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Photopolymerizable nanocomposites for holographic recording and sensor application

机译:用于全息记录和传感器应用的可光聚合纳米复合材料

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Novel nanocomposites consisting of a water-soluble acrylamide-based photopolymer and colloidal zeolite nanoparticles of zeolite Beta and zeolite A were prepared. The interactions between the photopolymer components and zeolite nanoparticles in the photopolymerizable nanocomposites were characterized for the first time by ~(13)C nuclear magnetic resonance and visible spectroscopy. It was found that the zeolite Beta nanoparticles (up to 5 wt. percent) behave as a noninert additive, resulting in an effective increase in layer thickness, which causes doubling of the diffraction efficiency of the nanocomposite in comparison to that of the undoped photopolymer. On the other hand, the nanocomposite containing zeolite A nanoparticles showed no evidence of interaction with the polymer matrix, had similar values of diffraction efficiency, and--up to a small addition of nanoparticles (up to 2.5 wt. percent)--showed slightly higher light-induced refractive index modulation of the grating when compared to the undoped photopolymer. The good optical compatibility between the zeolite nanoparticles and the polymer allows a versatile design of photopolymerizable nanocomposites with different properties by selecting the adequate type of zeolite. The nanocomposite containing zeolite Beta nanoparticles demonstrates selective sensing behavior toward toluene and can be coated in either glass or plastic substrates and exposed directly to the environmental conditions.
机译:制备了一种新型的纳米复合材料,该复合材料由水溶性丙烯酰胺基光敏聚合物和β型沸石和A型沸石的胶态沸石纳米颗粒组成。通过〜(13)C核磁共振和可见光谱首次表征了可光聚合纳米复合材料中光聚合物组分与沸石纳米颗粒之间的相互作用。已发现沸石β纳米颗粒(至多5重量%)表现为非惰性添加剂,导致层厚度的有效增加,与未掺杂的光聚合物相比,其导致纳米复合材料的衍射效率加倍。另一方面,含有沸石A的纳米复合材料没有显示出与聚合物基体相互作用的迹象,具有相似的衍射效率值,并且-少量添加纳米颗粒(高达2.5重量%)显示-略有增加。与未掺杂的光敏聚合物相比,光栅的光诱导折射率调制更高。沸石纳米颗粒与聚合物之间的良好光学相容性允许通过选择适当类型的沸石来对具有不同性质的可光聚合纳米复合材料进行通用设计。含有沸石β纳米颗粒的纳米复合材料表现出对甲苯的选择性传感行为,可以涂覆在玻璃或塑料基材中,并直接暴露于环境条件下。

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