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Fabrication and characterization of Gecko-inspired dry adhesion, superhydrophobicity and wet self-cleaning surfaces

机译:壁虎启发的干附着力,超疏水性和湿法自清洁表面的制备和表征

摘要

In this study, gecko-inspired polydimethylsiloxane (PDMS) microfiber surfaces were fabricated by combining Inductively Coupled Plasma (ICP) and micro-mold casting. The effect of roughness and surface energy of counterface on the adhesion of gecko-inspired microfiber surfaces and its superhydrophobicity and wet self-cleaning were studied. The adhesion of gecko-inspired microfiber surfaces depended on the roughness of the counterfaces due to the influences of contact area and interlocking mechanism. SEM images of interfaces between counterfaces with different roughness and gecko-inspired microfiber surfaces revealed the matched and dis-matched contact directly. The gecko-inspired microfiber surface got the larger adhesive force from the higher surface energy counterface, which is consisted with Johnson-Kendall-Roberts (SKR) theory. The smaller dimension and lower duty ratio of microfibers on PDMS resulted in the increasing of Water Contact Angle (WCA) and the decreasing of Sliding Angle (SA) compared to those of smooth PDMS. Particularly, sample P-8-28-20 had the biggest WCA (155) and SA (7), which displayed the superhydrophobicity and the best wet self-cleaning efficiency in all samples. The present studies showed that the roughness and surface energy of counterface both affected the adhesion of gecko-inspired microfiber surfaces. The smaller dimension and lower duty ratio of microfibers on PDMS endowed it with the superhydrophobicity and the wet self-cleaning abilities.
机译:在这项研究中,壁虎启发的聚二甲基硅氧烷(PDMS)超细纤维表面是通过结合感应耦合等离子体(ICP)和微铸模制造的。研究了壁面的粗糙度和表面能对壁虎启发的超细纤维表面粘附性及其超疏水性和湿法自清洁的影响。受到壁虎启发的超细纤维表面的粘附力取决于接触面的粗糙度,这是由于接触面积和互锁机制的影响。带有不同粗糙度的壁面和壁虎启发的超细纤维表面之间的界面的SEM图像直接显示了匹配和不匹配的接触。壁虎启发的超细纤维表面从较高的表面能对立面获得了更大的粘合力,这由Johnson-Kendall-Roberts(SKR)理论组成。与光滑PDMS相比,PDMS上的微纤维尺寸较小,占空比较低,导致水接触角(WCA)增大,滑动角(SA)减小。特别是,样品P-8-28-20的WCA(155)和SA(7)最大,在所有样品中均表现出超疏水性和最佳的湿法自清洁效率。目前的研究表明,反面的粗糙度和表面能均会影响壁虎启发的超细纤维表面的附着力。 PDMS上的超细纤维尺寸较小,占空比较低,因此具有超疏水性和湿法自清洁能力。

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