Dissecting Contact Mechanics from Quantum Interference in Single-Molecule Junctions of Stilbene Derivatives
- 24 February 2012
- journal article
- Published by American Chemical Society (ACS) in Nano Letters
- Vol. 12 (3), 1643-1647
- https://doi.org/10.1021/nl2045815
Abstract
Electronic factors in molecules such as quantum interference and cross-conjugation can lead to dramatic modulation and suppression of conductance in single-molecule junctions. Probing such effects at the single-molecule level requires simultaneous measurements of independent junction properties, as conductance alone cannot provide conclusive evidence of junction formation for molecules with low conductivity. Here, we compare the mechanics of the conducting para-terminated 4,4'-di(methylthio)stilbene and moderately conducting 1,2-bis(4-(methylthio)phenyl)ethane to that of insulating meta-terminated 3,3'-di(methylthio)stilbene single-molecule junctions. We simultaneously measure force and conductance across single-molecule junctions and use force signatures to obtain independent evidence of junction formation and rupture in the meta-linked cross-conjugated molecule even when no clear low-bias conductance is measured. By separately quantifying conductance and mechanics, we identify the formation of atypical 3,3'-di(methylthio)stilbene molecular junctions that are mechanically stable but electronically decoupled. While theoretical studies have envisaged many plausible systems where quantum interference might be observed, our experiments provide the first direct quantitative study of the interplay between contact mechanics and the distinctively quantum mechanical nature of electronic transport in single-molecule junctions.Keywords
This publication has 29 references indexed in Scilit:
- Orbital Views of Molecular Conductance Perturbed by Anchor UnitsJournal of the American Chemical Society, 2011
- The Relation between Structure and Quantum Interference in Single Molecule JunctionsNano Letters, 2010
- Quantum-Interference-Controlled Molecular ElectronicsNano Letters, 2008
- Understanding quantum interference in coherent molecular conductionThe Journal of Chemical Physics, 2008
- Charge Transport in Single Au | Alkanedithiol | Au Junctions: Coordination Geometries and Conformational Degrees of FreedomJournal of the American Chemical Society, 2007
- Controlling Quantum Transport through a Single MoleculeNano Letters, 2006
- Single-Molecule Circuits with Well-Defined Molecular ConductanceNano Letters, 2006
- Measurement of Single-Molecule Resistance by Repeated Formation of Molecular JunctionsScience, 2003
- Electron Transport in Molecular Wire JunctionsScience, 2003
- Electronics using hybrid-molecular and mono-molecular devicesNature, 2000