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Fabricating Superhydrophobic Polymer Surfaces with Excellent Abrasion Resistance by a Simple Lamination Templating Method

机译:通过简单的层压模板法制备具有优异耐磨性的超疏水聚合物表面

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摘要

Fabricating robust superhydrophobic surfaces for com~2ercial applications is challenging as the fine-scale surface features, necessary to achieve superhydrophobicity, are susceptible to mechanical damage, Herein, we report a simple and inexpensive lamination templating method to create superhydrophobic polymer surfaces with excellent abrasion resistance and water pressure stability. To fabricate the surfaces, polyethylene films were laminated against woven wire mesh templates. After cooling, the mesh was peeled from the polymer creating a 3D array or ordered polymer microposts on the polymer surface. The resulting texture is monolithic with the polymer film and requires no chemical modification to exhibit superhydrophobicity. By controlling lamination parameters and mesh dimensions, polyethylene surfaces were fabricated that exhibit static contact angles of 160° and slip angles of 5°. Chemical and mechanical stability was evaluated using an array of manual tests as well as a standard reciprocating abraser test. Surfaces remained superhydrophobic after more than 5500 abrasion cycles at a pressure of 32.0 kPa. In addition, the surface remains dry after immersing into water for 5 h at 55 kPa. This method is environmental friendly, as it employs no solvents or harsh chemicals and may provide an economically viable path to manufacture large areas of mechanically robust superhydrophobic surfaces from inexpensive polymers and reusable templates.
机译:制造用于商业应用的坚固的超疏水表面是具有挑战性的,因为实现超疏水性所必需的精细尺度表面特征易受机械损伤。在此,我们报道了一种简单而廉价的层压模板方法,以创建具有优异耐磨性的超疏水聚合物表面和水压稳定。为了制造表面,将聚乙烯膜层压在编织的金属丝网模板上。冷却后,将网眼从聚合物上剥离下来,在聚合物表面上形成3D阵列或有序的聚合物微柱。所得的纹理与聚合物膜是整体的,不需要化学修饰即可表现出超疏水性。通过控制层压参数和筛孔尺寸,制造出了聚乙烯表面,该表面显示出160°的静态接触角和5°的滑移角。使用一系列手动测试以及标准往复式磨蚀器测试来评估化学和机械稳定性。在32.0 kPa的压力下经过5500次以上的磨损循环后,表面仍保持超疏水性。此外,在55 kPa下浸入水中5小时后,表面仍保持干燥。该方法是环境友好的,因为它不使用溶剂或刺激性化学物质,并且可以提供经济上可行的途径,以廉价的聚合物和可重复使用的模板来制造大面积的机械坚固的超疏水表面。

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