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Fabrication of high-density polymer brush on polymer substrate by surface-initiated living radical polymerization

机译:通过表面引发的活性自由基聚合在聚合物基底上制备高密度聚合物刷

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摘要

A well-defined, high-density poly(2-hydroxyethyl methacrylate) (PHEMA) brush was fabricated on the surface of a poly(tetrafluoroethylene-co-hexafluoropropylene) (FEP) film by surface-initiated living radical polymerization (LRP). First, a sufficient amount of peroxides as initiating moieties were successfully introduced on the film surface without causing etching by the O-2-plasma treatment. Subsequently, the polymerization mediated by reversible addition-fragmentation chain transfer (RAFT) was carried out at a mild temperature in a nonsolvent for FEP to minimize the swelling of the FEP film surface and avoid the growth of chains from deep inside of the film. The contact angle and ESCA measurements indicated that the boundary intermixing layer between FEP and PHEMA layers was reasonably thin (≤ 10 nm), meaning that the PHEMA brush was grown nearly regioselectively from the surface of the FEP film. The graft density was estimated to be about 0.3 chainsm(2), which is almost the same as the one achievable by the RAFT technique on inorganic substrates with a hard surface. This graft density is much higher than the ones obtainable by conventional techniques.
机译:通过表面引发的活性自由基聚合(LRP),在聚四氟乙烯-共六氟丙烯(FEP)薄膜的表面上制作了定义明确的高密度聚甲基丙烯酸2-羟乙酯(PHEMA)刷。首先,将足够数量的作为引发部分的过氧化物成功地引入到膜表面上,而不会通过O-2-等离子体处理引起蚀刻。随后,在适中的温度下,在FEP的非溶剂中进行由可逆加成-断裂链转移(RAFT)介导的聚合反应,以最大程度地减少FEP膜表面的溶胀并避免链从膜深处生长。接触角和ESCA测量结果表明,FEP和PHEMA层之间的边界混合层相当薄(≤ 10 nm),这意味着PHEMA刷几乎从FEP膜的表面区域选择性生长。接枝密度估计约为0.3链/ nm(2),与通过RAFT技术在具有硬表面的无机基材上可获得的密度几乎相同。该接枝密度比通过常规技术可获得的密度高得多。

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