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Humidity and temperature response of photopolymer-based holographic gratings

机译:光敏聚合物全息光栅的湿度和温度响应

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摘要

Holographic sensors have significant potential in various applications ranging from in vitro diagnostics to optical security. They are capable of providing fast, real-time, reversible or irreversible, visual colorimetric or optical readouts. The main challenge in the development of holographic sensors is to improve their selectivity by functionalizing the holographic recording material and achieve a response to a specific analyte. This material should be permeable to the analyte and its properties should change under exposure to the analyte. This work explores the humidity and temperature response of volume phase gratings recorded in photopolymers containing acrylamide and diacetone acrylamide as monomers, and triethanolamine and N-phenylglycine as photoinitiators. Characterization of the humidity response of photopolymer-based gratings in the relative humidity (RH) range of 20-90 % was carried out by measuring the diffraction efficiency of slanted transmission gratings and the position of the maximum intensity in the spectral response of reflection gratings. A strong humidity dependence of the diffraction efficiency of diacetone acrylamide-based transmission gratings was observed at RH=20-90%. The humidity dependence of the spectral response of the reflection gratings showed that photopolymers containing triethanolamine are more hydrophilic than photopolymers containing N-phenylglycine. The temperature response of slanted transmission gratings was investigated in the temperature (T) range of 20-60 ℃. Exposure of the photopolymer layers containing triethanolamine to elevated temperature showed that the observed Bragg angle shift was caused by layer shrinkage due to water evaporation. The application of a sealing technique allowed for the observation of the photopolymer layer swelling due to the layer's thermal expansion. The results demonstrate an effective approach to obtaining photopolymer-based gratings with tuneable temperature and humidity sensitivity.
机译:全息传感器在从体外诊断到光学安全性的各种应用中具有巨大的潜力。它们能够提供快速,实时,可逆或不可逆的视觉色度或光学读数。全息传感器开发中的主要挑战是通过对全息记录材料进行功能化来提高其选择性并实现对特定分析物的响应。该材料应可渗透分析物,并且其性质应在暴露于分析物的情况下发生变化。这项工作探索了在以丙烯酰胺和双丙酮丙烯酰胺为单体,三乙醇胺和N-苯基甘氨酸作为光引发剂的光聚合物中记录的体相光栅的湿度和温度响应。通过测量倾斜的透射光栅的衍射效率和反射光栅的光谱响应中最大强度的位置,对光聚合物基光栅在20-90%相对湿度(RH)范围内的湿度响应进行了表征。在RH = 20-90%时,观察到双丙酮丙烯酰胺基透射光栅的衍射效率对湿度的依赖性强。反射光栅的光谱响应的湿度依赖性表明,含三乙醇胺的光敏聚合物比含N-苯基甘氨酸的光敏聚合物更亲水。在20-60℃的温度范围内研究了斜透射光栅的温度响应。含有三乙醇胺的光敏聚合物层暴露于高温表明,观察到的布拉格角位移是由于水蒸发引起的层收缩引起的。密封技术的应用允许观察光敏聚合物层由于该层的热膨胀而膨胀。结果证明了获得具有可调节的温度和湿度敏感性的基于光聚合物的光栅的有效方法。

著录项

  • 来源
    《Holography: Advances and modern trends IV》|2015年|950809.1-950809.11|共11页
  • 会议地点 Prague(CZ)
  • 作者单位

    Centre for Industrial and Engineering Optics, School of Physics, College of Sciences and Health, Dublin Institute of Technology, Kevin Street, Dublin 8, Ireland;

    Centre for Industrial and Engineering Optics, School of Physics, College of Sciences and Health, Dublin Institute of Technology, Kevin Street, Dublin 8, Ireland;

    Centre for Industrial and Engineering Optics, School of Physics, College of Sciences and Health, Dublin Institute of Technology, Kevin Street, Dublin 8, Ireland;

    Centre for Industrial and Engineering Optics, School of Physics, College of Sciences and Health, Dublin Institute of Technology, Kevin Street, Dublin 8, Ireland;

    Centre for Industrial and Engineering Optics, School of Physics, College of Sciences and Health, Dublin Institute of Technology, Kevin Street, Dublin 8, Ireland;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    photopolymer; diacetone acrylamide; holographic grating; holographic sensor; sensitivity to humidity; sensitivity to temperature.;

    机译:光敏聚合物双丙酮丙烯酰胺;全息光栅全息传感器对湿度敏感;对温度敏感。;
  • 入库时间 2022-08-26 13:45:42

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