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Cassie-Levitated Droplets for Distortion-Free Low-Energy Solid Liquid Interactions

机译:用于无失真低能量固体液体相互作用的卡西悬浮液滴

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Despite the rapid advent of superomniphobic materials, there is a lack of methodologies to accurately investigate the ultralow-energy interactions taking place on these interfaces. For instance, universally employed models such as the pendant droplet often fail to provide representative information on the wetting properties of superomniphobic surfaces. The delicate balance between the forces acting at the droplet-surface and droplet-needle interfaces can easily result in heavily distorted droplet profiles. Here, we introduce a Cassie-levitating droplet model which overcomes the limitations of the pendant droplet model, allowing a distortion-free assessment of the interactions between super(amphi)omniphobic materials and low surface tension liquids. Comparative analysis in wetting of low surface tension fluids such as hexadecane (similar to 27.47 mN/m) on superamphiphobic surfaces via the Cassie-levitating and pendant droplet models reveals up to 70 degrees (800%) deviations in the estimated contact angle hysteresis. A theoretical framework is developed to assess experimentally observed profile distortions against ideal gravity-induced sagging of droplet shapes during dynamic droplet expansion and contraction cycles. Notably, pendant droplets resulted in up to 50% distortion while the Cassie-levitating ones achieved less than just 10%. We believe that the Cassie-levitating droplet model bears ample potential for the characterization of the rapidly emerging family of superomniphobic materials, setting the basis for their future engineering in numerous emerging applications.
机译:尽管超级肌瘤材料的快速出现,但缺乏准确研究这些界面上的超级能量相互作用的方法。例如,诸如吊坠液滴的普遍采用的模型通常不能提供有关超级尼斑面表面的润湿性质的代表性信息。作用在液滴表面和液滴 - 针界面的力之间的微妙平衡可以容易地导致重扭曲的液滴轮廓。在这里,我们介绍了一个Cassie悬浮液滴模型,其克服了吊坠液滴模型的局限性,允许无变形评估超级(AMPHI)型材料和低表面张力液之间的相互作用。通过Cassie-Levitating和吊坠液滴模型在超人物表面上润湿低表面张力液(类似于27.47mN / m)的比较分析,估计接触角滞后在高达70度(800%)的偏差上显示出高达70度(800%)的偏差。开发了理论框架,以评估在动态液滴膨胀和收缩循环期间对理想重力引起的理想重力引起的液滴形状的突出的突出性扭曲。值得注意的是,吊坠液滴导致最高达到50%的失真,而Cassie悬浮则达到不到10%。我们认为Cassie悬浮液滴模型对迅速新兴的超级肌瘤材料家族的表征充满了潜力,为他们未来的新兴应用中未来工程设定了基础。

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