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Quantum Transport Effects in Copper(II) Phthalocyanine Sandwiched between Gold Nanoelectrodes

Author(s):

Tomofumi Tada, Shinya Hamayama, Masakazu Kondo, Kazunari Yoshizawa

Journal:

The Journal of Physical Chemistry B

Year:

2005

Volume:

109

Pages

12443-12448

DOI:

10.1021/jp0442596

Abstract:

The electrical transmission of copper(II) phthalocyanine (CuPc) sandwiched between gold nanoelectrodes is studied on the basis of the Green function formalism coupled with the Gaussian-broadening technique. In the Au−CuPc−Au junction, broadened density of states (DOS) of the Au chains is defined as continuous DOS of electrodes to calculate the Green function of the electrodes. Two peaks of the transmission function found in the vicinity of the Fermi level are analyzed in terms of molecular orbitals (MOs). A convenient procedure to analyze MO contribution to a transmission peak is proposed. It is found that (I) symmetry-matched interactions between CuPc and the gold nanoelectrodes are important to the enhancement of the transmission function and (II) the nanoelectrodes have almost no effect on the electronic states of CuPc.

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