中国物理B ›› 2016, Vol. 25 ›› Issue (2): 23102-023102.doi: 10.1088/1674-1056/25/2/023102
• ATOMIC AND MOLECULAR PHYSICS • 上一篇 下一篇
Yang Hang(杭阳), Wen-Zhi Wu(吴文志), Jin Yu(于进), Wan-Lin Guo(郭万林)
Yang Hang(杭阳), Wen-Zhi Wu(吴文志), Jin Yu(于进), Wan-Lin Guo(郭万林)
摘要: Our density functional theory calculations show that the energy gap of bilayer α -graphyne can be modulated by a vertically applied electric field and interlayer strain. Like bilayer graphene, the bilayer α -graphyne has electronic properties that are hardly changed under purely mechanical strain, while an external electric field can open the gap up to 120 meV. It is of special interest that compressive strain can further enlarge the field induced gap up to 160 meV, while tensile strain reduces the gap. We attribute the gap variation to the novel interlayer charge redistribution between bilayer α -graphynes. These findings shed light on the modulation of Dirac cone structures and potential applications of graphyne in mechanical-electric devices.
中图分类号: (Applications of density-functional theory (e.g., to electronic structure and stability; defect formation; dielectric properties, susceptibilities; viscoelastic coefficients; Rydberg transition frequencies))