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首页> 外文期刊>Macromolecules >Blocklike Fluorocarbon and Hydrocarbon Copolymer Films via Surface-Initiated ATRP and Postpolymerization Reactions
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Blocklike Fluorocarbon and Hydrocarbon Copolymer Films via Surface-Initiated ATRP and Postpolymerization Reactions

机译:通过表面引发的ATRP和后聚合反应形成块状碳氟化合物和碳氢化合物共聚物薄膜

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摘要

We report a new method to prepare ultrathin blocklike copolymer films on metal surfaces with molecularly optimized surface and barrier properties.Copolymer films containing various fluorocarbon and/or hydrocarbon side chains were created by a one-step surface-initiated polymerization of poly-(hydroxyethyl methacrylate) (PHEMA) followed by straightforward derivatization steps.Exposure of PHEMA to perfluorobenzoyl chloride results in a perfluoroaryl-modified PHEMA film that exhibits high conversion and outstanding barrier properties but does not present an oleophobic surface.We have previously demonstrated that fluorinated esters created in this manner may be hydrolyzed back to PHEMA by brief exposure to base.Controlled hydrolysis results in regeneration of PHEMA in the outer surface region that can be subsequently rederivatized with alkyl or fluoroalkyl acid chlorides to create copolymer films with tailored surface composition.Surface properties are solely affected by the species used during rederivatization while barrier properties result from the combined conversion,structuring,and surface properties of the copolymer film.
机译:我们报道了一种在分子表面具有最佳表面和阻隔性能的金属表面上制备超薄块状共聚物薄膜的新方法。通过一步法引发的聚甲基丙烯酸羟乙酯的表面引发聚合反应,制备了包含各种碳氟化合物和/或碳氢化合物侧链的共聚物薄膜。 (PHEMA),然后进行直接的衍生化步骤。将PHEMA暴露于全氟苯甲酰氯会产生全氟芳基改性的PHEMA膜,该膜显示出高转化率和出色的阻隔性能,但不具有疏油表面。我们之前已经证明了在此过程中产生的氟化酯可通过短暂暴露于碱中的方式将其水解回PHEMA。受控的水解导致PHEMA在外表面区域再生,随后可通过烷基或氟代烷基酰氯进行再氧化,以形成具有定制表面组成的共聚物膜,仅影响表面性能按所用物种阻聚性能来自共聚物薄膜的转化率,结构和表面性能的综合。

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