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The design of functionalized silicone polymers for chemical sensor detection of nitroaromatic compounds

机译:用于硝基芳香族化合物化学传感器检测的功能化有机硅聚合物的设计

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A series of novel chemoselective polymers have been designed, synthesized, characterized, and evaluated as sensor coatings for the detection of polynitroaromatic compounds. These polymers have been evaluated as thin sorbent coatings on surface acoustic wave (SAW) devices for their vapor sorption and selectivity properties. The most promising materials tested, include siloxane polymers functionalized with acidic pendant groups that are complimentary in their solubility properties for nitroaromatic compounds. The most sensitive of the new polymers exhibit SAW sensor detection limits for nitrobenzene and 2,4-dinitrotoluene at 3 parts per billion (ppb) and 235 parts per trillion (ppt) respectively. Optimized polymers exhibit low water vapor sorption, and rapid signal kinetics for nitrobenzene, reaching 90% of signal response in 4 seconds. Studies with an in-situ infrared spectroscopy technique are used to determine the mechanism of interaction between nitroaromatic compounds and the chemoselective polymer.
机译:已经设计,合成,表征和评估了一系列新颖的化学选择性聚合物,作为检测多硝基芳族化合物的传感器涂层。这些聚合物已被评估为表面声波(SAW)设备上的薄吸附剂涂层,因为它们具有蒸气吸附和选择性特性。测试过的最有前途的材料包括用酸性侧基官能化的硅氧烷聚合物,它们对硝基芳族化合物的溶解性互补。在最敏感的新型聚合物中,SAW传感器对硝基苯和2,4-二硝基甲苯的检测极限分别为十亿分之3(ppb)和235万亿分(ppt)。优化的聚合物表现出低的水蒸气吸附性,并具有快速的硝基苯信号动力学,可在4秒内达到90%的信号响应。原位红外光谱技术的研究被用于确定硝基芳族化合物与化学选择性聚合物之间相互作用的机理。

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