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Electrostatic Deposition of Large-Surface Graphene

机译:大表面石墨烯的静电沉积

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摘要

This work describes a method for electrostatic deposition of graphene over a large area using controlled electrostatic exfoliation from a Highly Ordered Pyrolytic Graphite (HOPG) block. Deposition over 130 × 130 µm2 with 96% coverage is achieved, which contrasts with sporadic micro-scale depositions of graphene with little control from previous works on electrostatic deposition. The deposition results are studied by Raman micro-spectroscopy and hyperspectral analysis using large fields of view to allow for the characterization of the whole deposition area. Results confirm that laser pre-patterning of the HOPG block prior to cleaving generates anchor points favoring a more homogeneous and defect-free HOPG surface, yielding larger and more uniform graphene depositions. We also demonstrate that a second patterning of the HOPG block just before exfoliation can yield features with precisely controlled geometries.
机译:这项工作描述了一种方法,该方法使用可控的静电剥落技术从高度有序的热解石墨(HOPG)块上大面积沉积石墨烯。可以实现130×130 µm 2 的沉积,覆盖率达96%,这与石墨烯的零星微尺度沉积形成了对比,而先前的静电沉积工作几乎没有控制。使用大视野通过拉曼显微光谱和高光谱分析研究沉积结果,以表征整个沉积区域。结果证实,在裂解之前对HOPG嵌段进行激光预构图会生成锚定点,从而有利于更均匀和无缺陷的HOPG表面,从而产生更大,更均匀的石墨烯沉积。我们还证明了在剥落之前对HOPG块进行第二次构图可以产生具有精确控制的几何形状的特征。

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