Electrical Conductance of Molecular Junctions by a Robust Statistical Analysis
M. Teresa González, Songmei Wu, R. Huber, Sense Jan van der Molen, Christian Schönenberger, Michel Calame
Abstract
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M. Teresa González, Songmei Wu, R. Huber, Sense Jan van der Molen, Christian Schönenberger, Michel Calame
Abstract
Open-access reader
We propose an objective and robust method to extract the electrical conductance of single molecules connected to metal electrodes from a set of measured conductance data. Our method roots in the physics of tunneling and is tested on octanedithiol using mechanically controllable break junctions. The single molecule conductance values can be deduced without the need for data selection.
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We propose an objective and robust method to extract the electrical conductance of single molecules connected to metal electrodes from a set of measured conductance data. Our method roots in the physics of tunneling and is tested on octanedithiol using mechanically controllable break junctions. The single molecule conductance values can be deduced without the need for data selection.
Key concepts: Conductance, Quantum tunnelling, Molecule, Electrode, Electrical resistance and conductance, Break junction, Electrical resistivity and conductivity, Materials science