Miniature Organic Transistors with Carbon Nanotubes as Quasi-One-Dimensional Electrodes
- 1 September 2004
- journal article
- research article
- Published by American Chemical Society (ACS) in Journal of the American Chemical Society
- Vol. 126 (38) , 11774-11775
- https://doi.org/10.1021/ja045900k
Abstract
As the dimensions of electronic devices approach those of molecules, the size, geometry, and chemical composition of the contact electrodes play increasingly dominant roles in device functions. It is shown here that single-walled carbon nanotubes (SWNT) can be used as quasi-one-dimensional (1D) electrodes to construct organic field effect transistors (FET) with molecular scale width (∼2 nm) and channel length (1−3 nm). An important feature owing to the quasi-1D electrode geometry is the favorable gate electrostatics that allows for efficient switching of ultra-short organic channels. This affords room temperature conductance modulation by orders of magnitude for organic transistors that are only several molecules in length, with switching characteristics superior to similar devices with lithographically patterned metal electrodes. With nanotubes, covalent carbon−carbon bonds could be utilized to form contacts to molecular materials. The unique geometrical, physical, and chemical properties of carbon nanotube electrodes may lead to various interesting molecular devices.Keywords
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This publication has 11 references indexed in Scilit:
- High-Field Quasiballistic Transport in Short Carbon NanotubesPhysical Review Letters, 2004
- Electrostatic potential profiles of molecular conductorsPhysical Review B, 2004
- Electrostatics of nanowire transistorsIEEE Transactions on Nanotechnology, 2003
- 30 nm Channel Length Pentacene TransistorsAdvanced Materials, 2003
- Ballistic carbon nanotube field-effect transistorsNature, 2003
- High-κ dielectrics for advanced carbon-nanotube transistors and logic gatesNature Materials, 2002
- Current-voltage characteristics of molecular conductors: two versus three terminalIEEE Transactions on Nanotechnology, 2002
- Carbon Nanotubes as Schottky Barrier TransistorsPhysical Review Letters, 2002
- Organic thin-film transistors: A review of recent advancesIBM Journal of Research and Development, 2001
- Fabrication of metallic electrodes with nanometer separation by electromigrationApplied Physics Letters, 1999