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Robust Superhydrophobic and Repellent Coatings Based on Micro/Nano SiO2 and Fluorinated Epoxy

机译:基于微/纳米SiO2和氟化环氧树脂的鲁棒超疏水和避风蛋白涂层

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Superhydrophobic surfaces possess low mechanical strength, and can be easily contaminated by fluids with low surface tension, such as oil; this hinders their practical applications. In this study, fluorinated epoxy was prepared through the thiol-ene click reaction at first. The superhydrophobic surface with high oil-repellency was prepared by the addition of unmodified nano-SiO2 and micron-SiO2 to the fluorinated epoxy. The effect of the ratio of micro- and nano-silica particles on the morphology and wettability of the coating was investigated. It was shown that a re-entrant structure appears and FEP-S coating has good liquid repellency when the amounts of nano-SiO2 and micro-SiO2 are equal. The contact angles of the FEP-S coating (coating with the best liquid repellent performance) for water, glycerol, ethylene glycol, and diiodomethane were 158.6° ± 1.1°, 152.4° ± 0.9°, 153.4° ± 1.3°, and 140.7° ± 0.9°, respectively. In addition, the superhydrophobic coatings possess excellent mechanical and chemical durability, excellent performance in self-cleaning, corrosion resistance, and anti-icing properties. The preparation method of superhydrophobic coating is relatively simple; therefore, it has a wide range of applications and can also be applied to various substrates.
机译:超疏水表面具有低机械强度,并且可以容易地被具有低表面张力的流体污染,例如油;这会阻碍他们的实际应用。在该研究中,通过首先通过硫醇-NE咔哒反应制备氟化环氧树脂。通过将未修饰的纳米SiO 2和微米-SiO 2加入氟化环氧树脂,制备具有高耐油性的超疏水性表面。研究了微型和纳米二氧化硅颗粒与涂层形态和润湿性的效果。结果表明,当纳米-SiO 2和微型SiO 2的量相等时,出现再参赛剂结构和FEP-S涂层具有良好的液体排斥性。用于水,甘油,乙二醇和二碘甲烷的FEP-S涂层(涂层的涂层涂层)的接触角为158.6°±1.1°,152.4°±0.9°,153.4°±1.3°和140.7°分别为±0.9°。此外,超疏水涂料具有优异的机械和化学耐用性,自清洁,耐腐蚀性和抗糖霜性能优异。超疏水涂层的制备方法相对简单;因此,它具有广泛的应用,并且也可以应用于各种基板。

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