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Preparation of antireflection coatings with novel cationic-nonionic PU-SiO2 core-shell particle dispersions

机译:用新型阳离子 - 非离子PU-SiO2核 - 壳颗粒分散体的抗反射涂层的制备

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摘要

A novel polyurethane (PU)-SiO2 core-shell particle dispersion was prepared by an acid-catalyzed sol-gel process using cationic-nonionic PU particle as template. Results of average sizes, polydispersity index, and transmission electron microscope indicated that tetramethylorthosilicate were first diffused to the surface of PU particles, then occurring hydrolysis-condensation reaction to form core-shell particles. Antireflection coating formulation was prepared by as-prepared core-shell particle dispersion and SiO2 sol binder. After dip-coating in the formulation, antireflection coating was formed on glass surface by calcination. Scanning electron microscopy images showed that pores had been formed inside coating after removing PU template particles, and the coating surface could be almost fully closed. In addition, ultraviolet-visible spectrophotometer analysis showed that the maximum transmittance of antireflection glasses can be as high as 98.6% at 548 nm. (C) 2017 Wiley Periodicals, Inc.
机译:使用阳离子 - 非离子PU粒子作为模板,通过酸催化的溶胶 - 凝胶工艺制备新的聚氨酯(PU)-SiO2核 - 壳颗粒分散体。平均尺寸,多分散性指数和透射电子显微镜的结果表明,四甲基甲基硅酸盐首先扩散到PU颗粒的表面,然后发生水解 - 缩合反应以形成核 - 壳颗粒。通过制备的核 - 壳颗粒分散体和SiO 2溶胶粘合剂制备抗反射涂料配方。在配方中浸涂后,通过煅烧在玻璃表面上形成抗反射涂层。扫描电子显微镜图像显示在除去PU模板颗粒后在涂层内部形成孔,并且涂层表面几乎完全关闭。此外,紫外线可见分光光度计分析表明,抗反射玻璃的最大透射率可以高达98.6%在548nm处。 (c)2017 Wiley期刊,Inc。

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