Electronic and mechanical properties of fl-Cu6 Sn5 doped by Ni: A first-principles study

被引:2
|
作者
Sheng, Jianhua [1 ]
Zhao, Jian [1 ]
Wang, Biao [1 ]
Yan, Jikang [1 ]
机构
[1] Southwest Petr Univ, Sch New Energy & Mat, Nanchong 637001, Peoples R China
来源
关键词
fl-Cu6Sn5; Ni; First-principles calculations; Elastic properties; Fracture toughness; THERMAL-EXPANSION; PHASE-STABILITY; THERMODYNAMIC PROPERTIES; ANISOTROPIC ELASTICITY; CU6SN5; TRANSFORMATIONS; INTERMETALLICS; SOLDER; BETA; X=0;
D O I
10.1016/j.mtcomm.2024.110051
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In this paper, based on the crystallographic characteristics of fl-Cu6Sn5, 6 Sn 5 , a 1x1x5 supercell was constructed, and Ni atom was doped into each of the eight Cu2 sites respectively. The electrical and mechanical properties of fl-Cu6Sn5 6 Sn 5 doped with Ni atom at Cu2 site were calculated by first principles method. The single-crystal elastic constants and poly-crystalline elastic moduli were acquired by using Voigt-Reuss-Hill approximations. The elastic anisotropies of the doping systems were characterized by a three-dimensional (3D) surface constructions and two-dimensional (2D) plane projections. The results show that the doping of Ni can reduce the elastic anisotropy of fl-Cu6Sn5. 6 Sn 5 . The most significant decrease in elastic anisotropy is observed when Ni is doped at the Ni-1 position in fl-Cu6Sn5. 6 Sn 5 . The doping of Ni can also alter the fracture toughness of fl-Cu6Sn5. 6 Sn 5 . Adding Ni to some Cu2 sites can increase the shear resistance of fl-Cu6Sn5. 6 Sn 5 . Through electronic structure calculations, it is found that the doping of Ni alters the electronic structure and stability of fl-Cu6Sn5. 6 Sn 5 . Specifically, Ni-d orbitals hybridize with Sn-p orbitals, which in turn increases the peak value near-1.54 eV. When Ni is doped at the Ni-3 position, the stability of fl-Cu6Sn5 6 Sn 5 increases the most; conversely, when Ni is doped at the Ni-1 position, the stability of fl-Cu6Sn5 6 Sn 5 decreases the most.
引用
收藏
页数:10
相关论文
共 50 条
  • [41] First-Principles Study of Substitution of Cu and Au for Ni in Ni3Sn2
    Yali Tian
    Ping Wu
    Zhengxiong Lu
    Journal of Electronic Materials, 2017, 46 : 616 - 626
  • [42] First-principles calculations of structure and electronic properties of aluminum doped by Ge, Sn and Pb
    Shou, Hongwei
    Peng, Mingjun
    Duan, Yonghua
    Ma, Lishi
    Li, Ping
    PHYSICA B-CONDENSED MATTER, 2018, 547 : 6 - 11
  • [43] First-Principles Study of Substitution of Cu and Au for Ni in Ni3Sn2
    Tian, Yali
    Wu, Ping
    Lu, Zhengxiong
    JOURNAL OF ELECTRONIC MATERIALS, 2017, 46 (01) : 616 - 626
  • [44] First-Principles Calculations of Structural and Mechanical Properties of Cu-Ni Alloys
    Wei, Yun
    Niu, Ben
    Liu, Qijun
    Liu, Zhengtang
    Jiang, Chenglu
    CRYSTALS, 2023, 13 (01)
  • [45] Magnetic properties of NI-doped ZnS: First-principles study
    Xie, Hai-Qing
    Tang, Li-Jun
    Tang, Jun-Long
    Peng, Ping
    JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS, 2015, 377 : 239 - 242
  • [46] First-principles study of the optical properties of ZnO doped with Al, Ni
    Guan Li
    Li Qiang
    Zhao Qing-Xun
    Guo Jian-Xin
    Zhou Yang
    Jin Li-Tao
    Geng Bo
    Liu Bao-Ting
    ACTA PHYSICA SINICA, 2009, 58 (08) : 5624 - 5631
  • [47] First-principles study of the electronic properties of γ/γ′ interface in Ni based superalloys
    Geng, CY
    Wang, CY
    Wang, JT
    Yu, T
    MATERIALS TRANSACTIONS, 2005, 46 (06) : 1122 - 1126
  • [48] First-principles study of electronic and optical properties of Co doped ZnTe
    Hu, Xiao-Qiang
    Lei, Yu
    Liu, Guo-Dong
    Wang, Sheng-Qian
    Xiong, Zhi-Hua
    Guangzi Xuebao/Acta Photonica Sinica, 2007, 36 (SUPPL.): : 103 - 105
  • [49] Electronic and Magnet Properties of Cobalt Doped SiCNT:A First-Principles Study
    Rzayeva, Sevda
    Jafarova, Vusala Nabi
    JOURNAL OF POLYTECHNIC-POLITEKNIK DERGISI, 2024,
  • [50] First-principles study of structural and electronic properties of substitutionally doped arsenene
    Liu, Zhiwei
    Li, Xiaodan
    Zhou, Congcong
    Hu, Taotao
    Zhang, LiYao
    Niu, Ruixia
    Guan, Yue
    Zhang, Ningxia
    PHYSICA E-LOW-DIMENSIONAL SYSTEMS & NANOSTRUCTURES, 2020, 119