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Fiber optic fluorescence temperature sensors using up-conversion from rare-earth polymer composites

机译:光纤荧光温度传感器采用稀土聚合物复合材料的上转换

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摘要

We demonstrate an optical fiber sensor based on the green up-conversion emission of rare-earth active ions hosted by a polymer matrix. The temperature sensitive composite material is fabricated by simple mixing of the rare-earth ions in powder form (NaY0.77Yb0.20Er0.03F4) with the polymer (polydimethylsiloxane). This fluorescent material is then incorporated on the tip of silica-glass optical fibers to obtain a point temperature sensor probe. Temperature measurements are obtained through the fluorescent intensity ratio technique, yielding a linear response and minimizing spurious effects on the up-conversion fluorescence signal. The fiber sensors fabricated with this material provide good performance within a temperature range of 20-100 degrees C, excellent linearity (r(2) = 0.999), and good thermal and fluorescent stability. (c) 2019 Optical Society of America
机译:我们通过聚合物基质托管的稀土活性离子的绿色上转换发射来展示一种光纤传感器。 通过用聚合物(聚二甲基硅氧烷)的粉末形式(NAY0.77yB0.20.03F4)简单地混合稀土离子来制造温度敏感的复合材料。 然后将该荧光材料掺入二氧化硅 - 玻璃光纤的尖端上,以获得点温度传感器探针。 通过荧光强度比技术获得温度测量,从而产生线性响应并最小化对上转换荧光信号的杂散效应。 采用该材料制造的光纤传感器在20-100℃的温度范围内提供良好的性能,优异的线性度(R(2)= 0.999),以及良好的热和荧光稳定性。 (c)2019年光学学会

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