First-principles study of transition metal atoms <i>X</i> (<i>X</i> = Mn, Tc, Re) doped two-dimensional WS<sub>2</sub> materials
-
Published:2022
Issue:12
Volume:71
Page:127301
-
ISSN:1000-3290
-
Container-title:Acta Physica Sinica
-
language:
-
Short-container-title:Acta Phys. Sin.
Author:
Chen Rong,Wang Yuan-Fan,Wang Yi-Xin,Liang Qian,Xie Quan,
Abstract
Spintronics is a particularly hot topic in recent years, which has aroused much attention. The spin freedom of electrons can be used to construct logic devices and memory devices. Generally, the most important spintronic properties are found in half-metal ferromagnets, which are considered as the ideal materials for building spintronic devices due to their ability to provide fully spin-polarised conduction electrons. Numerous experimental data and theoretical studies have confirmed that the intercalation, doping and adsorption of transition metal atoms can induce magnetic properties in two-dimensional WS<sub>2</sub> material. Therefore, half-metal ferromagnets formed by doping WS<sub>2</sub> play an important role in the field of spintronics. In this paper, we investigate the electronic structure, magnetic and optical properties of the WS<sub>2</sub> doped with transition metal atoms <i>X</i> (<i>X</i> = Mn, Tc, Re) by the first-principles plane wave method based on density functional theory. The results show that the WS<sub>2</sub> system doped with transition metal atoms <i>X</i> is more stable under S-rich condition than under W-rich condition. Especially, the WS<sub>2</sub> system doped with Tc has a minimum value of formation energy of –1.292 eV under S-rich condition. After doping with Mn, impurity levels appear in the spin-up channels, resulting in the WS<sub>2</sub> system changing from a non-magnetic semiconductor to half-metal ferromagnet with a magnetic moment of 1.001 <inline-formula><tex-math id="M2">\begin{document}$ {\text{μ}}_{\text{B}} $\end{document}</tex-math><alternatives><graphic xmlns:xlink="http://www.w3.org/1999/xlink" xlink:href="12-20212439_M2.jpg"/><graphic xmlns:xlink="http://www.w3.org/1999/xlink" xlink:href="12-20212439_M2.png"/></alternatives></inline-formula>. Moreover, in the Mn-doped system, the densities of states are asymmetric in the spin-up channel and the spin-down channel. After being doped with Tc and Re, the systems are transformed into non-magnetic N-type semiconductors, and the densities of states in spin-up and spin-down channels are symmetric in Tc doping system and Re doping system. Whereafter, the spin orbit splitting of the impurity states near the Fermi level <i>E</i><sub>F</sub> decreases successively from Mn to Re doped WS<sub>2</sub> systems. Compared with the undoped two-dimensional WS<sub>2</sub>, the transition metal atoms <i>X</i> doped WS<sub>2</sub> systems show that all doped systems not only have a significant red shift of optical absorption edges but also enhance peak value in infrared and visible light region, implying that the transition metal atoms <i>X</i> doped WS<sub>2</sub> systems have great application prospects in infrared and visible light detection. We hope that thepresent study of two-dimensional WS<sub>2</sub> will provide useful theoretical guidance for future experiments to explore low-dimensional spintronic materials.
Publisher
Acta Physica Sinica, Chinese Physical Society and Institute of Physics, Chinese Academy of Sciences
Subject
General Physics and Astronomy
Reference43 articles.
1. Žutić I, Fabian J, Sarma S D 2004 Rev. Mod. Phys. 76 323 2. De Groot R, Mueller F, van Engen P, Buschow K 1983 Phys. Rev. Lett. 50 2024 3. He C L, Xu H J, Tang J, Wang X, Wei J W, Shen S P, Chen Q Q, Shao Q M, Yu G Q, Zhang G Y Wang S G 2021 Acta Phys. Sin. 70 127501 何聪丽, 许洪军, 汤建, 王潇, 魏晋武, 申世鹏, 陈庆强, 邵启明, 于国强, 张广宇, 王守国 2021 物理学报 70 127501 4. Yu Y, Zhang W J, Zhao W Y, Lin X, Jin Z M, Liu W M, Ma G H 2019 Acta Phys. Sin. 68 017201 俞洋, 张文杰, 赵婉莹, 林贤, 金钻明, 刘伟民, 马国宏 2019 物理学报 68 017201 5. Tiwari S K, Sahoo S, Wang N, Huczko A 2020 J. Sci.: Adv. Mater. Dev. 5 10
Cited by
3 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献
|
|