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Highly conductive molecular junctions based on direct binding of benzene to Platinum electrodes

Highly conductive molecular junctions based on direct binding of benzene to Platinum electrodes

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Prüfsumme: MD5:4b0019a80cd0c0d0724724e0c4097b27

KIGUCHI, Manabu, Oren TAL, Sören WOHLTHAT, Fabian PAULY, Michael KRIEGER, Darko DJUKIC, Juan Carlos CUEVAS, Jan M. RUITENBEEK, 2008. Highly conductive molecular junctions based on direct binding of benzene to Platinum electrodes. In: Physical Review Letters. 101(4). ISSN 0031-9007. eISSN 1079-7114. Available under: doi: 10.1103/PhysRevLett.101.046801

@article{Kiguchi2008Highl-21206, title={Highly conductive molecular junctions based on direct binding of benzene to Platinum electrodes}, year={2008}, doi={10.1103/PhysRevLett.101.046801}, number={4}, volume={101}, issn={0031-9007}, journal={Physical Review Letters}, author={Kiguchi, Manabu and Tal, Oren and Wohlthat, Sören and Pauly, Fabian and Krieger, Michael and Djukic, Darko and Cuevas, Juan Carlos and Ruitenbeek, Jan M.} }

Wohlthat, Sören 2013-01-21T08:48:30Z Djukic, Darko Cuevas, Juan Carlos Kiguchi, Manabu Kiguchi, Manabu Tal, Oren eng deposit-license Pauly, Fabian 2008 Krieger, Michael Tal, Oren Physical Review Letters ; 101 (2008), 4. - 046801 Highly conductive molecular junctions were formed by direct binding of benzene molecules between two Pt electrodes. Measurements of conductance, isotopic shift in inelastic spectroscopy, and shot noise compared with calculations provide indications for a stable molecular junction where the benzene molecule is preserved intact and bonded to the Pt leads via carbon atoms. The junction has a conductance comparable to that for metallic atomic junctions (around 0.1–1G<sub>0</sub>), where the conductance and the number of transmission channels are controlled by the molecule's orientation at different interelectrode distances. Cuevas, Juan Carlos 2013-01-21T08:48:30Z Pauly, Fabian Ruitenbeek, Jan M. Krieger, Michael Wohlthat, Sören Ruitenbeek, Jan M. Djukic, Darko Highly conductive molecular junctions based on direct binding of benzene to Platinum electrodes

Dateiabrufe seit 01.10.2014 (Informationen über die Zugriffsstatistik)

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