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Heterostructures based on two-dimensional layered materials and their potential applications

机译:基于二维分层材料的异质结构及其潜在应用

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摘要

The development of two-dimensional (2D) layered materials is driven by fundamental interest and their potential applications. Atomically thin 2D materials provide a wide range of basic building blocks with unique electrical, optical, and thermal properties which do not exist in their bulk counterparts. The van der Waals interlayer interaction enables the possibility to exfoliate and reassemble different 2D materials into arbitrarily and vertically stacked heterostructures. Recently developed vapor phase growth of 2D materials further paves the way of directly synthesizing vertical and lateral heterojunctions. This review provides insights into the layered 2D heterostructures, with a concise introduction to preparative approaches for 2D materials and heterostructures. These unique 2D heterostructures have abundant implications for many potential applications.
机译:二维(2D)分层材料的发展受到基本兴趣及其潜在应用的推动。原子薄的2D材料为广泛的基本构建块提供了独特的电,光学和热特性,而这些特性在其体积同类中不存在。范德华层间相互作用使剥落不同的2D材料并将其重新组装为任意和垂直堆叠的异质结构的可能性成为可能。最近开发的2D材料气相生长进一步为直接合成垂直和横向异质结铺平了道路。这篇综述提供了有关分层2D异质结构的见解,并简要介绍了2D材料和异质结构的制备方法。这些独特的2D异质结构对许多潜在应用具有丰富的意义。

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