English

A study of size-dependent properties of MoS2 monolayer nanoflakes using density-functional theory

Applied Physics 2017-05-08 v1

Abstract

Novel physical phenomena emerge in ultra-small sized nanomaterials. We study the limiting small-size-dependent properties of MoS2_{2} monolayer rhombic nanoflakes using density-functional theory on structures of size up to Mo35_{35}S70_{70} (1.74~nm). We investigate the structural and electronic properties as functions of the lateral size of the nanoflakes, finding zigzag is the most stable edge configuration, and that increasing size is accompanied by greater stability. We also investigate passivation of the structures to explore realistic settings, finding increased HOMO-LUMO gaps and energetic stability. Understanding the size-dependent properties will inform efforts to engineer electronic structures at the nano-scale.

Keywords

Cite

@article{arxiv.1705.02074,
  title  = {A study of size-dependent properties of MoS2 monolayer nanoflakes using density-functional theory},
  author = {M. Javaid and Daniel W. Drumm and Salvy P. Russo and Andrew D. Greentree},
  journal= {arXiv preprint arXiv:1705.02074},
  year   = {2017}
}