Design and Control of Highly Conductive Single-Molecule Junctions
eBook - PDF

Design and Control of Highly Conductive Single-Molecule Junctions

A Focus on the Metal–Molecule Interface

  1. 92 pages
  2. English
  3. PDF
  4. Available on iOS & Android
eBook - PDF

Design and Control of Highly Conductive Single-Molecule Junctions

A Focus on the Metal–Molecule Interface

About this book

This thesis describes improvements to and control of the electrical conductance in single-molecule junctions (SMJs), which have potential applications in molecular electronics, with a focus on the bonding between the metal and molecule. In order to improve the electrical conductance, the ? orbital of the molecule is directly bonded to the metal orbital, because anchoring groups, which were typically used in other studies to bind molecule with metal electrodes, became resistive spacers. Using this direct ?-binding, the author has successfully demonstrated highly conductive SMJs involving benzene, endohedral metallofullerene Ce@C82, and nitrogen. Subsequently, the author investigated control of the electrical conductance of SMJs using pyrazine. The nitrogen atom in the ?-conjugated system of pyrazine was expected to function as an anchoring point, and two bonding states were expected. One originates primarily from the ? orbital, while the other originates primarily from an n state of the nitrogen. Measurements of conductance and dI/dV spectra coupled with theoretical calculations revealed that the pyrazine SMJ has bistable conductance states, in which the pyrazine axis is either tilted or parallel with respect to the junction axis. The bistable states were switched by changing the gap size between the metal electrodes using an external force. Notably, it is difficult to change the electrical properties of bulk-state materials using mechanical force. The findings reveal that the electron transport properties of a SMJ can be controlled by designing a proper metal–molecule interface, which has considerable potential for molecular electronics. Moreover, this thesis will serve as a guideline for every step of SMJ research: design, fabrication, evaluation, and control.

Information

Publisher
Springer
Year
2017
Print ISBN
9789811044113
eBook ISBN
9789811044120

Table of contents

  1. Supervisor’s Foreword
  2. Parts of this thesis have been published in the following journal articles:
  3. Acknowledgements
  4. Contents
  5. 1 Introduction
  6. 2 Theoretical Background
  7. 3 Experimental Concepts and Techniques
  8. 4 Design of the Metal–Molecule Interaction at the Benzene Single-Molecule Junction
  9. 5 Design of the Interface Structure of a Single-Molecule Junction Utilizing Spherical Endohedral Ce@C82 Metallofullerenes
  10. 6 Anchoring Groups Enclosed in the π-Conjugated System in N2 Molecules
  11. 7 Controlling the Electrical Property of Highly Conductive Pyrazine Single-Molecule Junction
  12. 8 General Conclusions
  13. Curriculum Vitae

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Yes, you can access Design and Control of Highly Conductive Single-Molecule Junctions by Satoshi Kaneko in PDF and/or ePUB format, as well as other popular books in Physical Sciences & Condensed Matter. We have over 1.5 million books available in our catalogue for you to explore.