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Superhydrophilic antifogging broadband antireflective coatings with worm-like nanostructures fabricated by one dip-coating method and calcination

机译:一种浸涂法和煅烧法制备的具有蠕虫状纳米结构的超亲水防雾宽带增透膜

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In this work, superhydrophilic antifogging antireflective coatings were prepared by the dip-coating of polyacrylate/polypropylsilsesquioxane core-shell nanocomposite particles' sols followed by calcination at 500 degrees C for 4 h. The results showed that the transmittance of all the coatings in the band of 350-1000 nm was significantly higher than that of pure glass substrate, showing excellent broadband and antireflection performance. In particular, the maximum transmittance of the coatings with 8.0 g of propyltrimethoxysilane (PTMS-8) was 99.1% at the wavelength of 546 nm, and the average transmittance of the coatings reached 98.0% in the wavelength range of 400-700 nm and was enhanced by 9.3% compared to that of the bare glass substrate. Furthermore, the contact angle of the coatings decreased with the increase in the surface bumps structures of the coatings, and the minimum contact angle of the surface of the coatings with 10.0 g of propyltrimethoxysilane (PTMS-10) reached nearly zero within 0.5 s when the bumps evolved into a worm-like nanostructure, showing excellent superhydrophilic and antifogging properties. It was concluded that both roughness and special worm-like nanostructures give rise to the superhydrophilicity of the coatings.
机译:在这项工作中,通过对聚丙烯酸酯/聚丙烯倍半硅氧烷核壳纳米复合颗粒的溶胶进行浸涂,然后在500摄氏度下煅烧4小时,来制备超亲水防雾抗反射涂层。结果表明,在350-1000 nm波段,所有涂层的透射率均明显高于纯玻璃基板,具有优良的宽带和抗反射性能。尤其是,使用8.0 g丙基三甲氧基硅烷(PTMS-8)的涂层在546 nm波长处的最大透射率为99.1%,在400-700 nm波长范围内的平均透射率达到98.0%,为与裸玻璃基板相比提高了9.3%。此外,随着涂层表面凸点结构的增加,涂层的接触角减小,当10.0 g丙基三甲氧基硅烷(PTMS-10)在0.5 s内时,涂层表面的最小接触角几乎达到零。隆起物演变成蠕虫状的纳米结构,具有出色的超亲水性和防雾性。结论是,粗糙和特殊的蠕虫状纳米结构均导致涂层的超亲水性。

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