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Zinc oxide nanoparticle based optical fiber humidity sensor having linear response throughout a large dynamic range

机译:基于氧化锌纳米粒子的光纤湿度传感器在大动态范围内具有线性响应

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摘要

The main objective of the present work is to develop an optical fiber relative humidity (RH) sensor having a linear response throughout over the widest possible dynamic range. We report an optical fiber RH sensor based on the evanescent wave absorption spectroscopy that fulfills this objective. The fiber sensor employs a specific nanoparticle (zinc oxide) doped sol-gel nanostructured sensing film of optimum thickness, synthesized over a short length of a centrally decladded straight and uniform optical fiber. A detailed experimental investigation is carried out to analyze the sensor response/characteristics. Fiber sensor response is observed to be linear throughout the dynamic range as wide as 4percent to 96percent RH. The observed linear sensitivity for the fiber sensor is 0.0012 RH~(-1). The average response time of the reported sensor is observed to be as short as 0.06 s during the humidification. In addition, the sensor exhibited a very good degree of reversibility and extremely high reliability as well as repeatability.
机译:本工作的主要目的是开发一种在最宽的动态范围内具有线性响应的光纤相对湿度(RH)传感器。我们报告了基于the逝波吸收光谱的光纤RH传感器,该传感器可以实现此目标。光纤传感器采用特定厚度的特定纳米颗粒(氧化锌)掺杂的溶胶-凝胶纳米结构的感应膜,该感应膜是在短距离的中心倾斜的直而均匀的光纤上合成的。进行了详细的实验研究,以分析传感器的响应/特性。在整个动态范围内,相对于RH的4%至96%,光纤传感器的响应都是线性的。光纤传感器的线性灵敏度为0.0012 RH〜(-1)。观察到的传感器在加湿期间的平均响应时间短至0.06 s。另外,该传感器表现出非常好的可逆性和极高的可靠性以及可重复性。

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