Electronic properties of armchair MoS<sub>2</sub> nanoribbons deposited with nanowires

ORAL

Abstract

Electronic properties of armchair MoS2 nanoribbons with deposited nanowires are investigated using density-functional calculations. The pure armchair MoS2 ribbon with 15 dimer lines has an energy gap around 0.5 eV and zero magnetic moment at the ribbon edge. The nanowire stacked on the ribbon modulates the energy bands near the Fermi level and induces different magnetic properties. Various stacking locations of the nanowires are also considered. The results may be useful for application in nanoelectronic devices.

*Supported by the Ministry of Science and Technology of the Republic of China under grant number MOST 105-2112-M-004-001-MY3.

Presenters

  • Chi-Hsuan Lee

    • Graduate Institute of Applied Physics, National Chengchi University

Authors

  • Chi-Hsuan Lee

    • Graduate Institute of Applied Physics, National Chengchi University
  • Chih-Kai Yang

    • Graduate Institute of Applied Physics, National Chengchi University