异质结
石墨烯
电场
材料科学
拉伤
凝聚态物理
领域(数学)
纳米技术
光电子学
物理
量子力学
医学
数学
纯数学
内科学
作者
Wenyan Zan,Wei Geng,Huanxiang Liu,Xiaojun Yao
摘要
Vertical heterostructures of MoS2/h-BN/graphene have been successfully fabricated in recent experiments. Using first-principles analysis, we show that the structural and electronic properties of such vertical heterostructures are sensitive to applied vertical electric fields and strain. The applied electric field not only enhances the interlayer coupling but also linearly controls the charge transfer between graphene and MoS2 layers, leading to a tunable doping in graphene and controllable Schottky barrier height. Applied biaxial strain could weaken the interlayer coupling and results in a slight shift of graphene's Dirac point with respect to the Fermi level. It is of practical importance that the tunable electronic properties by strain and electric fields are immune to the presence of sulfur vacancies, the most common defect in MoS2.
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