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Atomic mechanism of metal crystal nucleus formation in a single-walled carbon nanotube.

机译:单壁碳纳米管中金属晶体核形成的原子机制。

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摘要

Knowing how crystals nucleate at the atomic scale is crucial for understanding, and in turn controlling, the structure and properties of a wide variety of materials. However, because of the scale and highly dynamic nature of nuclei, the formation and early growth of nuclei are very difficult to observe. Here, we have employed single-walled carbon nanotubes as test tubes, and an 'atomic injector' coupled with aberration-corrected transmission electron microscopy, to enable in situ imaging of the initial steps of nucleation at the atomic scale. With three different metals we observed three main processes prior to heterogeneous nucleation: formation of crystal nuclei directly from an atomic seed (Fe), from a pre-existing amorphous nanocluster (Au) or by coalescence of two separate amorphous sub-nanometre clusters (Re). We demonstrate the roles of the amorphous precursors and the existence of an energy barrier before nuclei formation. In all three cases, crystal nucleus formation occurred through a two-step nucleation mechanism.
机译:知道如何在原子尺度下成核的核心对于理解至关重要,而且反过来控制,各种材料的结构和性能。然而,由于核的规模和高度动态性质,核的形成和早期生长非常难以观察。在这里,我们使用单壁碳纳米管作为试管,以及与像差校正的透射电子显微镜相连的“原子喷射器”,以便在原子尺度上以核切割的初始步骤起到原位成像。具有三种不同的金属,我们在异质核细胞之前观察到三种主要方法:从预先存在的无定形纳米簇(Au)或通过两个单独的非晶子纳米簇的聚结形成晶体(Fe)的晶体(Re )。我们证明了非晶前体的作用以及核形成前能量屏障的存在。在所有三种情况下,通过两步成核机制发生晶体核形成。

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  • 来源
    《Nature Chemistry》 |2020年第10期|共8页
  • 作者单位

    Central Facility for Electron Microscopy Group of Electron Microscopy of Materials Science Ulm University;

    Central Facility for Electron Microscopy Group of Electron Microscopy of Materials Science Ulm University;

    School of Chemistry University of Nottingham;

    School of Chemistry University of Nottingham;

    Institute of Process Research &

    Development School of Chemistry University of Leeds;

    Nanomaterials Research Institute National Institute of Advanced Industrial Science and Technology (AIST);

    Nanomaterials Research Institute National Institute of Advanced Industrial Science and Technology (AIST);

    School of Chemistry University of Nottingham;

    School of Chemistry University of Nottingham;

    School of Chemistry University of Nottingham;

    Central Facility for Electron Microscopy Group of Electron Microscopy of Materials Science Ulm University;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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