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  5. Hetero-site nucleation for growing twisted bilayer graphene with a wide range of twist angles

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Article
English
2021

Hetero-site nucleation for growing twisted bilayer graphene with a wide range of twist angles

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English
2021
Nature Communications
Vol 12 (1)
DOI: 10.1038/s41467-021-22533-1

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Konstantin ‘kostya’  Novoselov
Konstantin ‘kostya’ Novoselov

The University of Manchester

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Luzhao Sun
Zihao Wang
Yuechen Wang
+19 more

Abstract

Twisted bilayer graphene (tBLG) has recently attracted growing interest due to its unique twist-angle-dependent electronic properties. The preparation of high-quality large-area bilayer graphene with rich rotation angles would be important for the investigation of angle-dependent physics and applications, which, however, is still challenging. Here, we demonstrate a chemical vapor deposition (CVD) approach for growing high-quality tBLG using a hetero-site nucleation strategy, which enables the nucleation of the second layer at a different site from that of the first layer. The fraction of tBLGs in bilayer graphene domains with twist angles ranging from 0° to 30° was found to be improved to 88%, which is significantly higher than those reported previously. The hetero-site nucleation behavior was carefully investigated using an isotope-labeling technique. Furthermore, the clear Moiré patterns and ultrahigh room-temperature carrier mobility of 68,000 cm 2 V −1 s −1 confirmed the high crystalline quality of our tBLG. Our study opens an avenue for the controllable growth of tBLGs for both fundamental research and practical applications.

How to cite this publication

Luzhao Sun, Zihao Wang, Yuechen Wang, Liang Zhao, Yanglizhi Li, Buhang Chen, Shenghong Huang, Shishu Zhang, Wendong Wang, Ding Pei, Hong-Wei Fang, Shan Zhong, Haiyang Liu, Jincan Zhang, Lianming Tong, Yulin Chen, Zhenyu Li, Mark H. Rümmeli, Konstantin ‘kostya’ Novoselov, Hailin Peng, Li Lin, Zhongfan Liu (2021). Hetero-site nucleation for growing twisted bilayer graphene with a wide range of twist angles. Nature Communications, 12(1), DOI: 10.1038/s41467-021-22533-1.

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Publication Details

Type

Article

Year

2021

Authors

22

Datasets

0

Total Files

0

Language

English

Journal

Nature Communications

DOI

10.1038/s41467-021-22533-1

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