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首页> 外文期刊>Journal of Applied Polymer Science >Preparation of tetrafluoro-lambda(6)-sulfanyl bridged-bonding perfluoroalkyl styrene and its emulsion copolymerization with acrylate monomers for cotton fabrics finishing
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Preparation of tetrafluoro-lambda(6)-sulfanyl bridged-bonding perfluoroalkyl styrene and its emulsion copolymerization with acrylate monomers for cotton fabrics finishing

机译:用丙烯酸酯单体制备四氟λ(6) - 磺基桥桥接全氟烷基苯乙烯及其用丙烯酸酯单体进行棉织物精加工

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摘要

4-(Perfluorobutyl)styrene, 4-(Perfluorohexyl)styrene, 4-[Perfluorobutyl(tetrafluoro-lambda(6)-sulfanyl)]styrene (C4F9-SF4-styrene), and 4-[Perfluorohexyl(tetrafluoro-lambda(6)-sulfanyl)]styrene (C6F13-SF4-styrene) were prepared in two or three steps. The short-chain perfluoroalkyl groups are modified through the insertion of tetrafluoro-lambda(6)-sulfanyl linked groups (-SF4-). The prepared perfluoroalkyl styrene acts as functional monomers to react with butyl acrylate, methyl methacrylate, and hydroxyethyl methacrylate for emulsion copolymerization to obtain side-chain fluoropolymers. The long-chain fluoropolymer formed in contrast to the tetrafluorosulfanyl (-SF4-) modified ones. The emulsions were applied on cotton fabrics to give hydrophobicity. The result showed that the fabrics treated with tetrafluorosulfanyl-modified fluoropolymers were more hydrophobic, indicating that the introduction of -SF4- was beneficial to provide lower surface energy and obtain better water repellent performance. The water contact angles record the varying degrees of variation in polymer degradation under UV exposure. The result showed that, as the perfluoroalkyl is bonded by -SF4-, when comparing with the carbon-chain perfluoroalkyl polymer, the tetrafluorosulfanyl-modified fluoropolymer is more degradable during UV irradiation.
机译:分两步或三步制备4-(全氟丁基)苯乙烯、4-(全氟己基)苯乙烯、4-[全氟丁基(四氟λ(6)-磺胺基)]苯乙烯(C4F9-SF4-苯乙烯)和4-[全氟己基(四氟λ(6)-磺胺基)]苯乙烯(C6F13-SF4-苯乙烯)。短链全氟烷基通过插入四氟λ(6)-磺酰基连接基团(-SF4-)进行修饰。制备的全氟烷基苯乙烯作为功能性单体与丙烯酸丁酯、甲基丙烯酸甲酯和甲基丙烯酸羟乙基酯反应进行乳液共聚,得到侧链含氟聚合物。与四氟磺酰胺(-SF4-)修饰的长链氟聚合物形成对比。将乳液涂在棉织物上以获得疏水性。结果表明,经四氟磺酰胺改性的含氟聚合物处理的织物具有更高的疏水性,表明-SF4-的引入有利于提供更低的表面能,并获得更好的拒水性能。水接触角记录了紫外线照射下聚合物降解的不同程度变化。结果表明,与碳链全氟烷基聚合物相比,由于全氟烷基通过-SF4-键合,四氟磺酰胺改性的氟聚合物在紫外线照射下更易降解。

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