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Optical and electrical properties of TTF-MPcs (M = Cu, Zn) interfaces for optoelectronic applications

  • María Elena Sánchez-Vergara(corresponding author)
    ,
  • Mariel Leyva-Esqueda
    ,
  • José Ramón Alvárez-Bada
    ,
  • Verónica García-Montalvo
    ,
  • Iván Darío Rojas-Montoya
    ,
  • Omar Jiménez-Sandoval
*Corresponding author for this work
Research Output:
Contribution to journal
Article
Peer review

Open Access

Publication Information

Tipo di output

Research Output:
Contribution to journal
Article
Peer review

Lingua originale

English

Pagine da-a (Numero di pagine)

Pagine 21037-21049 (13 pagine)

Rivista (volume, numero edizione)

Molecules (Volume 20, Edizione 12)

Attività cardine della pubblicazione

  • Published - 25/11/2015

Stato pubblicazione

Published - 25/11/2015

Publication IDs

  • Scopus: 84954348941
  • PubMed: 26610466

Abstract

Sandwich structures were fabricated by a vacuum deposition method using MPc (M = Cu, Zn), with a Tetrathiafulvalene (TTF) derivative, and Indium Tin Oxide (ITO) and aluminum electrodes. The structure and morphology of the deposited films were studied by IR spectroscopy, scanning electron microscopy (SEM) and energy dispersive spectroscopy (EDS). The absorption spectra of TTF derivative-MPc (M = Cu, Zn) thin films deposited at room temperature were recorded in the spectral range 200-1000 nm. The optical band gap of the thin films was determined from the (αhν)1/2 vs. hν plot. The direct-current (DC) electrical properties of the glass/ITO/TTFderiv-MPc (M = Cu, Zn)/Al structures were also investigated. Changes in conductivity of the derivative-TTF-enriched Pc compounds suggest the formation of alternative paths for carrier conduction. At low voltages, forward current density obeys an ohmic I-V relationship; at higher voltages, conduction is mostly due to a space-charge-limited conduction (SCLC) mechanism.