Utilizing carbon nanotube electrodes to improve charge injection and transport in bis(trifluoromethyl)-dimethyl-rubrene ambipolar single crystal transistors.

@article{Xie2013UtilizingCN,
  title={Utilizing carbon nanotube electrodes to improve charge injection and transport in bis(trifluoromethyl)-dimethyl-rubrene ambipolar single crystal transistors.},
  author={Wei Xie and Pradyumna L Prabhumirashi and Yasuo Nakayama and Kathryn A. McGarry and Michael Geier and Yuki Uragami and Kazuhiko Mase and Christopher J Douglas and Hisao Ishii and Mark C. Hersam and C. Daniel Frisbie},
  journal={ACS nano},
  year={2013},
  volume={7 11},
  pages={10245-56}
}
We have examined the significant enhancement of ambipolar charge injection and transport properties of bottom-contact single crystal field-effect transistors (SC-FETs) based on a new rubrene derivative, bis(trifluoromethyl)-dimethyl-rubrene (fm-rubrene), by employing carbon nanotube (CNT) electrodes. The fundamental challenge associated with fm-rubrene crystals is their deep-lying HOMO and LUMO energy levels, resulting in inefficient hole injection and suboptimal electron injection from… CONTINUE READING

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