paper

The structural, mechanical, electronic, optical and thermodynamic properties of t-XAs (X Si, Ge and Sn) by first-principles calculations

arXiv:1812.08542 · doi:10.5488/CMP.21.43601

Abstract

The structural, mechanical, electronic, optical and thermodynamic properties of the t-XAs (X Si, Ge and Sn) with tetragonal structure have been investigated by first principles calculations. Our calculated results show that these compounds are mechanically and dynamically stable. By the study of elastic anisotropy, it is found that the anisotropic of the t-SnAs is stronger than that of t-SiAs and t-GeAs. The band structures and density of states show that the t-XAs (Si, Ge and Sn) are semiconductors with narrow band gaps. Based on the analyses of electron density difference, in t-XAs As atoms get electrons, X atoms lose electrons. The calculated static dielectric constants, , are 15.5, 20.0 and 15.1 eV for t-XAs (X Si, Ge and Sn), respectively. The Dulong-Petit limit of t-XAs is about 10 J molK. The thermodynamic stability successively decreases from t-SiAs to t-GeAs to t-SnAs.

14 pages, 10 figures, 6 tables