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Dimensional effects of polymer pillar arrays on hydrophobicity

机译:聚合物柱阵列对疏水性的尺寸影响

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This paper reports experimental studies on the dimensional effects of pillar arrays on surface hydrophobicity. Completely different behaviours are observed on intrinsically hydrophobic and hydrophilic materials. In order to experimentally observe the Cassie-to-Wenzel transition, circular pillar arrays with varying diameters and spacing are fabricated on PDMS and SU-8 surfaces. Wetting experiments show that the PDMS arrays demonstrate clear Cassie-to-Wenzel transition as the spacing increases. The critical transition spacing for different diameters shows a close match to theoretical predictions based on a force balance model. The transition model also predicts the maximum contact angles. By comparison, the dimensional effects on an intrinsically hydrophilic surface (SU-8) show smaller contact angles without a transition phase. These differences come from the inherent wettability of the two polymers. Without further coatings or treatment, the PDMS structures can achieve contact angles close to 170 degrees while the SU-8 arrays can only achieve contact angles up to 140 degrees.
机译:本文报道了有关柱阵列对表面疏水性的尺寸效应的实验研究。在本质上疏水和亲水的材料上观察到完全不同的行为。为了实验上观察到从卡西到温泽尔的过渡,在PDMS和SU-8表面上制作了直径和间距不同的圆柱阵列。润湿实验表明,随着间距的增加,PDMS阵列显示出清晰的Cassie到Wenzel过渡。不同直径的临界过渡间距显示出与基于力平衡模型的理论预测值非常接近的结果。过渡模型还可以预测最大接触角。相比之下,在固有亲水性表面(SU-8)上的尺寸效应显示出较小的接触角,而没有过渡相。这些差异来自两种聚合物的固有润湿性。如果不进行进一步的涂层或处理,PDMS结构可以实现接近170度的接触角,而SU-8阵列只能实现高达140度的接触角。

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