Ab initio Study of Electronic Structure and Magnetic Properties of Tin Monoxide with Doping and Strain Modulation

被引:0
|
作者
Zhi Hao
Yunliang Yue
Zhixuan Ren
Jie Ren
Min Wang
机构
[1] Hebei University of Science and Technology,School of Information Science and Engineering
[2] Yangzhou University,School of Information Engineering
[3] Hebei University of Technology,School of Electrical Engineering
[4] Hebei University of Science and Technology,School of Science
[5] Hebei Normal University,Hebei Advanced Thin Films Laboratory, Institute of Physics
来源
Journal of Superconductivity and Novel Magnetism | 2023年 / 36卷
关键词
SnO; Doping; Strain; 3; transition metal; Magnetism;
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摘要
The electronic structure and magnetic properties of SnO monolayer doped with metal atoms (Cu or Zn) are investigated using first-principles calculations. Firstly, it is easier to form the substitution doping under oxygen-rich conditions, the formation energy of Zn-dopant is lower than that of Cu-dopant. Doping Zn atom gives rise to no magnetism. However, the magnetism is caused by Cu doping with magnetic moment of 1 µB, mainly due to the hybridization of Cu-3d and O-2p orbitals from the perspective of electronic structure. Researches on magnetic coupling of Cu atoms at different distances indicate the Cu-Cu are coupled mainly antiferromagnetically while it is ferromagnetic at the distance of 7.592 Å. Moreover, the magnetic moment of the Cu-doped SnO monolayer remains 1 µB, subjected to biaxial symmetric strains. The magnetic moments are also produced by Cu and O atoms. The Zn-doped SnO monolayer is inert, and the magnetism is still absent when strain is applied.
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页码:1393 / 1401
页数:8
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