Impact of electrode density of states on transport through pyridine-linked single molecule junctions
Adak O, Korytár R, Joe AY, Evers F, Venkataraman L. 2015. Impact of electrode density of states on transport through pyridine-linked single molecule junctions. Nano Letters. 15(6), 3716–3722.
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Author
Adak, Olgun;
Korytár, Richard;
Joe, Andrew Y.;
Evers, Ferdinand;
Venkataraman, LathaISTA
Abstract
We study the impact of electrode band structure on transport through single-molecule junctions by measuring the conductance of pyridine-based molecules using Ag and Au electrodes. Our experiments are carried out using the scanning tunneling microscope based break-junction technique and are supported by density functional theory based calculations. We find from both experiments and calculations that the coupling of the dominant transport orbital to the metal is stronger for Au-based junctions when compared with Ag-based junctions. We attribute this difference to relativistic effects, which result in an enhanced density of d-states at the Fermi energy for Au compared with Ag. We further show that the alignment of the conducting orbital relative to the Fermi level does not follow the work function difference between two metals and is different for conjugated and saturated systems. We thus demonstrate that the details of the molecular level alignment and electronic coupling in metal–organic interfaces do not follow simple rules but are rather the consequence of subtle local interactions.
Publishing Year
Date Published
2015-05-28
Journal Title
Nano Letters
Publisher
American Chemical Society
Volume
15
Issue
6
Page
3716-3722
ISSN
eISSN
IST-REx-ID
Cite this
Adak O, Korytár R, Joe AY, Evers F, Venkataraman L. Impact of electrode density of states on transport through pyridine-linked single molecule junctions. Nano Letters. 2015;15(6):3716-3722. doi:10.1021/acs.nanolett.5b01195
Adak, O., Korytár, R., Joe, A. Y., Evers, F., & Venkataraman, L. (2015). Impact of electrode density of states on transport through pyridine-linked single molecule junctions. Nano Letters. American Chemical Society. https://doi.org/10.1021/acs.nanolett.5b01195
Adak, Olgun, Richard Korytár, Andrew Y. Joe, Ferdinand Evers, and Latha Venkataraman. “Impact of Electrode Density of States on Transport through Pyridine-Linked Single Molecule Junctions.” Nano Letters. American Chemical Society, 2015. https://doi.org/10.1021/acs.nanolett.5b01195.
O. Adak, R. Korytár, A. Y. Joe, F. Evers, and L. Venkataraman, “Impact of electrode density of states on transport through pyridine-linked single molecule junctions,” Nano Letters, vol. 15, no. 6. American Chemical Society, pp. 3716–3722, 2015.
Adak O, Korytár R, Joe AY, Evers F, Venkataraman L. 2015. Impact of electrode density of states on transport through pyridine-linked single molecule junctions. Nano Letters. 15(6), 3716–3722.
Adak, Olgun, et al. “Impact of Electrode Density of States on Transport through Pyridine-Linked Single Molecule Junctions.” Nano Letters, vol. 15, no. 6, American Chemical Society, 2015, pp. 3716–22, doi:10.1021/acs.nanolett.5b01195.
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arXiv 1504.00242