双层石墨烯
解耦(概率)
材料科学
石墨烯
双层
凝聚态物理
准晶
纳米技术
物理
化学
膜
生物化学
工程类
控制工程
作者
Bing Deng,Binbin Wang,Ning Li,Rongtan Li,Yani Wang,Jilin Tang,Qiang Fu,Zhen Tian,Peng Gao,Jiamin Xue,Hailin Peng
出处
期刊:ACS Nano
[American Chemical Society]
日期:2020-01-21
卷期号:14 (2): 1656-1664
被引量:73
标识
DOI:10.1021/acsnano.9b07091
摘要
Stacking order has a strong influence on the coupling between the two layers of twisted bilayer graphene (BLG), which in turn determines its physical properties. Here, we report the investigation of the interlayer coupling of the epitaxially grown single-crystal 30°-twisted BLG on Cu(111) at the atomic scale. The stacking order and morphology of BLG is controlled by a rationally designed two-step growth process, that is, the thermodynamically controlled nucleation and kinetically controlled growth. The crystal structure of the 30°-twisted bilayer graphene (30°-tBLG) is determined to have quasicrystal-like symmetry. The electronic properties and interlayer coupling of the 30°-tBLG are investigated using scanning tunneling microscopy and spectroscopy. The energy-dependent local density of states with in situ electrostatic doping shows that the electronic states in two graphene layers are decoupled near the Dirac point. A linear dispersion originated from the constituent graphene monolayers is discovered with doubled degeneracy. This study contributes to controlled growth of twist-angle-defined BLG and provides insights on the electronic properties and interlayer coupling in this intriguing system.
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