Issue 40, 2015

The effect of substrate and external strain on electronic structures of stanene film

Abstract

From first-principles calculations, the effects of h-BN and AlN substrates on the topological nontrivial properties of stanene are studied with different strains. We find that the quantum spin Hall phase can be induced in stanene film on a Image ID:c5cp04322k-t1.gif h-BN substrate under a tensile strain of between 6.0% and 9.3% with a stable state confirmed by the phonon spectrum, while for Image ID:c5cp04322k-t2.gif stanene on 5 × 5 h-BN, the quantum spin Hall phase can be preserved without strain. However, for stanene on a Image ID:c5cp04322k-t3.gif AlN substrate, the quantum spin Hall phase cannot be found under compressive or tensile strains less than 10%, while for 2 × 2 stanene on 3 × 3 AlN, the compressive strain needed to induce the quantum spin Hall phase is just 2%. These theoretical results will be helpful in understanding the effect of substrate and strain on stanene and in further realizing the quantum spin Hall effect in stanene on semiconductor substrates.

Graphical abstract: The effect of substrate and external strain on electronic structures of stanene film

Article information

Article type
Paper
Submitted
23 Jul 2015
Accepted
10 Sep 2015
First published
14 Sep 2015

Phys. Chem. Chem. Phys., 2015,17, 26979-26987

The effect of substrate and external strain on electronic structures of stanene film

D. Wang, L. Chen, X. Wang, G. Cui and P. Zhang, Phys. Chem. Chem. Phys., 2015, 17, 26979 DOI: 10.1039/C5CP04322K

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