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Synthetic Control of Quantum Interference by Regulating Charge on a Single Atom in Heteroaromatic Molecular Junctions.
Naghibi, Saman; Ismael, Ali K; Vezzoli, Andrea; Al-Khaykanee, Mohsin K; Zheng, Xijia; Grace, Iain M; Bethell, Donald; Higgins, Simon J; Lambert, Colin J; Nichols, Richard J.
Afiliación
  • Naghibi S; Department of Chemistry , University of Liverpool , Crown Street , Liverpool L69 7ZD , U.K.
  • Ismael AK; Department of Physics , Lancaster University , Lancaster LA1 4YB , U.K.
  • Vezzoli A; Department of Physics, College of Education for Pure Science , Tikrit University , Tikrit 34001 , Iraq.
  • Al-Khaykanee MK; Department of Chemistry , University of Liverpool , Crown Street , Liverpool L69 7ZD , U.K.
  • Zheng X; Department of Physics , Lancaster University , Lancaster LA1 4YB , U.K.
  • Grace IM; Department of Physics, College of Science , University of Babylon , Babylon 51002 , Iraq.
  • Bethell D; Department of Chemistry , University of Liverpool , Crown Street , Liverpool L69 7ZD , U.K.
  • Higgins SJ; Department of Physics , Lancaster University , Lancaster LA1 4YB , U.K.
  • Lambert CJ; Department of Chemistry , University of Liverpool , Crown Street , Liverpool L69 7ZD , U.K.
  • Nichols RJ; Department of Chemistry , University of Liverpool , Crown Street , Liverpool L69 7ZD , U.K.
J Phys Chem Lett ; 10(20): 6419-6424, 2019 Oct 17.
Article en En | MEDLINE | ID: mdl-31577147
A key area of activity in contemporary molecular electronics is the chemical control of conductance of molecular junctions and devices. Here we study and modify a range of pyrrolodipyridines (carbazole-like) molecular wires. We are able to change the electrical conductance and quantum interference patterns by chemically regulating the bridging nitrogen atom in the tricyclic ring system. A series of eight different N-substituted pyrrolodipyridines has been synthesized and subjected to single-molecule electrical characterization using an STM break junction. Correlations of these experimental data with theoretical calculations underline the importance of the pyrrolic nitrogen in facilitating conductance across the molecular bridge and controlling quantum interference. The large chemical modulation for the meta-connected series is not apparent for the para-series, showing the competition between (i) meta-connectivity quantum interference phenomena and (ii) the ability of the pyrrolic nitrogen to facilitate conductance, that can be modulated by chemical substitution.

Texto completo: 1 Bases de datos: MEDLINE Idioma: En Revista: J Phys Chem Lett Año: 2019 Tipo del documento: Article

Texto completo: 1 Bases de datos: MEDLINE Idioma: En Revista: J Phys Chem Lett Año: 2019 Tipo del documento: Article