材料科学
超晶格
云纹
凝聚态物理
单层
联轴节(管道)
量子隧道
扫描隧道显微镜
化学气相沉积
范德瓦尔斯力
光电子学
纳米技术
光学
复合材料
分子
化学
物理
有机化学
作者
Haihong Zheng,Hongli Guo,Shula Chen,Biao Wu,Shaofei Li,Jun He,Zongwen Liu,Gang Lü,Xidong Duan,Anlian Pan,Yanping Liu
标识
DOI:10.1002/adma.202210909
摘要
Moiré superlattices in twisted van der Waals materials offer a powerful platform for exploring light-matter interactions. The periodic moiré potentials in moiré superlattices can induce strongly correlated quantum phenomena that depend on the moiré potential associated with interlayer coupling at the interface. However, moiré superlattices are primarily prepared by mechanical exfoliation and manual stacking, where the transfer methods easily cause interfacial contamination, and the preparation of high-quality bilayer 2D materials with small twist angles by growth methods remains a significant challenge. In this work, WSe2 /WSe2 homobilayers with different twist angles by chemical vapor deposition (CVD), using a heteroatom-assisted growth technique, are synthesized. Using low-frequency Raman scattering, the uniformity of the moiré superlattices is mapped to demonstrate the strong interfacial coupling of the CVD-fabricated twist-angle homobilayers. The moiré potential depths of the CVD-grown and artificially stacked homostructures with twist angles of 1.5° are 115 and 45 meV (an increase of 155%), indicating that the depth of moiré potential can be modulated by the interfacial coupling. These results open a new avenue to study the modulation of moiré potential by strong interlayer coupling and provide a foundation for the development of twistronics.
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