Document details

Computer simulation of electron transfer in molecular electronic devices

Author(s): Correia, Helena M. G. cv logo 1 ; Ramos, Marta M. D. cv logo 2

Date: 2005

Persistent ID: http://hdl.handle.net/1822/3566

Origin: RepositóriUM - Universidade do Minho

Subject(s): Quantum modelling; Electron transfer; Molecular wires


Description
The study of electron transfer through individual molecules bound to metal electrodes has become important due to the potential application in molecular electronic devices. Since the electronic and atomic motions in these molecules influence each other they need to be treated self-consistently. We have used self-consistent quantum chemistry molecular dynamics calculations to discuss some of the issues related to electron transfer through a spatially symmetric [9,10-Bis((2′-para-mercaptophenyl)-ethinyl)-anthracene] and an asymmetric [1,4-Bis((2′-para-mercaptophenyl)-ethinyl)-2-acetyl-amino-5-nitro-benzene] molecule bound to metal electrodes. Specifically addressed are the effects of voltage inversion on electron transfer between electrodes through both molecules. Our results show an electron transfer behaviour that reproduces the spatial symmetry of the molecules in agreement with experimental current-voltage data. The change in time of electron density and dimerisation at specific atomic sites is also discussed.
Document Type Article
Language English
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