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The Hide-and-Seek of Grain Boundaries from Moiré Pattern Fringe of Two-Dimensional Graphene

机译:二维石墨烯的莫尔条纹边缘的晶界捉迷藏

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摘要

Grain boundaries (GBs) commonly exist in crystalline materials and affect various properties of materials. The facile identification of GBs is one of the significant requirements for systematical study of polycrystalline materials including recently emerging two-dimensional materials. Previous observations of GBs have been performed by various tools including high resolution transmission electron microscopy. However, a method to easily identify GBs, especially in the case of low-angle GBs, has not yet been well established. In this paper, we choose graphene bilayers with a GB as a model system and investigate the effects of interlayer rotations to the identification of GBs. We provide a critical condition between adjacent moiré fringe spacings, which determines the possibility of GB recognition. In addition, for monolayer graphene with a grain boundary, we demonstrate that low-angle GBs can be distinguished easily by inducing moiré patterns deliberately with an artificial reference overlay.
机译:晶界(GBs)通常存在于晶体材料中,并影响材料的各种性能。 GBs的简便鉴定是对包括最近出现的二维材料在内的多晶材料进行系统研究的重要要求之一。 GB的先前观察已经通过包括高分辨率透射电子显微镜在内的各种工具进行了。然而,尚未很好地建立一种容易识别GB的方法,尤其是在低角度GB的情况下。在本文中,我们选择具有GB的石墨烯双层作为模型系统,并研究层间旋转对GBs识别的影响。我们在相邻的莫尔条纹间距之间提供了一个临界条件,它确定了GB识别的可能性。此外,对于具有晶界的单层石墨烯,我们证明了通过用人工参考覆盖层故意诱发莫尔条纹可以轻松地区分低角度GB。

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