Author

Dewandre, Antoine

Verstraete, Matthieu J.

Grobert, Nicole

Zanolli, Zeila

Publication date

2019

Abstract

Stable structures of layered SnS and SnSe and their associated electronic and vibrational spectra are predicted using first-principles DFT calculations. The calculations show that both materials undergo a phase transformation upon thinning whereby the in-plane lattice parameters ratio a/b converges towards 1, similar to the high-temperature behaviour observed for their bulk counterparts. The electronic properties of layered SnS and SnSe evolve to an almost symmetric dispersion whilst the gap changes from indirect to direct. Characteristic signatures in the phonon dispersion curves and surface phonon states where only atoms belonging to surface layers vibrate should be observable experimentally.

Document Type

Article

Language

English

Subjects and keywords

Monochalcogenides; Electronic structure; Raman spectroscopy; 2D materials; Nanomaterials; Dielectric response

Publisher

 

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Rights

open access

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