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Tuning wettability and getting superhydrophobic surface by controlling surface roughness with well-designed microstructures

机译:通过精心设计的微结构控制表面粗糙度,调节润湿性并获得超疏水表面

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We proposed a method to tune the wettability of a solid surface by changing its roughness. With specific designed micro square-pillar arrays, the apparent contact angle of a hydrophobic surface can be continuously adjusted from the intrinsic contact angle above. The samples were fabricated by combining silicon micromachining and self-assembled monolayer modification. The experimental results were closer to Cassie's theoretical predictions on the super-hydrophobic surfaces than that by Wenzel's. With the same contact angle (CA, 110/spl deg/) on the flat surface, the apparent CAs can be tuned from 110/spl deg/ to nearly 180/spl deg/. The largest apparent CA can be up to 173/spl deg/, with pillars of 9.08/spl mu/m /spl times/ 9.08/spl mu/m /spl times/ 16/spl mu/m ( width /spl times/ width /spl times/ height ) and the spacing of 31.61/spl mu/m.
机译:我们提出了一种通过改变其粗糙度来调整固体表面的润湿性的方法。使用特定设计的微型方形柱阵列,可以从上面的固有接触角连续调节疏水表面的表观接触角。通过将硅微机械加工和自组装单层修饰相结合来制造样品。实验结果更接近于卡西在超疏水性表面上的理论预测,而不是温泽尔的理论预测。在平坦表面上具有相同的接触角(CA,110 / spl deg /)时,表观CA可以从110 / spl deg /调整到接近180 / spl deg /。最大视在CA最高可达173 / spl deg /,柱子为9.08 / spl mu / m / spl倍/ 9.08 / spl mu / m / spl倍/ 16 / spl mu / m(宽度/ spl倍/宽度/ spl times / height),间距为31.61 / spl mu / m。

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