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Studies of measurement techniques for indirect chemical sensing based on fluorescence spectroscopy and applications for fibre-optic sensors

机译:基于荧光光谱的间接化学传感测量技术研究及光纤传感器的应用

摘要

This thesis describes experimental and theoretical studies of interrogation systems for determining fluorescent decays of order a few microseconds. The studies have enabled optimised design of interrogators for sensing oxygen using a fluorescent polymer encapsulated ruthenium complex. Two basic interrogation methods were explored, using blue LED excitation.The Rapid Lifetime Detection (RLD) scheme, a fluorescence interrogation method based on direct interrogation of the decay curve following pulsed excitation was generalised, and a novel method for optimising measurement precision derived. The effect of background light on the optimum was quantified. Dissolved (aqueous) oxygen concentration was measured to a precision of 1 part per billion using a 1 second response time (the peak fluorescence power was only 12.5±0.5pW).A second interrogation method, where the phase delay between an intensity modulated excitation source and the resultant fluorescence is processed to make measurements, was for the first time, fully analysed for measurement of exponential decays. When measuring fluorescence lifetimes in the range 2.9-3.3µs, a precision of 2.3 x 10-10 s Hz-0.5 was achieved. (The peak fluorescence power was 500±25pW).A novel combination of ruby optical temperature sensor insert and oxygen sensing layer was demonstrated as a simultaneous temperature and oxygen sensor.A new fluorescence calibration standard consisting of thermally stabilised titanium-doped sapphire sample was constructed to calibrate and test the indicators.This work was sponsored by a BRITE EuRam European project, which helped determine the priorities of the research.
机译:本文介绍了用于确定几微秒量级荧光衰减的询问系统的实验和理论研究。这项研究使使用荧光聚合物封装的钌络合物感测氧气的询问器的设计得以优化。探索了使用蓝光LED激发的两种基本询问方法:概述了快速寿命检测(RLD)方案,基于脉冲激发后衰减曲线直接询问的荧光询问方法,并推导了一种优化测量精度的新方法。量化了背景光对最佳效果的影响。使用1秒的响应时间(峰值荧光功率仅为12.5±0.5pW)测量溶解的(水溶液)氧浓度至十亿分之一的精度。第二种询问方法,其中强度调制激发源之间的相位延迟然后对所得的荧光进行处理以进行测量,这是第一次被完全分析以测量指数衰减。在2.9-3.3µs范围内测量荧光寿命时,可以达到2.3 x 10-10 s Hz-0.5的精度。 (峰值荧光功率为500±25pW)。演示了将红宝石光学温度传感器插件和氧气感应层同时用作温度和氧气传感器的新型组合物,构建了由热稳定的钛掺杂蓝宝石样品组成的新荧光校准标准品这项工作是由BRITE EuRam欧洲项目赞助的,该项目帮助确定了研究的重点。

著录项

  • 作者

    Austin Edward Alfred Denzil;

  • 作者单位
  • 年度 2002
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
  • 中图分类

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