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Capillary force-induced superlattice variation atop a nanometer-wide graphene flake and its moiré origin studied by STM

机译:STM研究的纳米石墨烯薄片上毛细作用力引起的超晶格变化及其莫尔条纹起源

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摘要

We present strong experimental evidence for the moiré origin of superlattices on graphite by imaging a live transition from one superlattice to another with concurrent and direct measurement of the orientation angle before and after rotation using scanning tunneling microscopy (STM). This has been possible due to a fortuitous observation of a superlattice on a nanometer-sized graphene flake wherein we have induced a further rotation of the flake utilizing the capillary forces at play at a solid–liquid interface using STM tip motion. We propose a more “realistic” tip–surface meniscus relevant to STM at solid–liquid interfaces and show that the capillary force is sufficient to account for the total expenditure of energy involved in the process.
机译:通过对从一个超晶格到另一个超晶格的实时跃迁进行成像,并同时使用扫描隧道显微镜(STM)进行旋转前后的定向角的直接测量,我们为石墨上的超晶格的莫尔纹起源提供了有力的实验证据。由于对纳米级石墨烯薄片上的超晶格进行了偶然的观察,因此这是可能的,其中我们利用STM尖端运动利用固-液界面处起作用的毛细作用力诱导了薄片的进一步旋转。我们提出了一种在固液界面上与STM有关的更“现实”的尖端表面弯液面,并表明毛细作用力足以解决该过程所涉及的总能量消耗。

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