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Observation and investigation of graphite superlattice boundaries by scanning tunneling microscopy

机译:扫描隧道显微镜观察和研究石墨超晶格边界

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摘要

In this article, we report on scanning tunneling microscopy (STM) observations of several different kinds of superlattice boundaries on highly-oriented pyrolytic graphite (HOPG) including an array of bead-like structures, a monolayer deep trench, a zig-zag shaped termination, and a plain boundary without features. Results of a simulation model show that a top rotated graphite layer with a straight boundary does not necessarily lead to the zig-zag shaped boundary of the resulting superlattice as has been previously claimed. The formation of the bead-like, trench, and zig-zag shaped boundaries is explained from the energetic point of view. Our study also shows evidence for the superlattice-mediated observation of a low-angle grain boundary with a varying tilt angle. A relationship between the periodicity of the boundary dislocations and the periodicity of the superlattice across the boundary is derived. The result of this work is important for an understanding of superlattices on graphite whose origin is not yet completely understood.
机译:在本文中,我们报告了在高度定向的热解石墨(HOPG)上几种不同类型的超晶格边界的扫描隧道显微镜(STM)观察结果,包括一系列珠状结构,单层深沟槽,之字形终止,并且没有任何特征。仿真模型的结果表明,具有笔直边界的顶部旋转石墨层并不一定会导致所得超晶格的锯齿形边界,如先前所主张的那样。从能量的角度解释了珠状,沟槽和之字形边界的形成。我们的研究还显示了超晶格介导的低倾角变化的低角度晶界观察的证据。推导了边界位错的周期性和跨边界的超晶格的周期性之间的关系。这项工作的结果对于理解石墨的超晶格非常重要,而石墨的起源尚未完全被理解。

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