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Tapered polymer optical fiber oxygen sensor based on fluorescence-quenching of an embedded fluorophore

机译:基于嵌入式荧光团的荧光猝灭的锥形聚合物光纤氧传感器

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We have developed a new method of processing fiber optic oxygen gas sensors based on fluorescent quenching by directly and locally incorporating the fluorophore into the optical fiber that is going to serve as waveguide. This procedure circumvents the preparation steps of the sensing polymer matrix and the later coating of the optical fiber. The sensor combines a side illumination technique with the localized tapering of the fiber, where the fluorophore is placed, to increase the signal to noise ratio. We have fully characterized it and our sensor performance is comparable in sensitivity and response time to those based on polymer matrix fluorophore embedding. We also have studied the addition of a second fluorophore unresponsive to oxygen to serve as a reference for the stability of the excitation source.
机译:我们已经开发了一种基于荧光猝灭的处理光纤氧气传感器的新方法,方法是将荧光团直接和局部地掺入要用作波导的光纤中。该程序避免了感测聚合物基质的制备步骤以及随后的光纤涂层。该传感器将侧面照明技术与放置荧光团的光纤的局部锥形相结合,以提高信噪比。我们已经对其进行了充分的表征,并且我们的传感器性能在灵敏度和响应时间上均与基于聚合物基质荧光团嵌入的传感器和性能相当。我们还研究了添加第二种对氧气不敏感的荧光团,以作为激发源稳定性的参考。

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