Electronic and optical properties of strain-regulated O-doped monolayer MoS2

Author:

Gao Xuewen1ORCID,Wang Ying1ORCID,Su Qing1,Su Yan1,Zhao Mengmeng1,Wang Yilin1,Liu Guili1,Zhang Guoying2

Affiliation:

1. College of Architecture and Civil Engineering, Shenyang University of Technology, Shenyang 110870, P. R. China

2. College of Physical Science and Technology, Shenyang Normal University, Shenyang 110034, P. R. China

Abstract

The effect of biaxial strain on O-doped monolayers MoS2 has been systematically studied by the first-principles calculations. It is shown that the strain decreases the structural stability of O-doped monolayer MoS2. Between 0% and 12% tensile strains, the bandgap steadily narrows. At different compression strains, the bandgap increases and then decreases. The optical properties analysis shows that the strain causes the peaks of both the real and imaginary parts of the dielectric function to appear in the low energy region. And it affects the absorption and reflection peaks of the doping system so that it has a strong absorption of photons in the ultraviolet region. The doping system shows resonance in the range of 0–10[Formula: see text]eV. The results of this study verify that strain can properly regulate the electronic and optical properties of O-doped monolayer MoS2, and provide a theoretical reference for the implementation of MoS2 in optoelectronic devices.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Liaoning Province

Publisher

World Scientific Pub Co Pte Ltd

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