Aviso: para depositar documentos, por favor, inicia sesión e identifícate con tu cuenta de correo institucional de la UCM con el botón MI CUENTA UCM. No emplees la opción AUTENTICACIÓN CON CONTRASEÑA
 

Barrier height formation in organic blends/metal interfaces: case of tetrathiafulvalene-tetracyanoquinodimethane/Au

Loading...
Thumbnail Image

Full text at PDC

Publication date

2013

Advisors (or tutors)

Editors

Journal Title

Journal ISSN

Volume Title

Publisher

American Institute of Physics
Citations
Google Scholar

Citation

Martínez, J. I., Abad, E., Beltrán Fínez, J. I. & Flores, F. «Barrier Height Formation in Organic Blends/Metal Interfaces: Case of Tetrathiafulvalene-Tetracyanoquinodimethane/Au(111)». The Journal of Chemical Physics, vol. 139, n.o 21, diciembre de 2013, p. 214706. DOI.org (Crossref), https://doi.org/10.1063/1.4836635.

Abstract

The interface between the tetrathiafulvalene/tetracyanoquinodimethane (TTF-TCNQ) organic blend and the Au(111) metal surface is analyzed by Density Functional Theory calculations, including the effect of the charging energies on the molecule transport gaps. Given the strong donor and acceptor characters of the TTF and TCNQ molecules, respectively, there is a strong intermolecular interaction, with a relatively high charge transfer between the two organic materials, and between the organic layer and the metal surface. We find that the TCNQ LUMO peak is very close to the Fermi level; due to the interaction with the metal surface, the organic molecular levels are broadened, creating an important induced density of interface states (IDIS). We show that the interface energy level alignment is controlled by the charge transfer between TTF, TCNQ, and Au, and by the molecular dipoles created in the molecules because of their deformations when adsorbed on Au(111). A generalization of the Unified-IDIS model, to explain how the interface energy levels alignment is achieved for the case of this blended donor/acceptor organic layer, is presented by introducing matrix equations associated with the Charge Neutrality Levels of both organic materials and with their intermixed screening properties.

Research Projects

Organizational Units

Journal Issue

Description

Unesco subjects

Keywords

Collections