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pH sensor based on swellable poly(3-nitro-4-hydroxystrene) microspheres in a hydrogel

机译:基于水凝胶中可溶胀的聚(3-硝基-4-羟基苯乙烯)微球的pH传感器

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Abstract: A new polymer material for pH sensing is described in this work. The optically sensitive membranes consists of lightly crosslinked poly(3-nitro-4-hydroxystyrene) microspheres embedded in a hydrogel matrix of polyvinyl alcohol (PVA). The microspheres are designed to swell and shrink as a function of hydrogen ion concentration accompanying the deprotonation and protonation of the hydroxyl group on the polymer backbone. The optical properties of the membranes are affected by both the change in size of the microspheres and the change in refractive index that accompanies swelling. These properties can be measured as a change in membrane turbidity at the interface between the polymer particle and the hydrogel matrix by a spectrophotometer or fiber optic sensor device. Microspheres are prepared by seeded emulsion polymerization of 4-acetoxystyrene followed by hydrolysis and nitration to introduce the nitro-phenol functional groups. The magnitude of the change in turbidity with pH changes were studies. Other parameters such as loading of the particles and ionic strength effects were also studied. !20
机译:摘要:在这项工作中描述了一种新型的用于pH传感的聚合物材料。光学敏感膜由嵌入聚乙烯醇(PVA)水凝胶基质中的轻度交联的聚(3-硝基-4-羟基苯乙烯)微球组成。该微球被设计为随聚合物主链上羟基的去质子化和质子化而随氢离子浓度而膨胀和收缩。膜的光学性质受微球尺寸变化和溶胀引起的折射率变化的影响。这些性质可以通过分光光度计或光纤传感器装置测量为聚合物颗粒与水凝胶基质之间的界面处的膜浊度变化。通过将4-乙酰氧基苯乙烯进行种子乳液聚合,然后进行水解和硝化以引入硝基苯酚官能团,可以制备微球。研究了随着pH值变化浊度变化的幅度。还研究了其他参数,例如颗粒的负载和离子强度效应。 !20

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