Simulated IV characteristics and inelastic electron tunneling spectra of octanedithiol chemisorbed on gold electrodes are presented. The geometric and electronic structure is obtained from calculations based on a density functional scheme. A non-equilibrium Green's function formalism is employed to deal with the transport aspect of the problem. Both the IV and the calculated spectra show good agreement with experimental results and suggest further details in the assignment and characterization of such spectra.

Incoherent tunneling and heat dissipation in molecular bridges

Pecchia A;
2006

Abstract

Simulated IV characteristics and inelastic electron tunneling spectra of octanedithiol chemisorbed on gold electrodes are presented. The geometric and electronic structure is obtained from calculations based on a density functional scheme. A non-equilibrium Green's function formalism is employed to deal with the transport aspect of the problem. Both the IV and the calculated spectra show good agreement with experimental results and suggest further details in the assignment and characterization of such spectra.
2006
molecular electronics
incoherent tunneling
electron-phonon scattering
IETS
TIGHT-BINDING METHOD
COMPLEX MATERIALS
TRANSPORT
SIMULATIONS
JUNCTIONS
NANOSTRUCTURES
SPECTROSCOPY
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/202152
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