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Fiber Bragg Grating (FBG) Based Chemical Sensor

机译:基于光纤布拉格光栅(FBG)的化学传感器

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摘要

In this work, reagentless fiber optic-based chemical sensors for water quality testing were fabricated by coating fiber Bragg gratings with the glassy polymer cellulose acetate. With this polymeric matrix capable of localizing or concentrating chemical constituents within its structure, immersion of the coated grating in various chemical solutions causes the rigid polymer to expand and mechanically strain the glass fiber. The corresponding changes in the periodicity of the grating subsequently result in altered Bragg-reflected responses. A high-resolution tunable fiber ring laser interrogator is used to obtain room temperature reflectance spectrograms from two fiber gratings at 1550 nm and 1540 nm wavelengths. Rapidly swept measurements of the full spectral shapes yield real-time chemical detection and identification. With deionized water as a reference, wavelength shifts in the reflectivity transition edge from –82 pm to +43 pm and changes in response bandwidth from –27 pm to +42 pm are used to identify uniquely a diverse selection of chemical analytes.
机译:在这项工作中,通过用玻璃状聚合物醋酸纤维素涂覆光纤布拉格光栅来制造用于水质测试的基于无试剂光纤的化学传感器。由于该聚合物基体能够在其结构内定位或浓缩化学成分,因此将涂覆的光栅浸入各种化学溶液中会导致刚性聚合物膨胀并使玻璃纤维机械变形。光栅周期性的相应变化随后导致改变的布拉格反射响应。高分辨率可调谐光纤环形激光询问器用于从两个光纤光栅以1550 nm和1540 nm波长获得室温反射光谱图。快速扫描完整光谱形状的测量结果可进行实时化学检测和鉴定。以去离子水为参考,反射率跃迁边缘的波长从–82 pm到+43 pm以及响应带宽从–27 pm到+42 pm的变化被用于唯一地识别各种化学分析物。

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    Sethuraman Gopakumar;

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  • 年度 2008
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