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Microfabrication of polymeric surfaces with extreme wettability using hot embossing

机译:使用热压花微加工具有极高润湿性的聚合物表面

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Hot embossing was utilized to imprint topographical metallic patterns on the surfaces of thermoplastic polymers in order to create superhydrophobic and superoleophobic polymeric surfaces. The stainless steel (SS) microano structured templates were fabricated using femtosecond laser ablation. The SS laser ablated templates were employed to imprint micron/submicron periodic structures onto the surface of high density polyethylene (HDPE), polylactic acid (PLA), and medical PVC at temperatures slightly above their melting points and pressures in the range of 3-12 MPa. Results have shown that the water contact angle (CA) of imprinted polymers increased to above 160 degrees in the case of PLA and HDPE, while their water contact angle hysteresis (CAH) were significantly below 10 degrees. In the case of medical-PVC, imprinting produced morphologies with high CA and high CAH (petal effect) due to the adhesion forces developed at the interface between the hydrophilic plasticizer of medical-PVC (TOTM) and water droplets. It is also noted that the re-entrant superoleophobic patterns created on HDPE through imprinting closely resemble the patterns found on the surface of filefish skin that is densely angled microfiber arrays. This bioinspired surface is highly capable of repelling both polar (water) and non-polar liquids of low surface tension and meets the superoleophobicity criteria. (C) 2016 Elsevier B.V. All rights reserved.
机译:为了形成超疏水和超疏油的聚合物表面,利用热压印将形貌金属图案压印在热塑性聚合物的表面上。不锈钢(SS)微/纳米结构模板是使用飞秒激光烧蚀制造的。 SS激光烧蚀模板用于将微米/亚微米周期性结构压印在高密度聚乙烯(HDPE),聚乳酸(PLA)和医用PVC表面上,温度略高于其熔点,压力在3-12范围内MPa。结果表明,在PLA和HDPE的情况下,印迹聚合物的水接触角(CA)增加到160度以上,而其水接触角滞后(CAH)明显低于10度。在医用PVC的情况下,由于医用PVC(TOTM)的亲水性增塑剂与水滴之间的界面处产生了粘附力,因此压印产生了具有高CA和高CAH(花瓣效应)的形貌。还应注意的是,通过压印在HDPE上产生的重入超疏油模式与在密密麻麻的成角度的超细纤维阵列上的斑鱼鱼皮表面上发现的模式非常相似。这种具有生物启发性的表面具有很高的排斥力,能够排斥低表面张力的极性(水)和非极性液体,并符合超疏油性标准。 (C)2016 Elsevier B.V.保留所有权利。

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