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首页> 外文期刊>Journal of Colloid and Interface Science >Hierarchical dual-sized film surface morphologies self-generated from fluorinated binary latex blends boost hydrophobicity, lipophobicity
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Hierarchical dual-sized film surface morphologies self-generated from fluorinated binary latex blends boost hydrophobicity, lipophobicity

机译:由氟化二元乳胶混合物自产生的分层双尺寸薄膜表面形态可增强疏水性,疏油性

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Latex films with controlled dual-level nanorough surfaces were obtained by casting from binary blends of fluorinated copolymer particles with a nanostructured core-shell morphology, narrow size dispersity and large size ratios. For this purpose, particles with different size, a common unfluorinated acrylic core copolymer of the self-crosslinking trimethoxysilylpropyl methacrylate (TSPMA) and a hard shell copolymer of either 2,2,2-trifluoroethyl methacrylate (TFEMA) or 1H,1H,2H,2H-heptadecafluorodecyl methacrylate (FMA) were synthesized by multistage emulsion polymerization. The FMA-based particles showed patchy morphologies dictated by the type of β-cyclodextrin used as FMA phase carrier in their synthesis. Four series of binary blends of either TFEMA or FMA copolymer particles with large (3-4 diameters) size ratios were cast into latex films with controlled hydrophobicity and lipophobicity. AFM and electron microscopy results indicate that addition of the small particles disrupts the hexagonal compact packed 3D organization of the large particles, resulting in dual-level nanorough surfaces and high water contact angles (up to θ _w= 127° in the as cast films, and θ _w= 135° upon aging or thermal annealing causing surface restructuring and TSPMA sol-gel condensation) with respect to the parent single component films. The proposed approach provides a straightforward route for the fabrication of robust coatings and films with tunable lipophobic and highly hydrophobic surfaces.
机译:通过从具有纳米结构核-壳形态,窄尺寸分散性和大尺寸比的氟化共聚物颗粒的二元共混物中流延获得具有受控的双级纳米粗糙表面的胶乳薄膜。为此目的,需要使用尺寸不同的颗粒,自交联的甲基丙烯酸三甲氧基甲硅烷基丙基甲基酯(TSPMA)的常见非氟化丙烯酸核共聚物和甲基丙烯酸2,2,2-三氟乙基酯(TFEMA)或1H,1H,2H的硬壳共聚物,通过多阶段乳液聚合反应合成了2H-甲基丙烯酸十七氟十六烷基癸酯(FMA)。基于FMA的颗粒显示出斑片状的形态,这是由合成中用作FMA相载体的β-环糊精的类型决定的。将具有大(3-4直径)尺寸比的TFEMA或FMA共聚物颗粒的四组二元共混物浇铸成具有受控疏水性和疏脂性的胶乳薄膜。 AFM和电子显微镜结果表明,添加小颗粒会破坏大颗粒的六方紧密堆积3D组织,从而导致双层纳米粗糙表面和高水接触角(铸膜中高达θ_w = 127°,相对于母体单组分膜,在老化或热退火引起表面重构和TSPMA溶胶-凝胶凝结时,θ_w= 135°。所提出的方法为制造具有可调的疏油性和高疏水性表面的坚固的涂层和薄膜提供了直接的途径。

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