Gold‐Template‐Assisted Mechanical Exfoliation of Large‐Area 2D Layers Enables Efficient and Precise Construction of Moiré Superlattices

Author:

Wu Kang12ORCID,Wang Hao12ORCID,Yang Meng12,Liu Li1,Sun Zhenyu12,Hu Guojing1,Song Yanpeng1,Han Xin13,Guo Jiangang1,Wu Kehui12,Feng Baojie12,Shen Chengmin12,Huang Yuan4,Shi Youguo1235,Cheng Zhigang125,Yang Haitao126,Bao Lihong126ORCID,Pantelides Sokrates T.27,Gao Hong‐Jun126

Affiliation:

1. Institute of Physics Chinese Academy of Sciences Beijing 100190 P. R. China

2. School of Physical Sciences and CAS Key Laboratory of Vacuum Physics University of Chinese Academy of Sciences Beijing 100049 P. R. China

3. Center of Materials Science and Optoelectronics Engineering University of Chinese Academy of Science Beijing 100049 P. R. China

4. Advanced Research Institute of Multidisciplinary Science Beijing Institute of Technology Beijing 100081 P. R. China

5. Songshan Lake Materials Laboratory Dongguan Guangdong 523808 P. R. China

6. Hefei National Laboratory Hefei Anhui 230088 P. R. China

7. Department of Physics and Astronomy & Department of Electrical and Computer Engineering Vanderbilt University Nashville TN 37235 USA

Abstract

AbstractMoiré superlattices, consisting of rotationally aligned 2D atomically thin layers, provide a highly novel platform for the study of correlated quantum phenomena. However, reliable and efficient construction of moiré superlattices is challenging because of difficulties to accurately angle‐align small exfoliated 2D layers and the need to shun wet‐transfer processes. Here, efficient and precise construction of various moiré superlattices is demonstrated by picking up and stacking large‐area 2D mono‐ or few‐layer crystals with predetermined crystal axes, made possible by a gold‐template‐assisted mechanical exfoliation method. The exfoliated 2D layers are semiconductors, superconductors, or magnets and their high quality is confirmed by photoluminescence and Raman spectra and by electrical transport measurements of fabricated field‐effect transistors and Hall devices. Twisted homobilayers with angle‐twisting accuracy of ≈0.3°, twisted heterobilayers with sub‐degree angle‐alignment accuracy, and multilayer superlattices are precisely constructed and characterized by their moiré patterns, interlayer excitons, and second harmonic generation. The present study paves the way for exploring emergent phenomena in moiré superlattices.

Funder

National Natural Science Foundation of China

Youth Innovation Promotion Association of the Chinese Academy of Sciences

Natural Science Foundation of Beijing Municipality

Publisher

Wiley

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