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Fluoropolymer-Containing Opals and Inverse Opals by Melt-Shear Organization

机译:熔剪组织中的含氟聚合物蛋白石和反蛋白石

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摘要

The preparation of highly ordered colloidal architectures has attracted significant attention and is a rapidly growing field for various applications, e.g., sensors, absorbers, and membranes. A promising technique for the preparation of elastomeric inverse opal films relies on tailored core/shell particle architectures and application of the so-called melt-shear organization technique. Within the present work, a convenient route for the preparation of core/shell particles featuring highly fluorinated shell materials as building blocks is described. As particle core materials, both organic or inorganic (SiO2) particles can be used as a template, followed by a semi-continuous stepwise emulsion polymerization for the synthesis of the soft fluoropolymer shell material. The use of functional monomers as shell-material offers the possibility to create opal and inverse opal films with striking optical properties according to Bragg’s law of diffraction. Due to the presence of fluorinated moieties, the chemical resistance of the final opals and inverse opals is increased. The herein developed fluorine-containing particle-based films feature a low surface energy for the matrix material leading to good hydrophobic properties. Moreover, the low refractive index of the fluoropolymer shell compared to the core (or voids) led to excellent optical properties based on structural colors. The herein described fluoropolymer opals and inverse opals are expected to pave the way toward novel functional materials for application in fields of coatings and optical sensors.
机译:高度有序的胶体结构的制备已经引起了广泛的关注,并且对于各种应用,例如传感器,吸收剂和膜,是一个快速增长的领域。一种制备弹性体反蛋白石薄膜的有前途的技术依赖于定制的核/壳颗粒结构和所谓的熔体剪切组织技术的应用。在本工作中,描述了一种制备核/壳颗粒的便利途径,所述核/壳颗粒具有高度氟化的壳材料作为构建基块。作为颗粒核材料,有机或无机(SiO2)颗粒均可用作模板,然后进行半连续逐步乳液聚合以合成软质氟聚合物壳材料。使用功能性单体作为外壳材料,可以根据布拉格衍射定律制造出具有惊人光学性能的蛋白石和反蛋白石薄膜。由于氟化部分的存在,最终蛋白石和反蛋白石的耐化学性增加。本文开发的含氟颗粒基薄膜的特征在于基质材料的表面能低,从而导致良好的疏水性。此外,与芯(或空隙)相比,含氟聚合物壳的低折射率导致基于结构颜色的优异光学性能。预期本文所述的含氟聚合物蛋白石和反蛋白石为在涂料和光学传感器领域中应用的新型功能材料铺平了道路。

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