Novel quantum interference effects in transport through molecular radicals.

Bergfield, Justin P; Solomon, Gemma C; Stafford, Charles A; Ratner, Mark A · Nano Lett · 2011

basic_science · Level V

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Abstract

We investigate electronic transport through molecular radicals and predict a correlation-induced transmission node arising from destructive interference between transport contributions from different charge states of the molecule. This quantum interference effect has no single-particle analog and cannot be described by effective single-particle theories. Large errors in the thermoelectric properties and nonlinear current-voltage response of molecular radical junctions are introduced when the complementary wave and particle aspects of the electron are not properly treated. A method to accurately calculate the low-energy transport through a radical-based junction using an Anderson model is given.

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