Phase transition, structural stability and electrical properties of V or Mn doped ZnSe composites under high pressure

被引:0
|
作者
Tao Liu [1 ]
Yuxuan Huang [1 ]
Shixia Wang [1 ]
Yalin Wang [1 ]
Ping Cheng [1 ]
Jia Wu [2 ]
机构
[1] University of Shanghai for Science and Technology,Department of Chemistry
[2] China University of Petroleum (Beijing),State Key Laboratory of Petroleum Resources and Prospecting
关键词
V/Mn:ZnSe; First principles calculations; Phase transition pressure; Electrical properties; Magnetic properties;
D O I
10.1038/s41598-025-89795-3
中图分类号
学科分类号
摘要
The structural parameters and enthalpies of pure ZnSe and different concentrations of V/Mn:ZnSe at high pressures were calculated using the first principles calculation method based on density functional theory. The lattice constants and bond lengths of all the systems decrease under pressure, and the respective phase transition pressures are obtained from the enthalpy-pressure relationship curves, which show that V/Mn elemental doping reduces the phase transition pressure of ZnSe, and the phase transition pressure further decreases with the increase of the doping concentration. The doping formation energies and the elastic constant criterion at atmospheric and high pressures confirm the structural stability of all the systems within the pressures of this study, and the pugh ratio confirms that they are all ductile structures.The results of electrical properties study show that at atmospheric pressure, all V:ZnSe systems have metallic properties, and a metal to semiconductor transition occurs at high pressure when the doping concentration is 12.5%. However, the Mn:ZnSe systems are semiconductors at both atmospheric and high pressures. Pressure significantly influences the degeneracy and position of the impurity bands: the impurity bands of V:ZnSe move toward higher energy under pressure, while the impurity bands of the Mn:ZnSe system shift toward lower energy. The element doping concentration also affects the d orbital degeneracy of V/Mn:ZnSe under atmospheric pressure, the degeneracy of V/Mn-d orbital decreases with the increase in doping concentration. Under high pressure, the degeneracy of the V/Mn-d orbital decreases further when the doping concentration is 3.13%, but the degeneracy is enhanced when the doping concentration is 6.25 and 12.5%. Doping can effectively change the phase transition pressure of ZnSe, and the pressure can effectively modulate the properties of this material.
引用
收藏
相关论文
共 50 条
  • [31] Pressure-induced structural phase transition, elastic and thermodynamic properties of ReC under high pressure
    Lei, Hui-Ru
    Zhu, Jun
    Hao, Yan-Jun
    Zhang, Lin
    Zhao, Yu-Xin
    Zhan, Guo-Fu
    SOLID STATE SCIENCES, 2015, 48 : 49 - 55
  • [32] HIGH-PRESSURE PHASE-TRANSITION IN ZNSE
    KOFFERLEIN, M
    KARZEL, H
    POTZEL, W
    SCHIESSL, W
    STEINER, M
    KALVIUS, GM
    MITCHELL, DW
    DAS, TP
    HYPERFINE INTERACTIONS, 1994, 93 (1-4): : 1505 - 1510
  • [33] Structural phase transition and superconductivity of ytterbium under high pressure
    Duan, Qingzhuo
    Shen, Junyu
    Zhong, Xin
    Lu, Haiyan
    Lu, Cheng
    PHYSICAL REVIEW B, 2022, 105 (21)
  • [34] Structural phase transition of CdS microcrystals under high pressure
    Makino, T
    Arai, M
    Onari, S
    Matsuishi, K
    Arai, T
    PHYSICA STATUS SOLIDI B-BASIC RESEARCH, 1999, 211 (01): : 317 - 322
  • [35] The structural phase transition of ammonia borane under high pressure
    Shi, Lan-Ting
    Hu, Cui-E
    Munoz, Alfonso
    Ji, Lin-Xiang
    Huang, Yao-Yao
    Wei, Yong-Kai
    Ji, Guang-Fu
    Cheng, Yan
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2020, 45 (58) : 33047 - 33058
  • [36] Phase stability and structural distortion of NiO under high pressure
    Zhang Wei-Bing
    Hu Yu-lin
    Tang Bi-yu
    TRANSACTIONS OF NONFERROUS METALS SOCIETY OF CHINA, 2006, 16 (SUPPL.): : S52 - S58
  • [37] Phase stability and structural distortion of NiO under high pressure
    张卫兵
    胡玉林
    唐壁玉
    Transactions of Nonferrous Metals Society of China, 2006, (S1) : 52 - 58
  • [38] Structural phase transitions of Ga(Mn)N under high pressure
    Sukserm, Akkarach
    Pinsook, Udomsilp
    Pluengphon, Prayoonsak
    SIAM PHYSICS CONGRESS 2017 (SPC2017), 2017, 901
  • [39] Effects of grinding-induced grain boundary and interfaces on electrical transportation and structure phase transition in ZnSe under high pressure
    杨洁
    汪沛
    张国召
    周晓雪
    李静
    刘才龙
    Chinese Physics B, 2016, 25 (06) : 370 - 374
  • [40] Effects of grinding-induced grain boundary and interfaces on electrical transportation and structure phase transition in ZnSe under high pressure
    Yang, Jie
    Wang, Pei
    Zhang, Guo-Zhao
    Zhou, Xiao-Xue
    Li, Jing
    Liu, Cai-Long
    CHINESE PHYSICS B, 2016, 25 (06)