-based field effect transistors us...
We report ambipolar transport in bottom gold contact, pentacene field-effect transistors (FETs) fabr...
AbstractIn this work we present in situ electrical and surface analytical, as well as ex situ atomic...
International audienceThe aim of this work is to improve charge injection by interposing an appropri...
Pentacene field-effect transistor performance can be improved by modifying metal electrodes with sel...
n-channel organic thin film transistors were fabricated on polyethylene naphthalate substrates. The ...
We show that the performance of pentacene transistors can be significantly improved by maximizing th...