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Investigation of Gasochromic Rhodium Complexes Towards Their Reactivity to CO and Integration into an Optical Gas Sensor for Fire Gas Detection

机译:气致变色铑配合物对CO的反应性研究并集成到用于火灾气体检测的光学气体传感器中

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摘要

The detection of the toxic gas carbon monoxide (CO) in the low ppm range is required in different applications. We present a study of the reactivity of different gasochromic rhodium complexes towards the toxic gas carbon monoxide (CO). Therefore, variations of binuclear rhodium complexes with different ligands were prepared. They were characterized by FTIR spectroscopy, 1H NMR spectroscopy, and differential scanning calorimetry. All complexes are spectroscopically distinguishable and temperature stable up to at least 187 °C. The gasochromic behavior of all different compounds was tested. Therefore, the compounds were dissolved in toluene and exposed to 100 ppm CO for 10 min to investigate their gas sensitivity and reaction velocity. The changes in the transmission spectra were recorded by UV/vis spectroscopy. Furthermore, a significant influence of the solvent to the color dyes’ gasochromic reaction and behavior was observed. After characterization, one complex was transferred as sensing element into an optical gas sensor. Two different measurement principles (reflection- and waveguide-based) were built up and tested towards their capability as gasochromic CO sensors. Finally, different gas-dependent measurements were carried out.
机译:在不同的应用中需要检测低ppm范围的有毒气体一氧化碳(CO)。我们目前对不同气致变色铑配合物对有毒气体一氧化碳(CO)的反应性的研究。因此,制备了具有不同配体的双核铑配合物。通过FTIR光谱, 1 H NMR光谱和差示扫描量热法对其进行了表征。所有配合物在光谱上都可以区分,并且在至少187°C的温度下稳定。测试了所有不同化合物的气致变色行为。因此,将化合物溶解在甲苯中,并暴露于100 ppm CO中10分钟,以研究其气体敏感性和反应速度。透射光谱的变化通过UV /可见光谱法记录。此外,观察到溶剂对染料的气致变色反应和行为的显着影响。表征后,将一种配合物作为传感元件转移到光学气体传感器中。建立了两种不同的测量原理(基于反射和基于波导),并针对它们作为气致变色CO传感器的功能进行了测试。最后,进行了不同的气体相关测量。

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