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Fiber optic hydrogen sensor based on an etched Bragg grating coated with palladium

机译:基于镀有钯的蚀刻布拉格光栅的光纤氢传感器

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A study of a sensor for hydrogen (H-2) detection based on fiber Bragg gratings coated with palladium (Pd) with self-temperature compensation is presented. The cladding around the gratings was reduced down to 50 mu m diameter by a chemical etching process. One of the gratings was left uncoated, and the other was coated with 150 nm of Pd. It was observed that palladium hydride has unstable behavior in environments with high humidity level. A simple solution to overcome this problem based on a Teflon tape is presented. The sensing device studied was able to respond to H-2 concentrations in the range 0%-1% v/v at room temperature and atmospheric pressure, achieving sensitivities larger than 20 pm/% v/v. Considering H-2 concentrations in nitrogen up to 1%, the performance of the sensing head was characterized for different thicknesses of Pd coating ranging from 50 to 200 nm. (C) 2015 Optical Society of America
机译:提出了一种基于具有自温度补偿功能的涂有钯(Pd)的光纤布拉格光栅的氢(H-2)检测传感器的研究。光栅周围的包层通过化学蚀刻工艺减小到50微米的直径。其中一个光栅未镀膜,另一个镀有150 nm Pd。观察到氢化钯在高湿度水平的环境中具有不稳定的行为。提出了一种基于聚四氟乙烯胶带克服此问题的简单解决方案。所研究的传感设备能够在室温和大气压下对H-2浓度在0%-1%v / v范围内做出响应,从而获得大于20 pm /%v / v的灵敏度。考虑到氮气中的H-2浓度最高为1%,对于50至200 nm范围内的不同厚度的Pd涂层,表征了传感头的性能。 (C)2015年美国眼镜学会

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