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Edge Delamination of Monolayer Transition Metal Dichalcogenides

机译:Monolayer过渡金属二甲基化物的边缘分层

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摘要

Delamination of thin films from the supportive substrates is a critical issue within the thin film industry. The emergent two-dimensional, atomic layered materials, including transition metal dichalcogenides, are highly flexible; thus buckles and wrinkles can be easily generated and play vital roles in the corresponding physical properties. Here we introduce one kind of patterned buckling behavior caused by the delamination from a substrate initiated at the edges of the chemical vapor deposition synthesized monolayer transition metal dichalcogenides, led by thermal expansion mismatch. The atomic force microscopy and optical characterizations clearly showed the puckered structures associated with the strain, whereas the transmission electron microscopy revealed the special sawtooth-shaped edges, which break the geometrical symmetry for the buckling behavior of hexagonal samples. The condition of the edge delamination is in accordance with the fracture behavior of thin film interfaces. This edge delamination and buckling process is universal for most ultrathin two-dimensional materials, which requires more attention in various future
机译:来自支撑基材的薄膜的分层是薄膜行业内的一个关键问题。突出的二维原子分层材料,包括过渡金属二甲基甲基化物,是高度柔韧的;因此,可以在相应的物理性质中轻松生成并在相应的物理性质中易于生成和皱纹。在这里,我们介绍由在化学气相沉积合成的单层过渡金属二甲基甲基化物的边缘处引发的基材引起的一种图案化屈曲行为,通过热膨胀不匹配。原子力显微镜和光学表征清楚地显示了与菌株相关的褶皱结构,而透射电子显微镜揭示了特殊的锯齿形边缘,其打破了六边形样品的屈曲行为的几何对称性。边缘分层的状况符合薄膜界面的断裂行为。这种边缘分层和屈曲过程适用于大多数超薄二维材料,需要在各种未来更加关注

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