首页> 外文期刊>Macromolecular rapid communications: Publishing the newsletters of the European Polymer Federation >A Bioinspired, Highly Transparent Surface with Dry-Style Antifogging, Antifrosting, Antifouling, and Moisture Self-Cleaning Properties
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A Bioinspired, Highly Transparent Surface with Dry-Style Antifogging, Antifrosting, Antifouling, and Moisture Self-Cleaning Properties

机译:一种生物悬浮,高度透明的表面,具有干式的抗雾,防污,防污和水分自清洁性能

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摘要

Transparent coatings with antireflection, antifogging, antifrosting, antifouling, and moisture self-cleaning properties can dramatically improve the efficiency and convenience of optical elements and thus are highly desirable for practical applications. Here, it is demonstrated that a bionic nanocone surface (BNS) fabricated by a facile, low-cost process consisting of templateassisted prepolymer curing followed by surface modification can possess the multiple functions listed above. The polymer coating firmly adheres to a glass substrate due to bonding agents. After SiO_2 nanoparticle deposition and lowsurface-energy fluorosilane modification, the coating shows low microdroplet adhesion. As a result, the as-prepared BNS exhibits a high transmittance when exposed to fog and good clarity even when the temperature decreases to ?20 °C in a humid environment. Dipping the BNS into exemplified graphite powder has almost no influence on the transparency, and the BNS can realize self-cleaning of moisture when the surface is covered with a thick layer of man-made contaminants.
机译:具有抗反射,防雾,防冻,防污和水分自清洁性能的透明涂层可以显着提高光学元件的效率和便利性,因此对于实际应用非常理想。这里,证明由由柔美的低成本过程制造的仿生纳米核苷酸表面(BNS)由TemplateAssisted预聚物固化组成,然后进行表面改性,可以具有上面列出的多个函数。聚合物涂层由于粘合剂而牢固地粘附到玻璃基板上。在SiO_2纳米粒子沉积和吹露表面 - 能量氟硅烷改性后,涂层显示出低的微探测器粘附。结果,即使在潮湿环境中的温度降低到20°C时,也准备的AS制备的BNS也表现出高透射率和良好的清晰度。将BNS浸入示例的石墨粉末几乎没有对透明度的影响,并且当表面被厚厚的人造污染物层覆盖时,BNS可以实现水分的自清洁。

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