| Literature DB >> 28024353 |
Shoji Yoshida1, Atsushi Taninaka1, Yoshihiro Sugita1, Tomoki Katayama1, Osamu Takeuchi1, Hidemi Shigekawa1.
Abstract
Single-molecule junctions have been extensively studied because of their high potential for future nanoscale device applications as well as their importance in basic studies for molecular science and technology. However, since the bonding sites at an electrode and the molecular tilt angles, for example, cannot be determined experimentally, analyses have been performed assuming the structures of such interactive key factors, with uncertainties and inconsistencies remaining in the proposed mechanisms. We have developed a methodology that enables the probing of conformational dynamics in single-molecule junctions simultaneously with the direct characterization of molecular bonding sites and tilt angles. This technique has revealed the elemental processes in single-molecule junctions, which have not been clarified using conventional methods. The mechanisms of the molecular dynamics in 1,4-benzenedithiol and 4,4'-bipyridine single-molecule junctions, which, for example, produce binary conductance switching of different types, were clearly discriminated and comprehensively explained.Entities:
Keywords: molecular electronics; molecular junction; scanning tunneling microscopy; single molecule
Year: 2016 PMID: 28024353 DOI: 10.1021/acsnano.6b06278
Source DB: PubMed Journal: ACS Nano ISSN: 1936-0851 Impact factor: 15.881