English

Two-dimensional disorder in black phosphorus and monochalcogenide monolayers

Mesoscale and Nanoscale Physics 2016-03-07 v2

Abstract

Ridged, orthorhombic two-dimensional atomic crystals with a bulk {\em Pnma} structure such as black phosphorus and monochalcogenide monolayers are an exciting and novel material platform for a host of applications. Key to their crystallinity, monolayers of these materials have a four-fold degenerate structural ground state, and a single energy scale ECE_C (representing the elastic energy required to switch the longer lattice vector along the xx- or yy-direction) determines how disordered these monolayers are at finite temperature. Disorder arises when nearest neighboring atoms become gently reassigned as the system is thermally excited beyond a critical temperature TcT_c that is proportional to EC/kBE_C/k_B. ECE_C is tunable by chemical composition and it leads to a classification of these materials into two categories: (i) Those for which ECkBTmE_C\ge k_BT_m, and (ii) those having kBTm>EC0k_BT_m>E_C\ge 0, where TmT_m is a given material's melting temperature. Black phosphorus and SiS monolayers belong to category (i): these materials do not display an intermediate order-disorder transition and melt directly. All other monochalcogenide monolayers with EC>0E_C>0 belonging to class (ii) will undergo a two-dimensional transition prior to melting. EC/kBE_C/k_B is slightly larger than room temperature for GeS and GeSe, and smaller than 300 K for SnS and SnSe monolayers, so that these materials transition near room temperature. The onset of this generic atomistic phenomena is captured by a planar Potts model up to the order-disorder transition. The order-disorder phase transition in two dimensions described here is at the origin of the {\em Cmcm} phase being discussed within the context of bulk layered SnSe.

Keywords

Cite

@article{arxiv.1510.09153,
  title  = {Two-dimensional disorder in black phosphorus and monochalcogenide monolayers},
  author = {Mehrshad Mehboudi and Alex M. Dorio and Wenjuan Zhu and Arend van der Zande and Hugh O. H. Churchill and Alejandro A. Pacheco-Sanjuan and Edmund O. Harriss and Pradeep Kumar and Salvador Barraza-Lopez},
  journal= {arXiv preprint arXiv:1510.09153},
  year   = {2016}
}

Comments

Accepted on 01/11/2016. This document is the Submitted Manuscript version of a Published Work that appeared in final form in Nano Letters, copyright [2016]

R2 v1 2026-06-22T11:33:17.571Z