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Physicochemical Characteristics and Droplet Impact Dynamics of Superhydrophobic Carbon Nanotube Arrays

机译:超疏水碳纳米管阵列的理化特性和液滴冲击动力学

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摘要

The physicochemical and droplet impact dynamics of superhydrophobic carbon nanotube arrays are investigated. These superhydrophobic arrays are fabricated simply by exposing the as-grown carbon nanotube arrays to a vacuum annealing treatment at a moderate temperature. This treatment, which allows a significant removal of oxygen adsorbates, leads to a dramatic change in wettability of the arrays, from mildly hydrophobic to superhydrophobic. Such change in wettability is also accompanied by a substantial change in surface charge and electrochemical properties. Here, the droplet impact dynamics are characterized in terms of critical Weber number, coefficient of restitution, spreading factor, and contact time. Based on these characteristics, it is found that superhydrophobic carbon nanotube arrays are among the best water-repellent surfaces ever reported. The results presented herein may pave a way for the utilization of superhydrophobic carbon nanotube arrays in numerous industrial and practical applications, including inkjet printing, direct injection engines, steam turbines, and microelectronic fabrication.
机译:研究了超疏水碳纳米管阵列的物理化学和液滴冲击动力学。这些超疏水性阵列是通过将生长的碳纳米管阵列在适当的温度下进行真空退火处理而简单地制造的。这种处理可以显着除去氧气中的吸附物,从而导致阵列的可湿性从轻度疏水性变为超疏水性发生巨大变化。润湿性的这种变化还伴随着表面电荷和电化学性质的显着变化。在此,液滴冲击动力学的特征在于临界韦伯数,恢复系数,扩散因子和接触时间。基于这些特征,发现超疏水碳纳米管阵列是有史以来最好的疏水表面之一。本文提出的结果可能为在许多工业和实际应用中利用超疏水碳纳米管阵列铺平道路,包括喷墨印刷,直喷发动机,蒸汽轮机和微电子制造。

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