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In situ TEM study of edge reconstruction and evolution in monolayer black phosphorus

机译:原位重建和TEM研究优势进化在单层黑磷

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As symmetry-breaking interfaces, edges inevitably influence material properties, particularly for low-dimensional materials such as two-dimensional (2D) graphene and black phosphorus (BP). Hence, exploiting pristine edge structures and the associated edge reconstruction is important. In this study, we revealed edge reconstruction and evolution in monolayer BP (ML-BP) via in situ high-resolution transmission electron microscopy. Under our typical experimental conditions, spontaneous edge reconstruction occurred in all types of as-prepared edges that include zigzag, Klein zigzag, diagonal, and Klein diagonal edges. Reconstruction induces a periodic variation of the bond length and bond angles of edge atoms: an out-of-plane bending for zigzag and diagonal edge atoms and a dimerization for two neighboring edge atoms on the Klein edge, respectively. Surface atom diffusion can also induce edge structural evolution as evidenced by the atomic scale dynamics captured for the zigzag edge. Experimentally resolved edge configurations and reconstruction were further corroborated by ab initio first-principles calculations. This study explores the understanding of the edge stability in 2D BP materials and may provide routes for precisely controlled edge structure engineering.
机译:对称破裂的接口,边缘不可避免影响材料性能,特别是对低维材料,如二维的(2 d)石墨烯和黑磷(BP)。利用原始结构和边缘相关的边缘重建是很重要的。这项研究中,我们发现重建和边缘进化在单层BP (ML-BP)通过原位高分辨率透射电子显微镜。我们典型的实验条件下,自发的边缘重建发生在所有类型的好边缘,包括曲折,克莱恩曲折、对角线和克莱因对角线边缘。重建引发周期性的变化边缘原子的键长和键角:一个平面外弯曲曲折和对角优势原子和两个相邻边缘的二聚作用原子克莱因边缘,分别。原子扩散也能导致边缘结构由原子尺度演化就是明证动态捕捉的锯齿形边缘。通过实验解决配置和边缘重建被ab进一步证实采用基于计算。探讨了对边缘稳定性的理解在2 d BP材料和可能提供的路线精确控制边缘结构工程。

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