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Simultaneous assembly of van der Walls heterostructures into multiple nanodevices

机译:同时组装van der墙壁异质结构为多个nanodevices

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van der Waals heterostructures (vdWH) are made of different two-dimensional (2D) layers stacked on top of each other, forming a single material with unique properties that differ from those of the individual 2D constituent layers, and that can be modulated through the interlayer interaction. These hetero-materials can be artificially made by mechanical stamping, solution processing or epitaxial growth. Alternatively, franckeite has been recently described as an example of a naturally-occurring vdWH that can be exfoliated down to nanometer thicknesses. Research on vdWHs has so far been limited to manually exfoliated and stamped individual devices. Here, a scalable and fast method to fabricate vdWH nanodevices from liquid phase exfoliated nanoflakes is reported. The transport and positioning of the flakes into localized submicrometer structures is achieved simultaneously in multiple devices via a dielectrophoretic process. The complex vdWH is preserved after dielectrophoresis and the properties of the resulting field-effect transistors are equivalent to those fabricated via mechanical exfoliation and stamping. The combination of liquid phase exfoliation and dielectrophoretic assembly is particularly suited for the study of vdWHs and applications where large-scale fabrication is required.
机译:范德瓦耳斯异质结构(vdWH)是由时间组成的不同的二维(2 d)层堆叠对方,形成一个单一的材料独特的属性,不同于那些个人2 d层组成,可以通过层间相互作用调制。这些hetero-materials可以人为地制造由机械冲压、处理或解决方案外延生长。最近的一个例子自然产生的vdWH剥落了纳米厚度。迄今为止有限的手动脱落和印个人设备。和快速的方法来制造vdWH nanodevices从液相nanoflakes脱落报道。片到本地化的亚微米结构通过实现同时在多个设备dielectrophoretic过程。双向电泳和后保存由此产生的场效应的性质晶体管相当于那些编造的通过机械剥离和冲压。液相剥离和组合dielectrophoretic装配尤为适合vdWHs研究和应用大规模的制造是必需的。

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