Elastic and Inelastic Electron Tunneling in Alkane Self-Assembled Monolayers
Author(s):
Wenyong Wang, Takhee Lee, Mark A. Reed
Journal:
The Journal of Physical Chemistry B
Year:
2004
Volume:
108
Pages
18398-18407
DOI:
10.1021/jp048904k
Abstract:
A review of the mechanisms and characterization methods of molecular electronic transport is presented. Using self-assembled monolayers (SAMs) of alkanethiols in a nanometer-scale device structure, tunneling is unambiguously demonstrated to be the main conduction mechanism for large band gap SAMs exhibiting well-known temperature and length dependencies. Inelastic electron tunneling spectroscopy exhibits clear vibrational modes of the molecules in the device, presenting the first direct evidence of the presence of molecules in a molecular transport device and confirming the tunneling transport mechanism in alkane self-assembled monolayers.