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Rhenium-Based Molecular Trap as an Evanescent Wave Infrared Chemical Sensing Medium for the Selective Determination of Amines in Air

机译:hen基分子阱作为van逝波红外化学传感介质,用于选择性测定空气中的胺

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摘要

An evanescent wave infrared chemical sensor was developed to selectively detect volatile amines with heterocyclic or phenyl ring. To achieve this goal, a rhenium-based metallacycle with a "molecular-trap" structure was designed and synthesized as host molecules to selectively trap amines with heterocyclic or phenyl ring through Re amine and pi-pi interactions. To explore the trapping properties of the material, a synthesized Re-based molecular trap was treated on an IR sensing element, and wide varieties of volatile organic compounds (VOCs) were examined to establish the selectivity for detection of amines. Based on the observed IR intensities, the Re-based molecular trap favors interaction with amines as evidenced by the variation of absorption bands of the Re molecular trap. With extra pi-pi interaction force, molecules, such as pyridine and benzylamine, could be detected. After optimization of the parameters for IR sensing, a rapid response in the detection of pyridine was observed, and the linear ranges were generally up to 10 mg/L with a detection limit around 5.7 mu g/L. In the presence of other VOCs, the recoveries in detection of pyridine were all close to 100%.
机译:开发了一种van逝波红外化学传感器,以选择性地检测具有杂环或苯环的挥发性胺。为了实现该目标,设计并合成了具有“分子陷阱”结构的based基金属环作为主体分子,以通过Re胺和pi-pi相互作用选择性地捕获具有杂环或苯环的胺。为了探索材料的捕获特性,在红外传感元件上处理了合成的基于Re的分子陷阱,并检查了多种挥发性有机化合物(VOC)以建立检测胺的选择性。基于观察到的IR强度,基于Re的分子陷阱有利于与胺的相互作用,这通过Re分子陷阱的吸收带的变化来证明。通过额外的pi-pi相互作用力,可以检测到分子,例如吡啶和苄胺。优化红外传感参数后,观察到吡啶检测快速响应,线性范围通常高达10 mg / L,检测极限约为5.7μg / L。在存在其他VOC的情况下,吡啶检测的回收率均接近100%。

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