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Planar integrated optical waveguide chemical sensors and novel transducer layer materials

机译:平面集成光波导化学传感器和新型换能器层材料

摘要

The application of planar integrated optical waveguide (IOW) technology to chemical sensor development results in very sensitive, fast-response devices. The additional dimension of selectivity that is possible in these devices, through the ability to select an analytical wavelength of light particular to only a specific interaction, is also a very attractive feature. The implementation of sol-gel materials processing in the sensor fabrication proves beneficial to the device performance in many ways. Sol-gels provide the high optical quality materials used in both the waveguiding layer and indicator film overlayers of the planar IOW chemical sensors. Since they are chemically prepared, their physical properties and chemical properties are easily tailored through chemical means or processing conditions. The fact that sol-gel bulks and films are prepared at room temperature allows the immobilization of heat labile species such as organic indicators or, in the case of biosensors, proteins or enzymes. The feasibility of the laminate planar IOW sensor geometry is demonstrated through the formation strongly light-absorbing complexes between the analytes and sol-gel immobilized indicators, detected by the attenuation of totally internally reflected light guided in the IOW (Part I). The construction of a gas-phase humidity sensor is shown in Chapter 3, along with a solution-phase sensor for aqueous isopropyl alcohol (IPA) in Chapter 4. An IOW-based humidity sensor utilizing a completely non-sol-gel based transducer layer is also reported (Chapter 5). The humidity sensors were found to exhibit limits of detection of below 1% RH (down to 50 ppm in nitrogen gas) with response and recovery times ranging from over one minute down to several seconds. The IPA sensor had response times under one minute, with an extrapolated detection limit of 0.02% v/v (160 ppm) IPA in water. This work also describes the spectroscopic properties of novel indicator compounds that are useful in chemical sensing (Part II). In particular, Chapter 5 describes the fabrication of unique starch/amylose-iodine composite films which demonstrate dramatic, humidity-sensitive colorimetric changes. Chapter 6 deals with the examination of the spectroscopic properties of a novel class of peripherally substituted porphyrazines that exhibit selective metal ion binding. Finally, Appendix C describes the use of a naphthalocyanine for the detection of tributylphosphate (TBP) in polar solution by visible absorbance spectroscopy.
机译:平面集成光波导(IOW)技术在化学传感器开发中的应用导致了非常灵敏,快速响应的设备。通过选择仅特定相互作用的光的分析波长的能力,在这些设备中可能实现的选择性的附加维度也是一个非常吸引人的特征。传感器制造过程中溶胶-凝胶材料处理的实施在许多方面证明对设备性能有利。溶胶-凝胶提供了用于平面IOW化学传感器的波导层和指示膜覆盖层的高质量光学材料。由于它们是化学制备的,因此可以通过化学方法或加工条件轻松调整其物理性质和化学性质。溶胶-凝胶本体和薄膜是在室温下制备的,因此可以固定热不稳定的物种,例如有机指示剂,或者在生物传感器的情况下,可以固定蛋白质或酶。层状平面IOW传感器几何形状的可行性通过分析物与溶胶-凝胶固定的指示剂之间形成强光吸收复合物来证明,该复合物通过IOW中引导的全内反射光的衰减来检测(第一部分)。第3章显示了气相湿度传感器的结构,第4章显示了用于异丙醇水溶液(IPA)的溶液相传感器。基于IOW的湿度传感器利用了完全不基于溶胶凝胶的传感器层也有报道(第5章)。发现湿度传感器的检出限低于1%RH(在氮气中低至50 ppm),响应和恢复时间范围从一分钟以上到几秒钟。 IPA传感器的响应时间不到一分钟,在水中的IPA的外推检出限为0.02%v / v(160 ppm)。这项工作还描述了可用于化学传感的新型指示剂化合物的光谱性质(第二部分)。特别是,第5章描述了独特的淀粉/直链淀粉-碘复合膜的制造,该膜表现出显着的,对湿度敏感的比色变化。第6章研究了新型的具有选择性金属离子结合的周边取代的卟啉类的光谱性质。最后,附录C描述了使用萘酞菁通过可见吸收光谱法检测极性溶液中的磷酸三丁酯(TBP)。

著录项

  • 作者

    Skrdla Peter Joseph 1973-;

  • 作者单位
  • 年度 1999
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  • 原文格式 PDF
  • 正文语种 en_US
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