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Layer-engineered large-area exfoliation of graphene

机译:石墨烯的层工程大面积剥离

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The competition between quality and productivity has been a major issue for large-scale applications of two-dimensional materials (2DMs). Until now, the top-down mechanical cleavage method has guaranteed pure perfect 2DMs, but it has been considered a poor option in terms of manufacturing. Here, we present a layer-engineered exfoliation technique for graphene that not only allows us to obtain large-size graphene, up to a millimeter size, but also allows selective thickness control. A thin metal film evaporated on graphite induces tensile stress such that spalling occurs, resulting in exfoliation of graphene, where the number of exfoliated layers is adjusted by using different metal films. Detailed spectroscopy and electron transport measurement analysis greatly support our proposed spalling mechanism and fine quality of exfoliated graphene. Our layer-engineered exfoliation technique can pave the way for the development of a manufacturing-scale process for graphene and other 2DMs in electronics and optoelectronics.
机译:质量和生产力之间的竞争是二维材料大规模应用的主要问题(2DMS)。到目前为止,自上而下的机械切割方法保证了纯粹的2DMS,但它被认为是制造业方面的糟糕选择。在这里,我们提出了一种用于石墨烯的层工程剥离技术,其不仅允许我们获得大尺寸的石墨烯,直到毫米尺寸,而且还允许选择性厚度控制。在石墨上蒸发的薄金属膜诱导拉伸应力,使得发生剥落,导致石墨烯的剥离,其中通过使用不同的金属膜调节剥离层的数量。详细的光谱学和电子传输测量分析极大地支持我们所提出的剥落机构和灭弧石墨烯的优良品质。我们的层工程化剥离技术可以为电子和光电子中的图形和其他2DMS开发制造规模过程的发展方法。

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