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Novel Fluorinated Polymers Containing Short Perfluorobutyl Side Chains and Their Super Wetting Performance on Diverse Substrates

机译:含短全氟丁基侧链的新型氟化聚合物及其在多种基质上的超湿性能

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Because the emission of perfluorooctanoic acid (PFOA) was completely prohibited in 2015, the widely used poly- and perfluoroalkyl substances with long perfluoroalkyl groups must be substituted by environmentally friendly alternatives. In this study, one kind of potential alternative (i.e., fluorinated polymers with short perfluorobutyl side chains) has been synthesized from the prepared monomers {i.e., (perfluorobutyl) ethyl acrylate (C(4)A), (perfluorobutyl)ethyl methacrylate (C(4)MA), 2-[[[[2-(perfluorobutyl)]sulfonyl]methyl] amino] ethyl acrylate (C(4)SA), and methacrylate (C(4)SMA)}, and the microstructure, super wetting performance, and applications of the synthesized fluorinated polymers were systematically investigated. The thermal and crystallization behaviors of the fluoropolymer films were characterized by differential scanning calorimetry and wide-angle X-ray diffraction analysis, respectively. Dynamic water-repellent models were constructed. The stable low surface energy and dynamic water- and oil-repellent properties of these synthesized fluorinated polymers With short perfluorobutyl side chains were attributed to the synergetic effect of amorphous fluorinated side chains in perfluoroalkyl acrylate and crystalline hydrocarbon pendant groups in stearyl acrylate. Outstanding water- and oil-repellent properties of fabrics and any other substrates could be achieved by a facile dip-coating treatment using a fluorinated copolymer dispersion. As a result, we believe that our prepared fluorinated copolymers are potential candidates to replace the fluoroalkylated polymers with long perfluorinated chains in nonstick and self-cleaning applications in our daily life.
机译:由于2015年完全禁止排放全氟辛酸(PFOA),因此必须使用环保的替代品来替代具有长全氟烷基基团的广泛使用的多氟烷基和全氟烷基物质。在这项研究中,从制备的单体(即,(全氟丁基)丙烯酸乙酯(C(4)A),(全氟丁基)甲基丙烯酸乙酯(C)合成了一种潜在的替代品(即,具有短的全氟丁基侧链的氟化聚合物)。 (4)MA),2-[[[[[[[(2-(全氟丁基)]磺酰基]甲基]氨基]丙烯酸乙酯(C(4)SA)和甲基丙烯酸酯(C(4)SMA)},以及超微结构对合成的含氟聚合物的润湿性能和应用进行了系统的研究。分别通过差示扫描量热法和广角X射线衍射分析来表征含氟聚合物膜的热和结晶行为。建立了动态​​拒水模型。这些具有短全氟丁基侧链的合成氟化聚合物的稳定的低表面能和动态拒水拒油性能归因于全氟丙烯酸烷基酯中非晶态氟化侧链与丙烯酸硬脂酯中结晶烃侧基的协同作用。织物和任何其他基材的出色的拒水拒油性能可通过使用含氟共聚物分散体的便捷浸涂处理来实现。因此,我们相信,在我们的日常生活中,在不粘手和自清洁应用中,我们制备的氟化共聚物可能是用长全氟化链取代氟烷基化聚合物的潜在候选者。

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