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Improvement of water and oil repellency on wood substrates by using fluorinated silica nanocoating

机译:通过使用氟化二氧化硅纳米涂料改善木材基材的拒水拒油性能

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We have investigated a one-step fabrication of fluoro-containing silica coating on wooden substrates, showing multi-functions including super repellency toward water and sunflower oil, low sliding angles, good durability, and low adsorption capacity of moisture. The repellent slurry, consisting of well-mixing silica nanospheres and perfluoroalkyl methacrylic copolymer, is simply prepared and subsequently sprayed over wooden substrates with good adhesion. It has shown that the decoration of silica nanospheres on microscaled wooden texture acts as a crucial role in improving the repellency toward water and sunflower oil droplets. The maximal contact angles can reach as high as 168.3° and 153.6° for water and sunflower oil drops, respectively. These analyses of wetted fraction and work of adhesion also demonstrate the improved repellency due to the addition of silica. This improvement of the repellencies is ascribed to the fact that the drops partially sit on F-coated silica spheres, leaving a layer of air underneath the droplet (i.e., Cassie state). On the basis of the results, the multi-functional coating on wooden substrates delivers a promising commercial feasibility on a variety of woodworks.
机译:我们研究了一种在木质基材上一步一步制备含氟二氧化硅涂层的方法,该方法显示出多种功能,包括对水和葵花籽油的超强排斥性,低滑动角,良好的耐久性以及对水分的低吸附能力。简单地制备由良好混合的二氧化硅纳米球和全氟烷基甲基丙烯酸共聚物组成的驱避剂浆料,然后以良好的附着力喷涂在木质基材上。研究表明,在纳米尺度的木质纹理上装饰二氧化硅纳米球对于提高对水滴和葵花籽油的排斥性起着至关重要的作用。水滴和葵花籽油的最大接触角分别高达168.3°和153.6°。这些对湿馏分和粘附力的分析还表明,由于添加了二氧化硅,因此具有更高的排斥性。拒斥性的这种改善归因于这样的事实,即液滴部分位于F涂层的二氧化硅球上,在液滴下方留下一层空气(即Cassie态)。根据结果​​,木质基材上的多功能涂料可在各种木制品上提供有希望的商业可行性。

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