English

Two-dimensional van der Waals electrical contact to monolayer MoSi$_2$N$_4$

Materials Science 2021-02-03 v3 Mesoscale and Nanoscale Physics Applied Physics

Abstract

Two-dimensional (2D) MoSi2_2N4_4 monolayer is an emerging class of air-stable 2D semiconductor possessing exceptional electrical and mechanical properties. Despite intensive recent research efforts devoted to uncover the material properties of MoSi2_2N4_4, the physics of electrical contacts to MoSi2_2N4_4 remains largely unexplored thus far. In this work, we study the van der Waals heterostructures composed of MoSi2_2N4_4 contacted by graphene and NbS2_2 monolayers using first-principle density functional theory calculations. We show that the MoSi2_2N4_4/NbS2_2 contact exhibits an ultralow Schottky barrier height (SBH), which is beneficial for nanoelectronics applications. For MoSi2_2N4_4/graphene contact, the SBH can be modulated via interlayer distance or via external electric fields, thus opening up an opportunity for reconfigurable and tunable nanoelectronic devices. Our findings provide insights on the physics of 2D electrical contact to MoSi2_2N4_4, and shall offer a critical first step towards the design of high-performance electrical contacts to MoSi2_2N4_4-based 2D nanodevices.

Keywords

Cite

@article{arxiv.2010.05815,
  title  = {Two-dimensional van der Waals electrical contact to monolayer MoSi$_2$N$_4$},
  author = {Liemao Cao and Guanghui Zhou and Qianqian Wang and L. K. Ang and Yee Sin Ang},
  journal= {arXiv preprint arXiv:2010.05815},
  year   = {2021}
}

Comments

5 pages, 5 figures (accepted version, to appear in Applied Physics Letters)