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Dynamics and control of gold-encapped gallium arsenide nanowires imaged by 4D electron microscopy

机译:4D电子显微镜成像的金包金砷化镓纳米线的动力学和控制

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摘要

Eutectic-related reaction is a special chemical/physical reaction involving multiple phases, solid and liquid. Visualization of a phase reaction of composite nanomaterials with high spatial and temporal resolution provides a key understanding of alloy growth with important industrial applications. However, it has been a rather challenging task. Here, we report the direct imaging and control of the phase reaction dynamics of a single, as-grown free-standing gallium arsenide nanowire encapped with a gold nanoparticle, free from environmental confinement or disturbance, using four-dimensional (4D) electron microscopy. The nondestructive preparation of as-grown free-standing nanowires without supporting films allows us to study their anisotropic properties in their native environment with better statistical character. A laser heating pulse initiates the eutectic-related reaction at a temperature much lower than the melting points of the composite materials, followed by a precisely time-delayed electron pulse to visualize the irreversible transient states of nucleation, growth, and solidification of the complex. Combined with theoretical modeling, useful thermodynamic parameters of the newly formed alloy phases and their crystal structures could be determined. This technique of dynamical control aided by 4D imaging of phase reaction processes on the nanometer-ultrafast time scale opens new venues for engineering various reactions in a wide variety of other systems.
机译:与共晶有关的反应是一种特殊的化学/物理反应,涉及固态和液态多个相。具有高时空分辨率的复合纳米材料的相反应的可视化提供了重要工业应用中合金生长的关键理解。但是,这是一项颇具挑战性的任务。在这里,我们报告使用三维(4D)电子显微镜直接成像和控制的单一的,成长的独立式砷化镓纳米线包裹着金纳米粒子,不受环境的限制或干扰,其相反应动力学。不带支撑膜的无支撑生长成纳米线的无损制备使我们能够以更好的统计特性研究其在自然环境中的各向异性。激光加热脉冲在比复合材料的熔点低得多的温度下引发与共晶有关的反应,然后是精确延时的电子脉冲,以可视化复合物的成核,生长和固化的不可逆瞬态。结合理论模型,可以确定新形成的合金相及其晶体结构的有用的热力学参数。这种动态控制技术由纳米级至超快速级的相反应过程的4D成像辅助,为在各种其他系统中工程化各种反应开辟了新的场所。

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