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首页> 外文期刊>Journal of physical chemistry letters >Atomic-Scale Imaging of a Free-Standing Monolayer Clay Mineral Nanosheet Using Scanning Transmission Electron Microscopy
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Atomic-Scale Imaging of a Free-Standing Monolayer Clay Mineral Nanosheet Using Scanning Transmission Electron Microscopy

机译:使用扫描透射电子显微镜的独立式单层粘土矿物纳米片的原子级成像

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摘要

Although aberration-corrected scanning transmission electron microscope (STEM) enables the atomic-scale visualization of ultrathin 2D materials such as graphene, imaging of electron-beam sensitive 2D materials with structural complexity is an intricate problem. We here report the first atomic-scale imaging of a free-standing monolayer clay mineral nanosheet via the annular dark field (ADF) STEM. The monolayer clay nanosheet was stably observed under optimal conditions, and we confirmed that the hexagonal contrast pattern with a pore of similar to 4 angstrom corresponds to the atomic structure of clay mineral that consisted of adjacent Si, Al, Mg, and O atoms by comparison with simulations. The findings offer the usefulness of ADF-STEM techniques for the atomic scale imaging of clay minerals and various 2D materials having electron-beam sensitivity and structural complexity than few-atom-thick graphene analogues.
机译:虽然像差校正的扫描透射电子显微镜(茎)使得超薄2D材料如石墨烯的原子级可视化,但具有结构复杂性的电子束敏感2D材料的成像是错综复杂的问题。 我们在此报告了通过环形暗田(ADF)茎的独立式单层粘土矿物纳米片的第一个原子级成像。 在最佳条件下稳定地观察单层粘土纳米蛋白,并且我们证实,具有与4埃相似的孔的六边形对比度与粘土矿物的原子结构相对应通过比较组成的粘土矿物质的原子结构 用仿真。 该发现提供了ADF-STEM技术的有用性,用于粘土矿物的原子尺度成像和具有电子射线敏感性的各种2D材料和结构复杂性而不是少量厚的石墨烯类似物。

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