首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Surface-confined photopolymerization of pH-responsive acrylamide/acrylate brushes on polymer thin films
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Surface-confined photopolymerization of pH-responsive acrylamide/acrylate brushes on polymer thin films

机译:pH响应的丙烯酰胺/丙烯酸酯刷在聚合物薄膜上的表面受限光聚合

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摘要

Dynamic acrylamide/acrylate polymeric brushes were synthesized at gold-plated quartz crystal surfaces. The crystals were initially coated with polystyrene-type thin films, derivatized with photolabile iniferter groups, and subsequently subjected to photoinitiated polymerization in acrylamide/acrylate monomer feeds. This surface-confined polymerization method enabled direct photocontrol over the polymerization, as followed by increased frequency responses of the crystal oscillations in a quartz crystal microbalance (QCM). The produced polymer layers were also found to be highly sensitive to external acid/base stimuli. Large oscillation frequency shifts were detected when the brushes were exposed to buffer solutions of different pH. The dynamic behavior of the resulting polymeric brushes was evaluated, and the extent of expansion and contraction of the films was monitored by the QCM setup in situ in real time. The resulting responses were rapid, and the effects were fully reversible. Low pH resulted in full contractions of the films, whereas higher pH yielded maximal expansion in order to minimize repulsion around the charged acrylate centers. The surfaces also proved to be very robust because the responsiveness was reproducible over many cycles of repeated expansion and contraction. Using ellipsometry, copolymer layers were estimated to be similar to 220 nm in a collapsed state and similar to 340 nm in the expanded state, effectively increasing the thickness of the film by 55%.
机译:在镀金石英晶体表面合成了动态丙烯酰胺/丙烯酸酯聚合物刷。最初用聚苯乙烯型薄膜涂覆晶体,用不耐光的引发剂基团衍生化,然后在丙烯酰胺/丙烯酸酯单体进料中进行光引发聚合。这种表面受限的聚合方法可对聚合进行直接光控,随后增加石英微天平(QCM)中晶体振荡的频率响应。还发现产生的聚合物层对外部酸/碱刺激高度敏感。当刷子暴露于不同pH的缓冲溶液中时,检测到较大的振荡频率偏移。评估了所得聚合物刷的动态行为,并通过QCM现场实时监测了薄膜的膨胀和收缩程度。产生的响应很快,并且效果完全可逆。低pH值会使薄膜完全收缩,而较高的pH值会产生最大的膨胀,以使带电荷的丙烯酸酯中心周围的排斥最小。表面也被证明是非常坚固的,因为在许多重复的膨胀和收缩循环中,响应性是可重现的。使用椭圆光度法,估计共聚物层在塌陷状态下类似于220nm,在膨胀状态下类似于340nm,有效地将膜的厚度增加了55%。

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