Literature DB >> 27874872

Mechanically controlled quantum interference in individual π-stacked dimers.

Riccardo Frisenda1, Vera A E C Janssen1, Ferdinand C Grozema2, Herre S J van der Zant1, Nicolas Renaud2.   

Abstract

Recent observations of destructive quantum interference in single-molecule junctions confirm the role of quantum effects in the electronic conductance properties of molecular systems. These effects are central to a broad range of chemical and biological processes and may be beneficial for the design of single-molecule electronic components to exploit the intrinsic quantum effects that occur at the molecular scale. Here we show that destructive interference can be turned on or off within the same molecular system by mechanically controlling its conformation. Using a combination of ab initio calculations and single-molecule conductance measurements, we demonstrate the existence of a quasiperiodic destructive quantum-interference pattern along the breaking traces of π-stacked molecular dimers. The results demonstrate that it is possible to control the molecular conductance over more than one order of magnitude and with a sub-ångström resolution by exploiting the subtle structure-property relationship of π-stacked dimers.

Year:  2016        PMID: 27874872     DOI: 10.1038/nchem.2588

Source DB:  PubMed          Journal:  Nat Chem        ISSN: 1755-4330            Impact factor:   24.427


  23 in total

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  20 in total

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6.  Large Conductance Variations in a Mechanosensitive Single-Molecule Junction.

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10.  Massively parallel fabrication of crack-defined gold break junctions featuring sub-3 nm gaps for molecular devices.

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