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Metallo-porphyrins as gas sensing material for colorimetric gas sensors on planar optical waveguides

机译:金属卟啉作为平面光波导上比色气体传感器的气体传感材料

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The work presented here focuses on the investigations of metallo-porphyrins and their gasochromic behavior. Gasochromic materials change their color while they are exposed to a certain gas. So they offer the possibility to develop very selective chemical gas sensors. In the focus of this work is the metallo-porphyrin 5, 10, 15, 20- tetraphenylporphyrin-zinc (ZnTPP). When embedded into a polymeric matrix (PVC) the color change to the toxic gas NO2 can be detected. During exposure to NO2 the dye changes its color from bright purple to yellow. To develop a standalone gas sensor, the ZnTPP/PVC matrix is deposited onto a planar optical waveguide. The color change of the porphyrin dye, due to the gas exposure, can be detected in the evanescent field of the optical waveguide. Therefore the light of a high power LED is coupled into the waveguide. The color change of the porphyrin is detectable with photodiodes as variations of the decoupled light intensity. The sensor shows no cross-sensitivities to other gases like CO2, NH3, EtOH, CO or water vapor. NO2 is detectable with a limit of 1 ppm
机译:本文介绍的工作重点是金属卟啉及其气致变色行为的研究。气致变色材料在暴露于某种气体时会改变其颜色。因此,它们为开发选择性非常强的化学气体传感器提供了可能性。这项工作的重点是金属卟啉5、10、15、20-四苯基卟啉锌(ZnTPP)。当嵌入聚合物基体(PVC)中时,可以检测到有毒气体NO2的颜色变化。在暴露于NO2期间,染料的颜色从明亮的紫色变为黄色。为了开发独立的气体传感器,将ZnTPP / PVC基质沉积到平面光波导上。由于气体暴露,卟啉染料的颜色变化可以在光波导的渐逝场中检测到。因此,高功率LED的光耦合到波导中。光电二极管可以检测到卟啉的颜色变化,作为解耦光强度的变化。该传感器对其他气体(如CO2,NH3,EtOH,CO或水蒸气)没有交叉敏感性。 NO2的检出限为1 ppm

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