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首页> 外文期刊>ACS nano >Visualization of Grain Structure and Boundaries of Polycrystalline Graphene and Two-Dimensional Materials by Epitaxial Growth of Transition Metal Dichalcogenides
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Visualization of Grain Structure and Boundaries of Polycrystalline Graphene and Two-Dimensional Materials by Epitaxial Growth of Transition Metal Dichalcogenides

机译:过渡金属二硫属元素化物的外延生长可视化多晶石墨烯和二维材料的晶粒结构和边界

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The presence of grain boundaries in two-dimensional (2D) materials is known to greatly affect their physical, electrical, and chemical properties. Given the difficulty in growing perfect large single-crystals of 2D materials, revealing the presence and characteristics of grain boundaries becomes an important issue for practical applications. Here, we present a method to-visualize the grain structure and boundaries of 2D materials by epitaxially growing transition metal dichalcogenides (TMDCs) over them. Triangular single-crystals of molybdenum disulfide (MoS2) epitaxially grown on the surface of graphene allowed us to determine the orientation and size of the graphene grains. Grain boundaries in the polycrystalline graphene were also-visualized reflecting their higher chemical reactivity than the basal plane. The method was successfully applied to graphene field-effect transistors, revealing the actual grain structures of the graphene channels. Moreover, we demonstrate that this method can be extended to determine the grain structure of other 2D materials, such as tungsten disulfide (WS2). Our visualization method based on van der Waals epitaxy can offer a facile and large-scale labeling technique to investigate the grain structures of various 2D materials, and it will also contribute to understand the relationship between their grain structure and physical properties.
机译:众所周知,二维(2D)材料中晶界的存在会极大地影响其物理,电和化学性能。鉴于难以生长2D材料的完美大型单晶,揭示晶界的存在和特征成为实际应用中的重要问题。在这里,我们提出了一种通过在其上外延生长过渡金属二卤化物(TMDC)来可视化2D材料的晶粒结构和边界的方法。外延生长在石墨烯表面的二硫化钼(MoS2)三角单晶使我们能够确定石墨烯晶粒的取向和尺寸。还可视化了多晶石墨烯中的晶界,反映出它们的化学反应性高于基面。该方法成功应用于石墨烯场效应晶体管,揭示了石墨烯沟道的实际晶粒结构。此外,我们证明了该方法可以扩展来确定其他2D材料(例如二硫化钨(WS2))的晶粒结构。我们基于范德华外延的可视化方法可以提供一种简便且大规模的标记技术,以研究各种2D材料的晶粒结构,还将有助于理解它们的晶粒结构与物理性质之间的关系。

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