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Highly stable self-cleaning antireflection coatings from fluoropolymer brush grafted silica nanoparticles

机译:含氟聚合物刷接二氧化硅纳米粒子的高度稳定的自清洁抗反射涂层

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摘要

Self-cleaning antireflection coatings have potential applications in outdoor conditions and have been the subject of intense study. However, self-cleaning antireflection coatings are commonly prepared via grafting of small hydrophobic molecules, which are susceptible to detachment from the coatings due to hydrolysis, leading to considerable degradation of the self-cleaning functionality in practical applications. Here, we create fluoropolymer brush grafted silica antireflection coatings that demonstrate long-term self-cleaning performance. Fluoropolymer brush grafted silica nanoparticles were synthesized via surface initiated atom transfer radical polymerization and then coated on glass substrates to form antireflection coatings. The brush grafted coatings exhibited excellent transmission, with nearly 100% transmittance at a desired wavelength. The fluoropolymer brushes rendered the coatings hydrophobic, with water contact angle of 122 degrees. Owing to their hydrophobicity, the brush grafted coatings exhibited excellent self-cleaning functionality. A notable advantage of the brush grafted coatings was their stable self-cleaning functionality. The brush grafted coatings remained their hydrophobicity after immersion in acidic solution, with water contact angle being constant at 122 degrees, which were more stable than the small molecule modified hydrophobic coatings. This work opens a new avenue to create highly stable self-cleaning antireflection coatings that will find applications in harsh conditions.
机译:自清洁抗反射涂层在室外条件下具有潜在的应用,并且已经成为深入研究的主题。然而,自清洁抗反射涂层通常是通过接枝小的疏水分子而制备的,这些小疏水分子由于水解而易于与涂层分离,从而导致在实际应用中自清洁功能的显着降低。在这里,我们创建了具有氟聚合物刷毛接枝二氧化硅减反射涂层,该涂层具有长期的自清洁性能。氟聚合物刷接枝的二氧化硅纳米粒子是通过表面引发的原子转移自由基聚合反应合成的,然后涂覆在玻璃基板上以形成减反射涂层。刷接枝涂层表现出优异的透射率,在所需波长下具有近100%的透射率。含氟聚合物刷使涂料具有疏水性,水接触角为122度。由于其疏水性,刷接枝涂层表现出出色的自清洁功能。刷接枝涂层的显着优势是其稳定的自清洁功能。刷接枝涂料浸入酸性溶液后仍保持疏水性,水接触角恒定在122度,比小分子改性疏水涂料更稳定。这项工作为创建高度稳定的自清洁抗反射涂层开辟了一条新途径,该涂层将在恶劣的条件下找到应用。

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