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Thermodynamic Origins of Structural Metastability in Two-Dimensional Black Arsenic

Authors :
Du, Guoshuai
Ke, Feng
Han, Wuxiao
Chen, Bin
Xia, Qinglin
Kang, Jun
Chen, Yabin
Publication Year :
2023

Abstract

Two-dimensional (2D) materials have aroused considerable research interests owing to their potential applications in nanoelectronics and optoelectronics. Thermodynamic stability of 2D structures inevitably affects the performance and power consumption of the fabricated nanodevices. Black arsenic (b-As), as a cousin of black phosphorus, has presented the extremely high anisotropy in physical properties. However, the systematic research on structural stability of b-As is still lack. Herein, we demonstrated the detailed analysis on structural metastability of the natural b-As, and determined its existence conditions in terms of two essential thermodynamic variables as hydrostatic pressure and temperature. Our results confirmed that b-As can only survive below 0.7 GPa, and then irreversibly transform to gray arsenic, in consistent with our theoretical calculations. Furthermore, thermal annealing strategy was developed to precisely control the thickness of b-As flake, and it sublimates at 300 oC. These results could pave the way for 2D b-As in many promising applications.<br />Comment: 28 pages, 4 figures

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2309.04065
Document Type :
Working Paper