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在环境空气中对二维材料和范德华异质结构中的界面粘附力进行直接测量。

Direct measurements of interfacial adhesion in 2D materials and van der Waals heterostructures in ambient air.

作者信息

Rokni Hossein, Lu Wei

机构信息

Department of Mechanical Engineering, University of Michigan, Ann Arbor, MI, 48109, USA.

Department of Materials Science and Engineering, University of Michigan, Ann Arbor, MI, 48109, USA.

出版信息

Nat Commun. 2020 Nov 5;11(1):5607. doi: 10.1038/s41467-020-19411-7.

Abstract

Interfacial adhesion energy is a fundamental property of two-dimensional (2D) layered materials and van der Waals heterostructures due to their intrinsic ultrahigh surface to volume ratio, making adhesion forces very strong in many processes related to fabrication, integration and performance of devices incorporating 2D crystals. However, direct quantitative characterization of adhesion behavior of fresh and aged homo/heterointerfaces at nanoscale has remained elusive. Here, we use an atomic force microscopy technique to report precise adhesion measurements in ambient air through well-defined interactions of tip-attached 2D crystal nanomesas with 2D crystal and SiO substrates. We quantify how different levels of short-range dispersive and long-range electrostatic interactions respond to airborne contaminants and humidity upon thermal annealing. We show that a simple but very effective precooling treatment can protect 2D crystal substrates against the airborne contaminants and thus boost the adhesion level at the interface of similar and dissimilar van der Waals heterostructures. Our combined experimental and computational analysis also reveals a distinctive interfacial behavior in transition metal dichalcogenides and graphite/SiO heterostructures beyond the widely accepted van der Waals interaction.

摘要

界面粘附能是二维(2D)层状材料和范德华异质结构的一项基本属性,这归因于它们固有的超高表面积与体积比,使得在与包含二维晶体的器件制造、集成及性能相关的许多过程中,粘附力非常强。然而,在纳米尺度下对新鲜和老化的同/异质界面的粘附行为进行直接定量表征仍然难以实现。在此,我们使用原子力显微镜技术,通过尖端附着的二维晶体纳米台面与二维晶体及SiO衬底之间明确的相互作用,报告在环境空气中的精确粘附测量结果。我们量化了不同水平的短程色散和长程静电相互作用在热退火时对空气中污染物和湿度的响应。我们表明,一种简单但非常有效的预冷处理可以保护二维晶体衬底免受空气中污染物的影响,从而提高相似和不同范德华异质结构界面处的粘附水平。我们结合实验和计算分析还揭示了过渡金属二硫属化物以及石墨/SiO异质结构中一种独特的界面行为,这种行为超出了广泛接受的范德华相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/189b/7645779/3c1e458f2ad8/41467_2020_19411_Fig1_HTML.jpg

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