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Synthesis of Polymer Thin Film Gradient with Nanometer Thickness through Water Diffusion Controlled Surface Polymerization

机译:水扩散控制表面聚合法合成纳米厚度的聚合物薄膜梯度

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摘要

We report here a unique, simple method for synthesizing polymer film gradients with nanometer thickness through diffusion controlled surface polymerization. Polar solvents, especially water,have previously been shown to increase the rate of atom transfer radical polymerization (ATRP) of numerous monomers. That result made it apparent that the rate of ATRP polymerization could be regulated by the concentration of water in the polymerization solution. On the basis of this observation, we successfully developed a simple method for preparing polymer thin film gradients on substrates by water concentration gradient formed along the surface of substrates. An initiator attached substrate was placed in a two-layer system of water and a polymerization solution in which the diffusion of water into the polymerization solution resulted in a monomer concentration gradient, leading to varied polymerization rates along the substrate, and finally polymer thin film gradients. Poly(ethylene glycol) methacrylate (PEGMA) gradient thin films formed on silica surfaces have thickness ranging from a few of hundreds of angstroms to more than 1000 A.
机译:我们在这里报告了通过扩散控制的表面聚合合成纳米厚度的聚合物膜梯度的独特,简单的方法。极性溶剂,特别是水,以前已显示出可以提高许多单体的原子转移自由基聚合(ATRP)的速率。该结果表明,可以通过聚合溶液中水的浓度来调节ATRP聚合的速率。在此基础上,我们成功开发了一种简单的方法,该方法可通过沿基材表面形成的水浓度梯度在基材上制备聚合物薄膜梯度。将附有引发剂的基质置于水和聚合溶液的两层系统中,其中水向聚合溶液中的扩散导致单体浓度梯度,从而导致沿基质的聚合速率发生变化,最终导致聚合物薄膜梯度。在二氧化硅表面上形成的聚甲基丙烯酸乙二醇酯(PEGMA)梯度薄膜的厚度范围从几百埃到超过1000A。

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