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The combination of smart hydrogels and fibre optic sensor technology for analyte detection

机译:智能水凝胶和光纤传感器技术相结合,用于分析物检测

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摘要

The subject of investigation of the present research is the use of smart hydrogels with fibre optic sensor technology. The aim was to develop a costeffective sensor platform for the detection of water in hydrocarbon media, and of dissolved inorganic analytes, namely potassium, calcium and aluminium. The fibre optic sensors in this work depend upon the use of hydrogels to either entrap chemotropic agents or to respond to external environmental changes, by changing their inherent properties, such as refractive index (RI). A review of current fibre optic technology for sensing outlined that the main principles utilised are either the measurement of signal loss or a change in wavelength of the light transmitted through the system. The signal loss principle relies on changing the conditions required for total internal reflection to occur. Hydrogels are cross-linked polymer networks that swell but do not dissolve in aqueous environments. Smart hydrogels are synthetic materials that exhibit additional properties to those inherent in their structure. In order to control the non-inherent properties, the hydrogels were fabricated with the addition of chemotropic agents. For the detection of water, hydrogels of low refractive index were synthesized using fluorinated monomers. Sulfonated monomers were used for their extreme hydrophilicity as a means of water sensing through an RI change. To enhance the sensing capability of the hydrogel, chemotropic agents, such as pH indicators and cobalt salts, were used. The system comprises of the smart hydrogel coated onto an exposed section of the fibre optic core, connected to the interrogation system measuring the difference in the signal. Information obtained was analysed using a purpose designed software. The developed sensor platform showed that an increase in the target species caused an increase in the signal lost from the sensor system, allowing for a detection of the target species. The system has potential applications in areas such as clinical point of care, water detection in fuels and the detection of dissolved ions in the water industry.
机译:本研究的研究主题是将智能水凝胶与光纤传感器技术结合使用。目的是开发一种经济高效的传感器平台,用于检测碳氢化合物介质中的水以及溶解的无机分析物(即钾,钙和铝)。这项工作中的光纤传感器依赖于使用水凝胶来捕获趋化剂或通过改变其固有特性(例如折射率(RI))来响应外部环境变化。对当前用于传感的光纤技术的回顾概述了所使用的主要原理是信号损耗的测量或通过系统传输的光的波长变化。信号损耗原理取决于改变发生全内反射所需的条件。水凝胶是交联的聚合物网络,会膨胀但不会在水性环境中溶解。智能水凝胶是合成材料,相对于其结构固有的特性,它还具有其他特性。为了控制非固有性质,在水凝胶中添加了趋化剂。为了检测水,使用氟化单体合成了低折射率的水凝胶。磺化单体因其极高的亲水性而被用作通过RI变化进行水感测的手段。为了增强水凝胶的感测能力,使用了化学趋化剂,例如pH指示剂和钴盐。该系统包括涂覆在光纤芯线裸露部分上的智能水凝胶,该智能水凝胶连接到询问系统,用于测量信号差。使用专用软件分析获得的信息。开发的传感器平台表明,目标物种的增加导致传感器系统信号丢失的增加,从而可以检测目标物种。该系统在临床护理点,燃料中的水检测以及水行业中溶解离子的检测等领域具有潜在的应用。

著录项

  • 作者

    Harvey Daniel Peter;

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  • 年度 2011
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  • 原文格式 PDF
  • 正文语种 English
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