Mechanics and chemistry: Single molecule bond rupture forces correlate with molecular backbone structure
Frei M, Aradhya SV, Koentopp M, Hybertsen MS, Venkataraman L. 2011. Mechanics and chemistry: Single molecule bond rupture forces correlate with molecular backbone structure. Nano Letters. 11(4), 1518–1523.
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Journal Article
| Published
| English
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Author
Frei, Michael;
Aradhya, Sriharsha V.;
Koentopp, Max;
Hybertsen, Mark S.;
Venkataraman, LathaISTA 

Abstract
We simultaneously measure conductance and force across nanoscale junctions. A new, two-dimensional histogram technique is introduced to statistically extract bond rupture forces from a large data set of individual junction elongation traces. For the case of Au point contacts, we find a rupture force of 1.4 ± 0.2 nN, which is in good agreement with previous measurements. We then study systematic trends for single gold metal−molecule−metal junctions for a series of molecules terminated with amine and pyridine linkers. For all molecules studied, single molecule junctions rupture at the Au−N bond. Selective binding of the linker group allows us to correlate the N−Au bond-rupture force to the molecular backbone. We find that the rupture force ranges from 0.8 nN for 4,4′ bipyridine to 0.5 nN in 1,4 diaminobenzene. These experimental results are in excellent quantitative agreement with density functional theory based adiabatic molecular junction elongation and rupture calculations.
Publishing Year
Date Published
2011-03-02
Journal Title
Nano Letters
Publisher
American Chemical Society
Volume
11
Issue
4
Page
1518-1523
ISSN
eISSN
IST-REx-ID
Cite this
Frei M, Aradhya SV, Koentopp M, Hybertsen MS, Venkataraman L. Mechanics and chemistry: Single molecule bond rupture forces correlate with molecular backbone structure. Nano Letters. 2011;11(4):1518-1523. doi:10.1021/nl1042903
Frei, M., Aradhya, S. V., Koentopp, M., Hybertsen, M. S., & Venkataraman, L. (2011). Mechanics and chemistry: Single molecule bond rupture forces correlate with molecular backbone structure. Nano Letters. American Chemical Society. https://doi.org/10.1021/nl1042903
Frei, Michael, Sriharsha V. Aradhya, Max Koentopp, Mark S. Hybertsen, and Latha Venkataraman. “Mechanics and Chemistry: Single Molecule Bond Rupture Forces Correlate with Molecular Backbone Structure.” Nano Letters. American Chemical Society, 2011. https://doi.org/10.1021/nl1042903.
M. Frei, S. V. Aradhya, M. Koentopp, M. S. Hybertsen, and L. Venkataraman, “Mechanics and chemistry: Single molecule bond rupture forces correlate with molecular backbone structure,” Nano Letters, vol. 11, no. 4. American Chemical Society, pp. 1518–1523, 2011.
Frei M, Aradhya SV, Koentopp M, Hybertsen MS, Venkataraman L. 2011. Mechanics and chemistry: Single molecule bond rupture forces correlate with molecular backbone structure. Nano Letters. 11(4), 1518–1523.
Frei, Michael, et al. “Mechanics and Chemistry: Single Molecule Bond Rupture Forces Correlate with Molecular Backbone Structure.” Nano Letters, vol. 11, no. 4, American Chemical Society, 2011, pp. 1518–23, doi:10.1021/nl1042903.
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