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Clocking the anisotropic lattice dynamics of multi-walled carbon nanotubes by four-dimensional ultrafast transmission electron microscopy

机译:用四维超快透射电子显微镜计时多壁碳纳米管的各向异性晶格动力学

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Recent advances in the four-dimensional ultrafast transmission electron microscope (4D-UTEM) with combined spatial and temporal resolutions have made it possible to directly visualize structural dynamics of materials at the atomic level. Herein, we report on our development on a 4D-UTEM which can be operated properly on either the photo-emission or the thermionic mode. We demonstrate its ability to obtain sequences of snapshots with high spatial and temporal resolutions in the study of lattice dynamics of the multi-walled carbon nanotubes (MWCNTs). This investigation provides an atomic level description of remarkable anisotropic lattice dynamics at the picosecond timescales. Moreover, our UTEM measurements clearly reveal that distinguishable lattice relaxations appear in intra-tubular sheets on an ultrafast timescale of a few picoseconds and after then an evident lattice expansion along the radial direction. These anisotropic behaviors in the MWCNTs are considered arising from the variety of chemical bonding, i.e. the weak van der Waals bonding between the tubular planes and the strong covalent sp2-hybridized bonds in the tubular sheets.
机译:具有组合的空间和时间分辨率的四维超快传输电子显微镜(4D-UTEM)的最新进展使得可以直接可视化原子水平的材料的结构动态。在此,我们在4D-UTEM上报告了我们的开发,可以在光发射或热离子模式下正确操作。我们展示了在多壁碳纳米管(MWCNT)的晶格动力学研究中获得具有高空间和时间分辨率的快照序列的能力。本调查提供了在PicoSecond Timescalles上对显着的各向异性晶格动力学的原子水平描述。此外,我们的UTEM测量清楚地揭示了几种皮秒的超自秒钟内部的分布式晶格松弛,然后在沿径向方向上的明显晶格膨胀后出现在管内的薄片上。 MWCNT中的这些各向异性行为被认为是由化学键合的各种化学键合而产生的,即管状平面和强的共价SP在管状板中的弱van der下载键合和强的共价sp 2 - 杂交键。

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