Fabrication and electrical characterization of circuits based on individual tin oxide nanowires
- 26 October 2006
- journal article
- Published by IOP Publishing in Nanotechnology
- Vol. 17 (22) , 5577-5583
- https://doi.org/10.1088/0957-4484/17/22/009
Abstract
Two- and four-probe electrical measurements on individual tin oxide (SnO(2)) nanowires were performed to evaluate their conductivity and contact resistance. Electrical contacts between the nanowires and the microelectrodes were achieved with the help of an electron- and ion-beam-assisted direct-write nanolithography process. High contact resistance values and the nonlinear current-bias (I-V) characteristics of some of these devices observed in two-probe measurements can be explained by the existence of back-to-back Schottky barriers arising from the platinum-nanowire contacts. The nanoscale devices described herein were characterized using impedance spectroscopy, enabling the development of an equivalent circuit. The proposed methodology of nanocontacting and measurements can be easily applied to other nanowires and nanometre-sized materials.Keywords
This publication has 22 references indexed in Scilit:
- Disorder Effects in Focused-Ion-Beam-Deposited Pt Contacts on GaN NanowiresNano Letters, 2005
- Rapid Prototyping of Site-Specific Nanocontacts by Electron and Ion Beam Assisted Direct-Write NanolithographyNano Letters, 2004
- Probing intrinsic transport properties of single metal nanowires: Direct-write contact formation using a focused ion beamJournal of Applied Physics, 2004
- SEMICONDUCTOR NANOWIRES AND NANOTUBESAnnual Review of Materials Research, 2004
- CHEMICAL SENSING AND CATALYSIS BY ONE-DIMENSIONAL METAL-OXIDE NANOSTRUCTURESAnnual Review of Materials Research, 2004
- Nonlinear current-voltage characteristics of Pt nanowires and nanowire transistors fabricated by electron-beam depositionApplied Physics Letters, 2003
- Making electrical contacts to nanowires with a thick oxide coatingNanotechnology, 2002
- Building carbon nanotubes and their smart architecturesSmart Materials and Structures, 2002
- Nanostructured advanced materials. Perspectives and directionsPure and Applied Chemistry, 2002
- Electrical conductivity of individual carbon nanotubesNature, 1996