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Published on: June 3, 2015
Organic nanodielectrics for low voltage carbon nanotube thin film transistors and complementary logic gates
Seung-Hyun Hur1, Myung-Han Yoon, Anshu Gaur
1Department of Materials and Science Engineering, Chemistry, Beckman Institute, University of Illinois, Urbana, Illinois 61801, USA.
Abstract:
We report the implementation of three dimensionally cross-linked, organic nanodielectric multilayers as ultrathin gate dielectrics for a type of thin film transistor device that uses networks of single-walled carbon nanotubes as effective semiconductor thin films. Unipolar n- and p-channel devices are demonstrated by use of polymer coatings to control the behavior of the networks. Monolithically integrating these devices yields complementary logic gates. The organic multilayers provide exceptionally good gate dielectrics for these systems and allow for low voltage, low hysteresis operation. The excellent performance characteristics suggest that organic dielectrics of this general type could provide a promising path to SWNT-based thin film electronics.

