Article (Scientific journals)
A Theoretical View on Unimolecular Rectifiers
Stadler, R.; Geskin, V.M.; Cornil, Jérôme
2008In Journal of Physics: Condensed Matter, 20 (37), p. 374105
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Abstract :
[en] The concept of single molecule rectifiers proposed in a theoretical work by Aviram and Ratner in 1974 was the starting point of the now vibrant field of molecular electronics. In the meantime, a built-in asymmetry in the conductance of molecular junctions has been reported at the experimental level. In this contribution, we present a theoretical comparison of three different types of unimolecular rectifiers: (i) systems where the donor and acceptor parts of the molecules are taken from charge-transfer salt components; (ii) zwitterionic systems and (iii) tour wires with nitro substituents. We conduct an analysis of the rectification mechanism in these three different types of asymmetric molecules on the basis of parameterized quantum chemical models as well as with a full non-equilibrium Green's function-density functional theory (NEGF-DFT) treatment of the current-voltage characteristics of the respective metal-molecule-metal junctions. We put a particular emphasis on the prediction of rectification ratios (RRs), which are crucial for the assessment of the technological usefulness of single molecule junctions as diodes. We also compare our results with values reported in the literature for other types of molecular rectification, where the essential asymmetry is not induced by the structure of the molecule alone but either by a difference in the electronic coupling of the molecule to the two electrodes or by attaching alkyl chains of different lengths to the central molecular moiety.
Disciplines :
Chemistry
Physics
Author, co-author :
Stadler, R.
Geskin, V.M.
Cornil, Jérôme ;  Université de Mons > Faculté des Sciences > Chimie des matériaux nouveaux
Language :
English
Title :
A Theoretical View on Unimolecular Rectifiers
Publication date :
17 September 2008
Journal title :
Journal of Physics: Condensed Matter
ISSN :
0953-8984
Publisher :
Institute of Physics Publishing, United Kingdom
Volume :
20
Issue :
37
Pages :
374105
Peer reviewed :
Peer Reviewed verified by ORBi
Research unit :
S817 - Chimie des matériaux nouveaux
Research institute :
R400 - Institut de Recherche en Science et Ingénierie des Matériaux
Commentary :
Publié en ligne le 26 août 2008
Available on ORBi UMONS :
since 10 June 2010

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