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Wettability control of polymeric microstructures replicated from laser-patterned stamps

机译:从激光图案邮票复制的聚合物微结构的润湿性控制

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摘要

Abstract In this study, two-step approaches to fabricate periodic microstructures on polyethylene terephthalate (PET) and poly(methyl methacrylate) (PMMA) substrates are presented to control the wettability of polymeric surfaces. Micropillar arrays with periods between 1.6 and 4.6 µm are patterned by plate-to-plate hot embossing using chromium stamps structured by four-beam Direct Laser Interference Patterning (DLIP). By varying the laser parameters, the shape, spatial period, and structure height of the laser-induced topography on Cr stamps are controlled. After that, the wettability properties, namely the static, advancing/receding contact angles (CAs), and contact angle hysteresis were characterized on the patterned PET and PMMA surfaces. The results indicate that the micropillar arrays induced a hydrophobic state in both polymers with CAs up to 140° in the case of PET, without modifying the surface chemistry. However, the structured surfaces show high adhesion to water, as the droplets stick to the surfaces and do not roll down even upon turning the substrates upside down. To investigate the wetting state on the structured polymers, theoretical CAs predicted by Wenzel and Cassie-Baxter models for selected structured samples with different topographical characteristics are also calculated and compared with the experimental data.
机译:摘要在本研究中,提出了两步方法,用于制造聚对苯二甲酸乙二醇酯(PET)和聚(甲基丙烯酸甲酯)底物(PMMA)底物上的周期性微观结构以控制聚合物表面的润湿性。使用由四束直接激光干扰图案化(DLIP)构成的铬戳(DLIP)构成的铬印章,通过板到板热压花,微毛坯阵列进行图案化1.6和4.6μm。通过改变激光参数,控制激光引起的CR印章上的激光引起的地形的形状,空间周期和结构高度。之后,在图案化的PET和PMMA表面上表征了润湿性特性,即静态,推进/后退接触角(CAS)和接触角滞后。结果表明,在PET的情况下,Micropillar阵列在具有高达140°的两种聚合物中诱导疏水状态,而不改变表面化学。然而,结构化表面向水显示出高粘附性,因为液滴粘附到表面上并且即使在将基板上倒置时也不会滚动。为了研究结构化聚合物上的润湿状态,还计算并与实验数据相比,对由Wenzel和Cassie-Baxter模型预测的具有不同地形特征的理论CAS。

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