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用于二维材料和异质结构的惰性气氛微纳加工技术

Inert-Atmosphere Microfabrication Technology for 2D Materials and Heterostructures.

作者信息

Duleba Aliaksandr, Pugachev Mikhail, Blumenau Mark, Martanov Sergey, Naumov Mark, Shupletsov Aleksey, Kuntsevich Aleksandr

机构信息

P.N. Lebedev Physical Institute of the Russian Academy of Sciences, Moscow 119991, Russia.

Dukhov Research Institute of Automatics (VNIIA), Moscow 127055, Russia.

出版信息

Micromachines (Basel). 2023 Dec 31;15(1):0. doi: 10.3390/mi15010094.

Abstract

Most 2D materials are unstable under ambient conditions. Assembly of van der Waals heterostructures in the inert atmosphere of the glove box with ex situ lithography partially solves the problem of device fabrication out of unstable materials. In our paper, we demonstrate an approach to the next-generation inert-atmosphere (nitrogen, <20 ppm oxygen content) fabrication setup, including optical contact mask lithography with a 2 μm resolution, metal evaporation, lift-off and placement of the sample to the cryostat for electric measurements in the same inert atmosphere environment. We consider basic construction principles, budget considerations, and showcase the fabrication and subsequent degradation of black-phosphorous-based structures within weeks. The proposed solutions are surprisingly compact and inexpensive, making them feasible for implementation in numerous 2D materials laboratories.

摘要

大多数二维材料在环境条件下是不稳定的。在手套箱的惰性气氛中通过非原位光刻组装范德华异质结构部分解决了由不稳定材料制造器件的问题。在我们的论文中,我们展示了一种用于下一代惰性气氛(氮气,氧气含量<20 ppm)制造装置的方法,包括具有2μm分辨率的光学接触掩膜光刻、金属蒸发、剥离以及将样品放置到低温恒温器中以便在相同的惰性气氛环境中进行电学测量。我们考虑了基本的构造原理、预算因素,并展示了基于黑磷的结构在数周内的制造及随后的降解情况。所提出的解决方案出奇地紧凑且廉价,使其在众多二维材料实验室中得以实施。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/13e7/11154319/83a4ff2f8812/micromachines-15-00094-g001.jpg

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