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Direct TEM observations of growth mechanisms of two-dimensional MoS2 flakes

机译:二维MoS2薄片生长机理的直接TEM观察

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摘要

A microscopic understanding of the growth mechanism of two-dimensional materials is of particular importance for controllable synthesis of functional nanostructures. Because of the lack of direct and insightful observations, how to control the orientation and the size of two-dimensional material grains is still under debate. Here we discern distinct formation stages for MoS2 flakes from the thermolysis of ammonium thiomolybdates using in situ transmission electron microscopy. In the initial stage (400 °C), vertically aligned MoS2 structures grow in a layer-by-layer mode. With the increasing temperature of up to 780 °C, the orientation of MoS2 structures becomes horizontal. When the growth temperature reaches 850 °C, the crystalline size of MoS2 increases by merging adjacent flakes. Our study shows direct observations of MoS2 growth as the temperature evolves, and sheds light on the controllable orientation and grain size of two-dimensional materials.
机译:对二维材料生长机理的微观理解对于功能性纳米结构的可控制合成特别重要。由于缺乏直接而有见地的观察,如何控制二维材料晶粒的方向和尺寸仍在争论中。在这里,我们使用原位透射电子显微镜从硫代钼酸铵的热分解中识别出MoS2薄片的不同形成阶段。在初始阶段(400 C),垂直排列的MoS2结构以逐层模式生长。随着温度升高到780 C,MoS2结构的取向变为水平。当生长温度达到850 C时,MoS2的晶体尺寸会通过合并相邻的薄片而增加。我们的研究显示了随温度变化而直接观察到的MoS2生长,并揭示了二维材料的可控取向和晶粒尺寸。

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