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Structural identification of silicene on the Ag(111) surface by atomic force microscopy

机译:原子力显微镜在Ag(111)表面上硅的结构鉴定

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摘要

Silicene is a two-dimensional atomic layer material with buckled honeycomb arrangements of Si atoms. The diversity of those arrangements, which expands its potential applications, makes it difficult to determine its structure in any particular case. In this paper, we show that atomic force microscopy (AFM) has the capability of structural determination of unknown phases of silicene. We carried out an AFM observation of (root 13 x root 13 )R13.9 degrees silicene of unknown structures on Ag(111). Remarkably, it was shown that all constituent Si atoms forming a honeycomb lattice can be resolved by AFM whereas scanning tunneling microscopy (STM) can image only the topmost Si atoms. High-resolution AFM imaging allowed us to identify two types of buckled structure of (root 13 x root 13)R13.9 degrees silicene on Ag(111), which had not been previously discriminated. The structure models obtained by theoretical simulation reproduced AFM images as well as previous STM images. In addition, the mechanism of high-resolution AFM imaging was elucidated by force spectroscopy combined with first-principles calculations. Namely, attractive interaction with the tip pulls up buckled down Si atoms, causing local flips of the buckled structures.
机译:硅树脂是具有Si原子弯曲蜂窝排列的二维原子层材料。这些安排的多样性扩大了其潜在的应用范围,因此在任何特定情况下都很难确定其结构。在本文中,我们证明了原子力显微镜(AFM)具有确定未知相的结构的能力。我们对Ag(111)上未知结构的(根13 x根13)R13.9度硅进行了AFM观察。值得注意的是,显示出形成蜂窝状晶格的所有组成Si原子都可以通过AFM进行解析,而扫描隧道显微镜(STM)只能成像最上面的Si原子。高分辨率原子力显微镜成像使我们能够识别出Ag(111)上(根13 x根13)R13.9度硅的两种弯曲结构,这是以前没有发现的。通过理论模拟获得的结构模型复制了AFM图像以及以前的STM图像。此外,通过力谱结合第一原理计算阐明了高分辨率原子力显微镜成像的机理。即,与尖端的吸引相互作用使向下弯曲的Si原子上拉,从而引起弯曲结构的局部翻转。

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