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Synthesis of pH-responsive polysilane with polyelectrolyte side chains through γ-ray-induced graft polymerization

机译:γ射线诱导的接枝聚合反应合成具有聚电解质侧链的pH响应型聚硅烷

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Polysilanes with polyelectrolyte side chains are synthesized by two methods utilizing y-ray-induced grafting and the pH responsiveness for one of those polymers is revealed mainly by investigating interfacial behavior of its monolayer at the air/water interface. In the first synthetic method, poly(methyl acrylate) is grafted onto poly(methyl-n-propylsilane) (PMPrS) through y-ray-induced grafting, and then the PMA chains are hydrolyzed to poly(acrylic acid) resulting in the yield of ca. 97%. Thus PMPrS with polyelectrolyte side chains is successfully synthesized by the graft chain hydrolysis. The other method is the direct grafting of electrolyte monomers. Poly(methacrylic acid)-grafted PMPrS (PMPrS-g-PMAA) can be obtained through y-ray-induced grafting of methacrylic acid monomers onto PMPrS chains, which shows the effectiveness of radiation grafting for the synthesis of polyelectrolyte graft copolymers. PMPrS-g-PMAA exhibits pH responsive behavior. In addition to the pH-dependence of water solubility, interfacial behavior also depends on the pH. Langmuir monolayers of PMPrS-g-PMAA exhibit different surface pressure-area isotherms according to the grafting yield and the pH of the subphase water. This result suggests that radiation modification is useful for fabricating polysilane-based ordered materials responsive to outer stimuli.
机译:带有聚电解质侧链的聚硅烷是通过两种利用y射线诱导的接枝方法合成的,其中一种聚合物的pH响应性主要是通过研究其单层在空气/水界面的界面行为来揭示的。在第一种合成方法中,通过y射线诱导的接枝将聚丙烯酸甲酯接枝到聚甲基正丙基硅烷(PMPrS)上,然后将PMA链水解为聚丙烯酸,从而获得约。 97%。因此,通过接枝链水解成功地合成了具有聚电解质侧链的PMPrS。另一种方法是直接接枝电解质单体。聚(甲基丙烯酸)接枝的PMPrS(PMPrS-g-PMAA)可以通过y射线诱导的甲基丙烯酸单体接枝到PMPrS链上获得,这显示了辐射接枝对于合成聚电解质接枝共聚物的有效性。 PMPrS-g-PMAA表现出pH响应行为。除了pH依赖于水溶性之外,界面行为还取决于pH。 PMPrS-g-PMAA的Langmuir单层根据接枝产率和亚相水的pH值显示不同的表面压力-面积等温线。该结果表明辐射改性可用于制造对外部刺激响应的基于聚硅烷的有序材料。

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