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Long-period Gratings in Chemical Sensing

机译:化学传感中的长周期光栅

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A chemical sensor system consisting of a coated long period grating, which was spliced into a fiber loop cavity, has been prepared and characterized. Designer coatings based on polydimethylsiloxane and nanostructured organically modified silica (ORMOSIL) materials were prepared to provide enhanced sensitivity for a variety of key environmental pollutants. Upon microextraction of the analyte into the polymer matrix, an increase in the refractive index of the coating resulted in a change of the attenuation spectrum of the long period grating. The grating was interrogated using ring-down detection as a means to amplify the optical loss and to gain stability against misalignment and laser power fluctuations. Chemical differentiation of cyclohexane and xylenes was achieved and a detection limit of 300 ppm of xylenes vapour in air was readily realized for PDMS coatings. Ormosil-type coatings were capable of detecting lead cations at concentrations below 1 ppm in water.
机译:由涂覆的长周期光栅组成的化学传感器系统,其已经制备并表征。制备基于聚二甲基硅氧烷和纳米结构有机改性二氧化硅(ORMOSIL)材料的设计者涂层,为各种关键的环保污染物提供增强的敏感性。在分析物的微萃取到聚合物基质中,涂层的折射率的增加导致长周期光栅的衰减光谱的变化。使用翻转检测询问光栅作为放大光学损耗的装置,并获得稳定性和激光功率波动的装置。实现了环己烷和二甲苯的化学分化,用于PDMS涂层的容易地实现了300ppm的空气中的三角蒸汽的检测限。 Ormosil型涂层能够在水中以低于1ppm的浓度检测铅阳离子。

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