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Durable superoleophobic polymer–nanoparticle composite surfaces with re-entrant geometry via solvent-induced phase transformation

机译:通过溶剂诱导的相变具有凹角几何形状的耐用超疏油性聚合物-纳米颗粒复合表面

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摘要

Superoleophobic plastic surfaces are useful in a wide variety of applications including anti-fouling, self-cleaning, anti-smudge, and low-drag. Existing examples of superoleophobic surfaces typically rely on poorly adhered coatings or delicate surface structures, resulting in poor mechanical durability. Here, we report a facile method for creating re-entrant geometries desirable for superoleophobicity via entrapment of nanoparticles in polycarbonate surfaces. Nanoparticle incorporation occurs during solvent-induced swelling and subsequent crystallization of the polymer surface. The resulting surface was found to comprise of re-entrant structures, a result of the nanoparticle agglomerates acting as nucleation points for polymer crystallization. Examples of such surfaces were further functionalized with fluorosilane to result in a durable, super-repellent surface. This method of impregnating nanoparticles into polymer surfaces could prove useful in improving the anti-bacterial, mechanical, and liquid-repellent properties of plastic devices.
机译:超疏油性塑料表面可用于多种应用,包括防污,自清洁,防污和低阻力。超疏油性表面的现有示例通常依赖于粘附性差的涂层或脆弱的表面结构,从而导致较差的机械耐久性。在这里,我们报告了一种简便的方法,可通过将纳米颗粒截留在聚碳酸酯表面来创建超疏油性所需的凹角几何形状。在溶剂引起的溶胀和随后聚合物表面的结晶过程中发生纳米颗粒的掺入。发现所得表面包含凹角结构,这是纳米颗粒附聚物充当聚合物结晶的成核点的结果。这种表面的例子进一步用氟硅烷官能化,以产生耐用的超排斥表面。这种将纳米颗粒浸渍到聚合物表面的方法可证明对改善塑料器件的抗菌,机械和拒液性能有用。

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