English

One-dimensional edge contacts to a monolayer semiconductor

Materials Science 2019-10-18 v3

Abstract

Integration of electrical contacts into van der Waals (vdW) heterostructures is critical for realizing electronic and optoelectronic functionalities. However, to date no scalable methodology for gaining electrical access to buried monolayer two-dimensional (2D) semiconductors exists. Here we report viable edge contact formation to hexagonal boron nitride (hBN) encapsulated monolayer MoS2_2. By combining reactive ion etching, in situ Ar+^+ sputtering and annealing, we achieve a relatively low edge contact resistance, high mobility (up to ~30 cm2^2/Vs) and high on-current density (>50 uA/um at VDS_{\rm DS} = 3V), comparable to top contacts. Furthermore, the atomically smooth hBN environment also preserves the intrinsic MoS2_2 channel quality during fabrication, leading to a steep subthreshold swing of 116 mV/dec with a negligible hysteresis. Hence, edge contacts are highly promising for large-scale practical implementation of encapsulated heterostructure devices, especially those involving air sensitive materials, and can be arbitrarily narrow, which opens the door to further shrinkage of 2D device footprint.

Keywords

Cite

@article{arxiv.1902.05506,
  title  = {One-dimensional edge contacts to a monolayer semiconductor},
  author = {Achint Jain and Áron Szabó and Markus Parzefall and Eric Bonvin and Takashi Taniguchi and Kenji Watanabe and Palash Bharadwaj and Mathieu Luisier and Lukas Novotny},
  journal= {arXiv preprint arXiv:1902.05506},
  year   = {2019}
}

Comments

Supplementary Information file included

R2 v1 2026-06-23T07:41:18.590Z