Molecular signature of highly conductive metal-molecule-metal junctions

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Title: Molecular signature of highly conductive metal-molecule-metal junctions
Authors: Tal, Oren | Kiguchi, M. | Thijssen, W.H.A. | Djukic, D. | Untiedt, Carlos | Smit, R.H.M. | Ruitenbeek, J.M. van
Research Group/s: Grupo de Nanofísica
Center, Department or Service: Universidad de Alicante. Departamento de Física Aplicada
Keywords: Molecular electronics | Conductance | Pt electrodes | Molecular junctions | Molecular signature
Knowledge Area: Física de la Materia Condensada
Issue Date: 24-Aug-2009
Publisher: American Physical Society
Citation: TAL, O., et al. “Molecular signature of highly conductive metal-molecule-metal junctions”. Physical Review B. Vol. 80, No. 8 (2009). ISSN 1098-0121, pp. 085427-1/8
Abstract: The simplicity of single-molecule junctions based on direct bonding of a small molecule between two metallic electrodes makes them an ideal system for the study of fundamental questions related to molecular electronics. Here we study the conductance properties of six different types of molecules by suspending individual molecules between Pt electrodes. All the molecular junctions show a typical conductance of about 1G0 which is ascribed to the dominant role of the Pt contacts. However, despite the metalliclike conductivity, the individual molecular signature is well expressed by the effect of molecular vibrations in the inelastic contribution to the conductance.
Sponsor: This work is part of the research program of the “Stichting FOM,” which is financially supported by NWO. O.T. acknowledges support from IUVSTA-Welch foundation and C.U. acknowledges support through Grant No. MAT2007-65487 and “Consolider” (Grant No. CSD2007-0010) of the Spanish MEC.
URI: http://hdl.handle.net/10045/25203
ISSN: 1098-0121 (Print) | 1550-235X (Online)
DOI: 10.1103/PhysRevB.80.085427
Language: eng
Type: info:eu-repo/semantics/article
Rights: © 2009 The American Physical Society
Peer Review: si
Publisher version: http://dx.doi.org/10.1103/PhysRevB.80.085427
Appears in Collections:INV - Grupo de Nanofísica - Artículos de Revistas

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