论文标题

冻干椭圆形斑块上蒸发的无柄微丝质的形态

Morphology of Evaporating Sessile Microdroplets on Lyophilic Elliptical Patches

论文作者

Escobar, Jose M. Encarnacion, Garcia-Gonzalez, Diana, Devic, Ivan, Zhang, Xuehua, Lohse, Detlef

论文摘要

液滴的蒸发发生在多种自然和技术过程中,例如医学诊断,农业,食品工业,印刷和催化反应。我们研究了由椭圆形贴片具有不同接触角的表面上蒸发的液滴采用的不同液滴形态。我们执行实验以观察这些形态,并使用数值计算来预测修补表面的影响。我们观察到调整斑块的几何形状可以控制液滴的形状。在实验中,将各种体积的液滴放在不同长宽比的椭圆化学贴片上,并使用激光扫描共聚焦显微镜在3D中成像,从而提取液滴形状。在相应的数值模拟中,我们通过使用表面Evolver,最大程度地减少了液滴的界面自由能。数值结果与我们的实验数据达到了良好的定性一致性,可用于设计微图案结构,可能暗示或排除特定应用的某些形态。但是,实验结果显示了固定和接触角滞后的影响,在数值最小化中显然不存在。该工作以形态图与相对体积参数空间的形态图达到高潮,将预测与测量值进行了比较。

The evaporation of droplets occurs in a large variety of natural and technological processes such as medical diagnostics, agriculture, food industry, printing, and catalytic reactions. We study the different droplet morphologies adopted by an evaporating droplet on a surface with an elliptical patch with a different contact angle. We perform experiments to observe these morphologies and use numerical calculations to predict the effects of the patched surfaces. We observe that tuning the geometry of the patches offers control over the shape of the droplet. In the experiments, the drops of various volumes are placed on elliptical chemical patches of different aspect ratios and imaged in 3D using laser scanning confocal microscopy, extracting the droplets shape. In the corresponding numerical simulations, we minimize the interfacial free energy of the droplet, by employing Surface Evolver. The numerical results are in good qualitative agreement with our experimental data and can be used for the design of micropatterned structures, potentially suggesting or excluding certain morphologies for particular applications. However, the experimental results show the effects of pinning and contact angle hysteresis, which are obviously absent in the numerical energy minimization. The work culminates with a morphology diagram in the aspect ratio vs relative volume parameter space, comparing the predictions with the measurements.

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