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大面积二维单层和异质结构阵列的干法剥离

Dry Exfoliation of Large-Area 2D Monolayer and Heterostructure Arrays.

作者信息

Li Zhiwei, Ren Liwang, Wang Shiyu, Huang Xinxin, Li Qianyuan, Lu Zheyi, Ding Shuimei, Deng Hanjun, Chen Pingan, Lin Jun, Hu Yuanyuan, Liao Lei, Liu Yuan

机构信息

Key Laboratory for Micro-Nano Optoelectronic Devices of Ministry of Education, School of Physics and Electronics, Hunan University, Changsha 410082, China.

出版信息

ACS Nano. 2021 Aug 24;15(8):13839-13846. doi: 10.1021/acsnano.1c05734. Epub 2021 Aug 6.

Abstract

Two-dimensional (2D) semiconductors have attracted considerable attention in recent years. However, to date, there is still no effective approach to produce large-scale monolayers while retaining their intrinsic properties. Here, we report a simple mechanical exfoliation method to produce large-scale and high-quality 2D semiconductors, by designing an atomically flat Au-mesh film as the peeling tape. Using our prefabricated mesh tape, the limited contact region (between the 2D crystal and Au) could provide enough adhesion to mechanically exfoliate uniform 2D monolayers, and the noncontact region (between the mesh holes and monolayers) ensures weak interaction to mechanically release the 2D monolayers on desired substrates. Together, we demonstrate a scalable method to dry exfoliate various 2D monolayer arrays onto different substrates without involving any solutions or contaminations, representing the optimization between material yield, scalability, and quality. Furthermore, detailed optical and electrical characterizations are conducted to confirm their intrinsic quality. With the ability to mechanically exfoliate various 2D arrays and further restacking them, we have demonstrated large-scale van der Waals heterostructure arrays through layer-to-layer assembling. Our study offers a simple and scalable method for dry exfoliating 2D monolayer and heterostructure arrays with intrinsic material quality, which could be crucial to accelerate fundamental investigations as well as practical applications of proof-of-concepts devices.

摘要

近年来,二维(2D)半导体引起了广泛关注。然而,迄今为止,仍没有一种有效的方法能够在保留其固有特性的同时大规模制备单层二维半导体。在此,我们报道一种简单的机械剥离方法,通过设计一种原子级平整的金网薄膜作为剥离胶带,来制备大规模、高质量的二维半导体。使用我们预制的网带,有限的接触区域(二维晶体与金之间)能够提供足够的附着力以机械剥离出均匀的二维单层,而非接触区域(网孔与单层之间)则确保弱相互作用,从而在所需的衬底上机械释放二维单层。总之,我们展示了一种可扩展的方法,能够在不涉及任何溶液或污染的情况下,将各种二维单层阵列干法剥离到不同的衬底上,这体现了材料产量、可扩展性和质量之间的优化。此外,我们还进行了详细的光学和电学表征以确认其固有质量。凭借机械剥离各种二维阵列并进一步重新堆叠它们的能力,我们通过逐层组装展示了大规模的范德华异质结构阵列。我们的研究为干法剥离具有固有材料质量的二维单层和异质结构阵列提供了一种简单且可扩展的方法,这对于加速基础研究以及概念验证器件的实际应用可能至关重要。

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