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高度通用的基于光纤的法布里-珀罗气体传感器。

Highly versatile fiber-based optical Fabry-Pérot gas sensor.

作者信息

Liu Jing, Sun Yuze, Fan Xudong

机构信息

Biological Engineering Department, University of Missouri, 240D Bond Life Sciences Center, 1201 E. Rollins Street, Columbia, Missouri 65211, USA.

出版信息

Opt Express. 2009 Feb 16;17(4):2731-8. doi: 10.1364/oe.17.002731.

Abstract

We develop a versatile, compact, and sensitive fiber-based optical Fabry-Pérot (FP) gas sensor. The sensor probe is composed of a silver layer and a vapor-sensitive polymer layer that are sequentially deposited on the cleaved fiber endface, thus forming an FP cavity. The interference spectrum resulting from the reflected light at the silver-polymer and polymer-air interfaces changes when the polymer is exposed to gas analytes. This structure enables using any polymer regardless of the polymer refractive index (RI), which significantly enhances the sensor versatility. In experiments, we use polyethylene glycol (PEG) 400 (RI=1.465-1.469) and Norland Optical Adhesive (NOA) 81 (RI=1.53-1.56) as the gas sensing polymer and show drastically different sensor response to hexanol, methanol, and acetone. The estimated sensitivity for methanol vapor is 3.5 pm/ppm and 0.1 pm/ppm for PEG 400 and NOA 81, respectively, with a detection limit on the order of 1-10 ppm. Gas sensing for the analytes delivered in both continuous flow mode and pulsed mode is demonstrated.

摘要

我们开发了一种通用、紧凑且灵敏的基于光纤的光学法布里-珀罗(FP)气体传感器。传感器探头由依次沉积在切割后的光纤端面上的银层和对蒸汽敏感的聚合物层组成,从而形成一个FP腔。当聚合物暴露于气体分析物时,在银-聚合物和聚合物-空气界面处反射光产生的干涉光谱会发生变化。这种结构能够使用任何聚合物,而无需考虑聚合物的折射率(RI),这显著提高了传感器的通用性。在实验中,我们使用聚乙二醇(PEG)400(RI = 1.465 - 1.469)和诺兰德光学胶(NOA)81(RI = 1.53 - 1.56)作为气体传感聚合物,并展示了对己醇、甲醇和丙酮截然不同的传感器响应。对于甲醇蒸汽,估计PEG 400和NOA 81的灵敏度分别为3.5 pm/ppm和0.1 pm/ppm,检测限在1 - 10 ppm量级。展示了对以连续流动模式和脉冲模式输送的分析物的气体传感。

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