Hi'/> Visualization study on capillary-spreading behavior of liquid droplet in vertically aligned carbon nanotube array
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Visualization study on capillary-spreading behavior of liquid droplet in vertically aligned carbon nanotube array

机译:垂直排列的碳纳米管阵列中液滴的毛细管扩散行为的可视化研究

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HighlightsTwo distinct modes exhibit in CNT array with different heights.The entire spreading process can be divided into flooding, capillary and evaporation stages.The capillary spreading stage can be described by Lucas-Washburn model.Self-assembly behavior that simultaneously generated biporous structure was observed.AbstractVertically aligned carbon nanotube (CNT) arrays exhibit distinct wetting characteristics. Thus, they are a promising solution for many applications such as heat-pipe wicks. In this study, the dynamic behavior of liquid-droplet spreading via capillary action in a vertically aligned CNT array has been investigated experimentally and theoretically. Two groups of CNT array with heights of 150 μm and 250 μm were tested. Two organic solvents, namely ethanol and acetone, were selected as the wetting liquids because of their good wettability with the as-grown CNTs. A visualization system equipped with a high-speed camera was used to record the capillary-spreading process. The results of the CNT array with different array heights showed two distinct modes of spreading: a steady uniform mode and an unsteady random mode. In the unsteady mode, the liquid predominantly spreads above the array. In the steady mode, the spreading process can be divided into three phases based on the different dominating effects. After the first flooding phase, the spreading in the second phase was found to follow the Lucas–Washburn model, whereas the third phase can be described using a constant evaporation-rate model. The self-assembly behavior was observed using an SEM after the wetting experiments. Honeycomb-shaped microstructures were formed spontaneously in the precursor-film region, whereas striped lines were observed on the front end of the contact line.
机译: 突出显示 在碳纳米管阵列中出现两种不同的模式,具有不同的高度。 整个铺展过程可分为浸水,毛细管和蒸发 毛细管扩散阶段可以用Lucas-Washburn模型描述。 同时生成双孔s的自组装行为观察到结构。 摘要 垂直排列的碳纳米管(CNT)阵列具有明显的润湿特性。因此,对于许多应用,例如热管芯,它们是有希望的解决方案。在这项研究中,已经通过实验和理论研究了通过毛细管作用在垂直排列的CNT阵列中液滴散布的动态行为。测试了两组高度分别为150μm和250μm的CNT阵列。选择两种有机溶剂,即乙醇和丙酮作为润湿液,因为它们与所生长的CNT具有良好的润湿性。配备高速摄像头的可视化系统用于记录毛细血管扩张过程。具有不同阵列高度的CNT阵列的结果显示了两种不同的扩展模式:稳定的均匀模式和不稳定的随机模式。在不稳定模式下,液体主要在阵列上方扩散。在稳定模式下,可以根据不同的主导效应将扩展过程分为三个阶段。在第一个淹没阶段之后,发现第二个阶段的扩散遵循卢卡斯-沃什伯恩模型,而第三个阶段可以使用恒定蒸发率模型来描述。在润湿实验之后,使用SEM观察自组装行为。在前体膜区域自发形成蜂窝状微结构,而在接触线的前端观察到条纹。

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