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Sensitive Chemical Optic Sensor Using Birefringent Porous Glass for the Detection of Volatile Organic Compounds

机译:使用双折射多孔玻璃的敏感化学光学传感器,用于检测挥发性有机化合物

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摘要

A simple design involving a birefringent porous glass oriented between two crossed polarizers serves as the foundation for an optically based sensitive broad-spectrum chemical sensor. Volatile organic compounds (VOCs) such as acetonitrile vapors can be readily detected at concentrations of as low as 50 ppm. Changes are observed in polarized light transmitted by the anisotropic porous material constituting the sensor, upon exposure to VOC-bearing air, as intensity changes at a defined wavelength or as changes in spectral content (color) detectable by the eye. The optical effects resulting from exposure to various vapors are reversible and may result from adsorption of solvent vapors with attendant reduction of anisotropy. The microporous structure as well as the surface chemistry of the sensor may be controlled for tuning the response to VOCs for industrial applications. Miniaturization of the sensor using low-cost materials such as plastic or glass optical fibers, Polaroid films, and birefringent porous glass is demonstrated. The sensor described in this paper could use ambient light as source and the eye as detector (color change) or electronically controlled light emission and detection for better sensitivity and real time monitoring of VOCs. Such intrinsic explosion proof sensors could be used to safely monitor VOC levels in remote environments.
机译:一种简单的设计,包括在两个交叉的偏振器之间定向的双折射多孔玻璃,是基于光学的灵敏广谱化学传感器的基础。诸如乙腈蒸气之类的挥发性有机化合物(VOC)可以低至50 ppm的浓度轻松检测到。在暴露于带有VOC的空气中时,观察到由构成传感器的各向异性多孔材料传输的偏振光的变化,这是因为强度在定义的波长下发生了变化,或者随着眼睛可以检测到的光谱含量(颜色)发生了变化。由于暴露于各种蒸气而产生的光学效应是可逆的,并且可能是由于溶剂蒸气的吸附以及各向异性的降低而导致的。可以控制传感器的微孔结构以及表面化学性质,以调节对工业应用中VOC的响应。演示了使用低成本材料(例如塑料或玻璃光纤,宝丽来膜和双折射多孔玻璃)使传感器小型化的方法。本文所述的传感器可以使用环境光作为光源,而眼睛则作为检测器(颜色变化)或电子控制的光发射和检测,以更好地灵敏度和实时监控VOC。这种固有的防爆传感器可用于安全监控远程环境中的VOC含量。

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