Crystal(编程语言)
材料科学
兴奋剂
离子键合
凝聚态物理
密度泛函理论
费米能级
离子
杂质
带隙
钇
晶体结构
电子
化学
结晶学
计算化学
物理
光电子学
氧化物
有机化学
量子力学
计算机科学
冶金
程序设计语言
作者
Yang Xiao,Bin Tang,Zhenhai Wu,Meng Ju,Jin-ni Yang
标识
DOI:10.1088/1361-648x/ad4764
摘要
Abstract Er 3+ doped barium yttrium fluoride (BaY 2 F 8 ) crystal has gained long-term attention due to its great potential in laser and medical device applications. However, the local structures of Er 3+ doped BaY 2 F 8 system (Er:BYF) remain uncertain, and the effect of doping concentration on structures and properties is unknown. Therefore, in this study, the first-principles study of the structural evolution of Er x BaY 2− x F 8 ( x = 0.125, 0.25) crystals was carried out. By means of density functional theory and particle swarm optimization algorithm, the stable structures of Er:BYF crystals with two different concentrations are shown as standard monoclinic structures with P 2 symmetry for the first time. The impurity Er 3+ ions successfully enter the main lattice, replacing the Y 3+ ions, and forming a [ErF 8 ] 5− polyhedron with C 2 point group symmetry. By calculating the electronic properties, the band gap values of the two structures are significantly reduced compared with that of pure BaY 2 F 8 crystal. However, the conduction band does not break through the Fermi level, and the crystals still maintain the insulation characteristic. According to the calculation of the electron local density function, we conclude that Er–F and Y–F in Er:BYF are connected by ionic bonds. These results fill a theoretical gap in the study of Er:BYF crystals and provide inspiration for structural evolution and material design at different doping concentrations.
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