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Gas sensing with hexafluoroisopropanol substituted phthalocyanines and vic-dioximes: a comparative study

机译:用六氟异丙醇取代的酞菁和 vic -二恶英进行气体传感的比较研究

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摘要

Phthalocyanines (Pcs) are established sensitive materials for chemical gas sensors due to their superb sensing characteristics and the achievable manifold in their analyte interaction properties. Their sorption properties are determined by the metal ion center and substituents attached to the periphery of the ring system. Similarly, vic -dioximes can be modified in their sorption properties and employed as sensitive materials. In this work, a nickel Pc and various vic -dioximes functionalized with the same hexafluoroisopropanol moiety are assessed and compared in their gas-sensing properties using the quartz crystal microbalance for the first time. This specific substituent is selected for its hydrogen bond acidity for strong interactions with analytes having corresponding sites. The synthesis and characterization of the new compounds are described. Sensor results are presented for ten selected organic compounds and the chemical warfare agent simulant dimethyl methylphosphonate (DMMP). Both compound classes exhibit good sensing performance but were found to exhibit very diverging analyte preferences, as preferential sorption of either amines or polar compounds was observed depending on the molecule type. Thus, by applying the same substituent to different base molecules, sensitive compounds with very distinct sensing properties can be realized.
机译:酞菁(Pcs)由于其卓越的传感特性和可实现的分析物相互作用特性而成为化学气体传感器的敏感材料。它们的吸附性能由金属离子中心和连接在环系统外围的取代基决定。类似地,可以改变vic-二恶英的吸附性能并用作敏感材料。在这项工作中,首次使用石英晶体微量天平评估并比较了镍Pc和被相同六氟异丙醇部分官能化的各种vic-二恶英,并比较了它们的气敏特性。选择该特定取代基的氢键酸性,以使其与具有相应位点的分析物发生强相互作用。描述了新化合物的合成和表征。给出了十种选定有机化合物和化学战剂模拟物甲基膦酸二甲酯(DMMP)的传感器结果。两种化合物均表现出良好的传感性能,但发现它们表现出非常不同的分析物偏好,因为根据分子类型观察到了胺或极性化合物的优先吸附。因此,通过将相同的取代基应用于不同的基础分子,可以实现具有非常不同的感测特性的敏感化合物。

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