首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Surprising Lack of Influence on Water Droplet Motion by Hydrophilic Microdomains on Checkerboard-like Surfaces with Matched Contact Angle Hysteresis
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Surprising Lack of Influence on Water Droplet Motion by Hydrophilic Microdomains on Checkerboard-like Surfaces with Matched Contact Angle Hysteresis

机译:具有匹配接触角滞后的棋盘状表面的亲水微滴缺乏对水滴运动的影响令人惊讶

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摘要

Chemically and spatially micropattemed surfaces have been successfully prepared for a number of diverse applications, including water/fog harvesting, screen printing, microfluidics, and cell/protein assays. While there have been quite some reports on micropattemed surfaces, less is known about the factors that influence dynamic surface wettability. To that end, smooth checkerboard-like micropatterned hydrophobic/(super)-hydrophilic surfaces (2, 5, 10, 20 mu m pattern sizes) with regions of matching/mismatching contact angle hysteresis (CAH) were prepared on the basis of a simple chemisorption/photopatterning of monolayers. The effects of regional wettability/CAH and pattern size on the overall dynamic wettability were then examined by measuring the dynamic contact angles (CAs) and substrate tilt angles (theta(T)) of water. It was found that the dynamic wettability on samples with matching regional CAE remained unchanged, even when using hydrophilic regions or changing the pattern size. In contrast, surfaces containing mismatching CAH regions pinned water droplets, leading to overall dynamic wetting properties markedly dependent on pattern size. In addition, the experimental data did not match values predicted by the Cassie equation because dynamic wetting behavior is dominated not by interfacial area but by the interactions of the liquid and solid at the three-phase contact line.
机译:化学上和空间上微图案化表面已经用于多种不同的应用,包括水/雾收获,丝网印刷,微流体,及小区/蛋白质测定中被成功制备。虽然已经有微图案表面上相当长的一段报道,很少有人知道有关影响动态表面润湿性的因素。为此,平滑方格棋盘形微图案化的疏水性/(超级)-hydrophilic表面(2,5,10,20微米图案尺寸)与匹配的/不匹配接触角滞后(CAH)区域的简单的基础上,制备化学吸附/单层的光图案化。然后,通过测量水的动态接触角(CA)的和基板的倾斜角度(希塔(T))检查的区域的润湿性/ CAH和图案上的整体动态润湿性大小的影响。结果发现,在具有匹配区域CAE样品的动态润湿性保持不变,使用亲水性区域或改变图案尺寸时也是如此。与此相反,含有表面被钉扎的水滴不匹配CAH区域,导致显着地依赖于图案尺寸总体动态润湿性质。此外,实验数据不匹配由卡西方程预测因为动态润湿行为不是由界面面积,而是由液体和固体中的三相接触线的相互作用支配值。

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