Signatures of cooperative effects and transport mechanisms in conductance histograms.

Reuter, Matthew G; Hersam, Mark C; Seideman, Tamar; Ratner, Mark A · Nano Lett · 2012

basic_science · Level V

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Abstract

We present a computational investigation into the line shapes of peaks in conductance histograms, finding that they possess high information content. In particular, the histogram peak associated with conduction through a single molecule elucidates the electron transport mechanism and is generally well-described by beta distributions. A statistical analysis of the peak corresponding to conduction through two molecules reveals the presence of cooperative effects between the molecules and also provides insight into the underlying conduction channels. This work describes tools for extracting additional interpretations from experimental statistical data, helping us better understand electron transport processes.