<<< zurück

Charge Transport in Azobenzene-Based Single-Molecule Junctions

Dokumenttyp: Artikel
URI:
(zitierfähiger Link)
http://nbn-resolving.de/urn:nbn:de:bsz:352-209844
Autor/in: Kim, Youngsang; Garcia-Lekue, Aran; Sysoiev, Dmytro; Frederiksen, Thomas; Groth, Ulrich; Scheer, Elke;
Erscheinungsdatum: 2012
Erschienen in: Physical Review Letters ; 109 (2012), 22. - 226801
ISSN: 0031-9007
eISSN: 1079-7114
Zusammenfassung: Azobenzene-derivative molecules change their conformation as a result of a cis-trans transition when exposed to ultraviolet or visible light irradiation and this is expected to induce a significant variation in the conductance of molecular devices. Despite extensive investigations carried out on this type of molecule, a detailed understanding of the charge transport for the two isomers is still lacking. We report a combined experimental and theoretical analysis of electron transport through azobenzene-derivative single-molecule break junctions with Au electrodes. Current-voltage and inelastic electron tunneling spectroscopy (IETS) measurements performed at 4.2 K are interpreted based on first-principles calculations of electron transmission and IETS spectra. This qualitative study unravels the origin of a slightly higher conductance of junctions with the cis isomer and demonstrates that IETS spectra of cis and trans forms show distinct vibrational fingerprints that can be used for identifying the isomer.
DDC: 530 Physik
Lizenz: http://kops.ub.uni-konstanz.de/depositlicense2011
Fachbereich: Fachbereich Physik

Dateien zu dieser Publikation

Dateien Größe Format
kim_209844.pdf 919.2Kb pdf

Das Dokument erscheint in: