Control of single-molecule junction conductance of porphyrins via a transition-metal center
Liu Z-F, Wei S, Yoon H, Adak O, Ponce I, Jiang Y, Jang W-D, Campos LM, Venkataraman L, Neaton JB. 2014. Control of single-molecule junction conductance of porphyrins via a transition-metal center. Nano Letters. 14(9), 5365–5370.
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Journal Article
| Published
| English
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Author
Liu, Zhen-Fei;
Wei, Sujun;
Yoon, Hongsik;
Adak, Olgun;
Ponce, Ingrid;
Jiang, Yivan;
Jang, Woo-Dong;
Campos, Luis M.;
Venkataraman, LathaISTA
;
Neaton, Jeffrey B.

Abstract
Using scanning tunneling microscope break-junction experiments and a new first-principles approach to conductance calculations, we report and explain low-bias charge transport behavior of four types of metal–porphyrin–gold molecular junctions. A nonequilibrium Green’s function approach based on self-energy corrected density functional theory and optimally tuned range-separated hybrid functionals is developed and used to understand experimental trends quantitatively. Importantly, due to the localized d states of the porphyrin molecules, hybrid functionals are essential for explaining measurements; standard semilocal functionals yield qualitatively incorrect results. Comparing directly with experiments, we show that the conductance can change by nearly a factor of 2 when different metal cations are used, counter to trends expected from gas-phase ionization energies which are relatively unchanged with the metal center. Our work explains the sensitivity of the porphyrin conductance with the metal center via a detailed and quantitative portrait of the interface electronic structure and provides a new framework for understanding transport quantitatively in complex junctions involving molecules with localized d states of relevance to light harvesting and energy conversion.
Publishing Year
Date Published
2014-08-11
Journal Title
Nano Letters
Publisher
American Chemical Society
Volume
14
Issue
9
Page
5365-5370
ISSN
eISSN
IST-REx-ID
Cite this
Liu Z-F, Wei S, Yoon H, et al. Control of single-molecule junction conductance of porphyrins via a transition-metal center. Nano Letters. 2014;14(9):5365-5370. doi:10.1021/nl5025062
Liu, Z.-F., Wei, S., Yoon, H., Adak, O., Ponce, I., Jiang, Y., … Neaton, J. B. (2014). Control of single-molecule junction conductance of porphyrins via a transition-metal center. Nano Letters. American Chemical Society. https://doi.org/10.1021/nl5025062
Liu, Zhen-Fei, Sujun Wei, Hongsik Yoon, Olgun Adak, Ingrid Ponce, Yivan Jiang, Woo-Dong Jang, Luis M. Campos, Latha Venkataraman, and Jeffrey B. Neaton. “Control of Single-Molecule Junction Conductance of Porphyrins via a Transition-Metal Center.” Nano Letters. American Chemical Society, 2014. https://doi.org/10.1021/nl5025062.
Z.-F. Liu et al., “Control of single-molecule junction conductance of porphyrins via a transition-metal center,” Nano Letters, vol. 14, no. 9. American Chemical Society, pp. 5365–5370, 2014.
Liu Z-F, Wei S, Yoon H, Adak O, Ponce I, Jiang Y, Jang W-D, Campos LM, Venkataraman L, Neaton JB. 2014. Control of single-molecule junction conductance of porphyrins via a transition-metal center. Nano Letters. 14(9), 5365–5370.
Liu, Zhen-Fei, et al. “Control of Single-Molecule Junction Conductance of Porphyrins via a Transition-Metal Center.” Nano Letters, vol. 14, no. 9, American Chemical Society, 2014, pp. 5365–70, doi:10.1021/nl5025062.
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