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Fabrication of Superhydrophobic Surfaces on Al Substrates for Anti-Adhesion and Self-Cleaning Applications

机译:在Al基材上制备超疏水表面以实现抗粘连和自清洁应用

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Superhydrophobic surfaces,which have anti-adhesion and self-cleaning properties,were fabricated on Al substrates.The self-cleaning surface was prepared by two steps:firstly,a chemical solution method was used to create the surface roughness with disorderly veins micronanostructures.Secondly,fluoroalkylsilane was deposited on the rough surface to lower its surface energy.The combination of veins micronanostructures and fluoroalkylsilane modification gave the surface a superhydrophobicity with static water contact angle of 166° and sliding angle of smaller than 1°.Additionally,the surface showed a strong anti-adhesion with water and a satisfied self-cleaning property.Water droplets easily rolled off the surface and picked up dirt and debris with them.The surfaces obviously corresponded to Cassie (not Wenzel)-model.Air entrapped within the veins microstructures greatly increases the air/water interface,effectively preventing the penetration of water into the grooves,and finally exhibiting the self-cleaning property.The results will greatly extend Al substrates for specific functions such as water-repellence,self-cleaning and anti-fouling.
机译:在铝基体上制备了具有防粘连和自清洁性能的超疏水表面。自清洁表面分两个步骤进行:首先,采用化学溶液法形成具有无序的静脉微纳米结构的表面粗糙度。氟烷基硅烷沉积在粗糙表面上以降低其表面能。静脉微纳结构和氟烷基硅烷改性相结合,使表面具有超疏水性,静态水接触角为166°,滑动角小于1°。具有很强的抗水粘着力和良好的自洁性能,水滴易于从表面滚落并吸收灰尘和碎屑,表面明显符合Cassie(不是Wenzel)模型,空气大​​量滞留在静脉的微结构中增加空气/水界面,有效防止水渗入凹槽,并最终展现出该结果将大大扩展Al基材的疏水性,自清洁性和防污性等特定功能。

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