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首页> 外文期刊>Analytical chemistry >Dye-Loaded Porous Nanocapsules Immobilized in a Permeable Polyvinyl Alcohol Matrix: A Versatile Optical Sensor Platform
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Dye-Loaded Porous Nanocapsules Immobilized in a Permeable Polyvinyl Alcohol Matrix: A Versatile Optical Sensor Platform

机译:染料固定在可渗透聚乙烯醇基质中的多孔纳米胶囊染料:多功能光学传感器平台。

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In this work we report on a versatile sensor platform based on encapsulated indicator dyes. Dyes are entrapped in hollow nanocapsules with nanometer-thin walls of controlled porosity. The porous nanocapsules retain molecules larger than the pore size but provide ultrafast access to their interior for molecules and ions smaller than the pore size. Dye-loaded nanocapsules are immobilized in a polyvinyl alcohol (PVA) matrix with high solvent permeability and rapid analyte diffusion. This approach provides robust sensing films with fast response and extended lifetime. To demonstrate the performance characteristics of such films, pH-sensitive indicator dyes were entrapped in vesicle-templated nanocapsules prepared by copolymerization of tert-butyl methacrylate, butyl methacrylate, and ethylene glycol dimethacrylate. As pH sensitive dyes, Nile blue A, bromophenol blue, and acid fuchsin were tested. Time-resolved absorbance measurements showed that the rate of the color change is controlled by the rate of diffusion of protons in the hydrogel. The pH-induced color change in a approx400 (mu)m thick film is complete within 40 and 60 s. The porous nanocapsule loaded films showed excellent stability and reproducibility in long-term monitoring experiments. Compartmentalization of the indicator dyes within the nanocapsules increased their stability. The matrix caused a shift in the position of the color change of the dye compared to that in an aqueous buffer solution. The encapsulation/immobilization protocol described in this account is expected to be broadly applicable to a variety of indicator dyes in optical sensor applications.
机译:在这项工作中,我们报告了基于封装指示剂染料的多功能传感器平台。染料被包裹在具有可控孔隙度的纳米薄壁的空心纳米胶囊中。多孔纳米囊保留了大于孔径的分子,但为小于孔径的分子和离子提供了超快的进入其内部的通道。染料负载的纳米胶囊固定在聚乙烯醇(PVA)基质中,具有高溶剂渗透性和快速的分析物扩散能力。这种方法提供了具有快速响应和延长使用寿命的坚固感应膜。为了证明这种膜的性能特征,将pH敏感指示剂染料截留在通过甲基丙烯酸叔丁酯,甲基丙烯酸丁酯和乙二醇二甲基丙烯酸酯共聚制备的囊状模板纳米胶囊中。作为pH敏感染料,对尼罗蓝A,溴酚蓝和酸性品红进行了测试。时间分辨的吸光度测量表明,颜色变化的速率受质子在水凝胶中的扩散速率的控制。 pH诱导的约400μm厚的薄膜变色在40到60 s内完成。在长期监测实验中,多孔纳米胶囊负载膜表现出优异的稳定性和可重复性。指示剂染料在纳米胶囊中的分区使它们的稳定性增加。与在水性缓冲溶液中相比,该基质引起了染料的颜色变化的位置的变化。预期该帐户中描述的封装/固定方案可广泛应用于光学传感器应用中的各种指示剂染料。

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