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Updated: May 12, 2026

Fabricating van der Waals Heterostructures with Precise Rotational Alignment
Published on: July 5, 2019
Scalable Integration of Lateral van der Waals Heterostructure Arrays via a Self-Aligned Approach
Jiawen Yan1, Huiyi Zhang2, Yixuan Zou1
1Department of Precision Instruments, Tsinghua University, Beijing 10084, China.
Abstract:
Two-dimensional (2D) material lateral van der Waals heterostructures (vdWHs) have emerged as promising platforms for high-performance nano devices and the exploration of novel physical phenomena. However, their fabrication remains highly challenging owing to the difficulty of achieving nanoscale precision in material transfer and alignment. Here, we report a self-aligned fabrication method compatible with semiconductor manufacturing for the large-scale fabrication of 2D material lateral vdWH arrays. Using this approach, we realize over 800 lateral MoS2/graphene vdWHs on a 1 cm × 1 cm Si/SiO2 substrate. Compared with the vertical MoS2/graphene vdWH device, the lateral device shows a six-order-of-magnitude reduction in dark current density and a three-order-of-magnitude enhancement in the normalized photocurrent-to-dark-current ratio. The fabricated photodetector array features minimal device-to-device variation, a yield close to unity with high uniformity, and excellent imaging performance. This scalable strategy can be readily extended to other 2D materials, offering new opportunities for next-generation functional device design.
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