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A general and facile chemical avenue for the controlled and extreme regulation of water wettability in air and oil wettability under water

机译:用于控制和极端调节水中空气和油在水中的润湿性的通用且简便的化学途径

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The controlled modulation of both oil (under water) and water (in air) wettability is an emerging approach to develop several functional materials for various prospective applications including oil/water separation, anti-corrosive coatings, underwater robotics, protein crystallization, drug delivery, open microfluidics, water harvesting etc. Here, we report a ‘reactive’ and covalently cross-linked coating through a facile and robust Michael addition reaction, which is suitable for the controlled and extreme regulation of both water and oil wettability in air and under water respectively. Along with extremes (super-philicity and super-phobicity) of water (in air) and oil (under water) wettability, this single multilayer construction was also able to display special liquid wettability (i.e.; extremely liquid repellent—but with controlled adhesive properties) both in air and under water, after strategic post chemical modifications, again through 1,4-conjugate addition reaction. The super-wetting properties in the materials were able to withstand various physical and chemical insults including adhesive tape test, sand drop test, and exposure to extremes of pH, salt, and surfactant contaminated aqueous media. Moreover, this approach also allowed the decoration of various flexible and rigid substrates (i.e.; wood, Al-foil, synthetic fabric etc.) with various bio-inspired wettability properties including (1) non-adhesive superhydrophobicity (lotus leaf), (2) adhesive superhydrophobicity (rose petal), (3) underwater superoleophobicity (fish scale) etc. This single polymeric coating—which is capable of displaying several bio-inspired interfaces both in air and under water, even after harsh physical/chemical insults—would be useful in various prospective and relevant applications for practical scenarios.
机译:对油(在水下)和水(在空气中)的润湿性进行可控的调节是一种新兴的方法,用于开发多种功能材料以用于各种潜在应用,包括油/水分离,防腐涂料,水下机器人,蛋白质结晶,药物递送,开放的微流体,集水等。在这里,我们报道了一种通过反应性和鲁棒性的迈克尔加成反应形成的“反应性”共价交联涂层,适用于对水和水的控制和极端调节。分别在空气和水下的油润湿性。除了水(在空气中)和油(在水下)的极端(超亲和性和超疏水性)润湿性之外,这种多层结构还能够显示出特殊的液体润湿性( ie ;非常液态)在进行战略性的化学修饰后,再次通过1,4-共轭加成反应,在空气和水下均具有驱虫性(但具有可控的粘合特性)。材料的超湿特性能够承受各种物理和化学损伤,包括胶带测试,落沙测试以及暴露于极端pH,盐和表面活性剂污染的水性介质中。此外,这种方法还允许装饰各种具有柔性和刚性的基材(;木材,铝箔,合成纤维),并具有多种受生物启发的润湿性,包括(1)非粘性超疏水性(荷叶),(2)粘性超疏水性(玫瑰花瓣),(3)水下超疏油性(鱼鳞)等。这种单一的聚合物涂层,能够展示甚至在恶劣的物理/化学伤害之后,在空气和水下的几个生物启发式界面也将在实际情况下的各种前瞻性和相关应用中有用。

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