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An effective method to significantly enhance the robustness and adhesion-to-substrate of high transmittance superamphiphobic silica thin films

机译:一种有效提高高透射率超疏水性二氧化硅薄膜的坚固性和对基材的粘附力的有效方法

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摘要

Mechanically robust, high transmittance and superamphiphobic multi-functional coatings were fabricated for the first time. Three different nanopartictes were used to sequentially assemble the thin films. The simple Chemical vapour deposition (CVD) of tetraethyl orthosilicate was applied to improve the robustness and adhesion-to-substrate of the coating. The contact angle of coating reached 171° for water and 152° for ethylene glycol. The maximum transmittance measured using an integrating-sphere photometer was 98.7% at 1580 nm. The coatings withstood the 4H pencil scratching test, tape peeling test, sand abrasion test and water-drop impact test. The effects of CVD conditions on the robustness and adhesion-to-substrate of the coatings were also investigated. The multi-functional coatings could overcome the large barriers commonly encountered in practical applications due to their good robustness, high transmittance and superior superamphiphobicity.
机译:首次制造了机械坚固,高透射率和超疏水性的​​多功能涂料。使用三种不同的纳米颗粒顺序地组装薄膜。应用原硅酸四乙酯的简单化学气相沉积(CVD)可以提高涂层的坚固性和对基材的附着力。涂层的接触角对于水达到171°,对于乙二醇达到152°。使用积分球光度计测得的最大透射率在1580 nm下为98.7%。涂层经受了4H铅笔划痕测试,胶带剥离测试,砂磨擦测试和水滴冲击测试。还研究了CVD条件对涂层的坚固性和对基材的粘附性的影响。多功能涂料由于其良好的坚固性,高透射率和优异的超疏水性而可以克服实际应用中常见的大障碍。

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