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Metallo-porphyrin zinc as gas sensitive material for colorimetric gas sensors on planar optical waveguides

机译:金属卟啉锌作为气体敏感材料,用于平面光波导上的比色气体传感器

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摘要

The presented work focuses on the investigations of a metallo-porphyrin and its gasochromic behavior to different gases. Gasochromic materials change their color while they are exposed to a certain gas. So they offer the possibility to develop highly selective chemical gas sensors and gas sensing systems. The focus of this work is the characterization of the metallo-porphyrin 5, 10, 15, 20-tetraphenylporphyrin-zinc (ZnTPP). Nonetheless, there is a wide range of other possible metallo-porphyrins. When embedded into a polymeric matrix (PVC) a color change to the toxic gas NO_2 can be detected. To develop a standalone gas sensor, the porphyrin/PVC matrix is deposited onto a planar optical waveguide. The color change of the porphyrin dye 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 a variation of the out-coupled light intensity. The sensor shows no unwished sensitivities to CO_2 and CO and only low to NH_3. NO_2 is detectable with a resolution of 1 ppm.
机译:提出的工作重点是对金属卟啉及其对不同气体的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,它们为开发高度选择性的化学气体传感器和气体传感系统提供了可能性。这项工作的重点是金属卟啉5、10、15、20-四苯基卟啉锌(ZnTPP)的表征。但是,还有许多其他可能的金属卟啉。当嵌入聚合物基体(PVC)中时,可以检测到有毒气体NO_2的颜色变化。为了开发独立的气体传感器,将卟啉/ PVC基质沉积到平面光波导上。可以在光波导的渐逝场中检测卟啉染料的颜色变化。因此,高功率LED的光被耦合到波导中。光电二极管可以检测出卟啉的颜色变化,作为出射光强度的变化。该传感器对CO_2和CO都没有不希望的灵敏度,对NH_3的灵敏度很低。 NO_2的检测分辨率为1 ppm。

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