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Quality heterostructures from two-dimensional crystals unstable in air by their assembly in inert atmosphere

机译:通过在惰性气氛中组装而在空气中不稳定的二维晶体产生的高质量异质结构

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摘要

Many layered materials can be cleaved down to individual atomic planes, similar to graphene, but only a small minority of them are stable under ambient conditions. The rest react and decompose in air, which has severely hindered their investigation and potential applications. Here we introduce a remedial approach based on cleavage, transfer, alignment, and encapsulation of air-sensitive crystals, all inside a controlled inert atmosphere. To illustrate the technology, we choose two archetypal two-dimensional crystals that are of intense scientific interest but are unstable in air: black phosphorus and niobium diselenide. Our field-effect devices made from their monolayers are conductive and fully stable under ambient conditions, which is in contrast to the counterparts processedudin air. NbSe2 remains superconducting down to the monolayer thickness. Starting with a trilayer, phosphorene devices reach sufficiently high mobilities to exhibit Landau quantization. The approach offers a venue to significantly expand the range of experimentally accessible two-dimensional crystals and their heterostructures.
机译:与石墨烯相似,许多层状材料都可以分解为单个原子平面,但其中只有一小部分在环境条件下稳定。其余的在空气中反应并分解,这严重阻碍了它们的研究和潜在的应用。在这里,我们介绍一种基于对空气敏感的晶体的裂解,转移,排列和封装的补救方法,这些方法均在受控的惰性气氛中进行。为了说明该技术,我们选择了两个具有浓厚科学兴趣但在空气中不稳定的原型二维晶体:黑磷和二硒化铌。我们的单层膜制成的场效应器件在环境条件下具有导电性和完全稳定性,这与处理过的 udin空气中的同类器件形成对比。 NbSe2保持超导,直至单层厚度。从三层开始,phosphor装置达到足够高的迁移率,以展现Landau量化。该方法为大幅扩展实验可访问的二维晶体及其异质结构的范围提供了场所。

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