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Detection of Ethanol in Alcoholic Beverages or Vapor Phase Using Fluorescent Molecules Embedded in a Nanofibrous Polymer

机译:使用嵌入纳米纤维聚合物中的荧光分子检测酒精饮料或气相中的乙醇

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An alcohol sensor was developed using the solid-state fluorescence emission of terphenyl-ol (TPhOH) derivatives. Admixtures of TPhOH and sodium carbonate exhibited bright sky-blue fluorescence in the solid state upon addition of small quantities of ethanol. A series of terphenol derivatives was synthesized, and the effects of solvent polarities and the structures of these pi-conjugated systems on their fluorescence were systematically investigated by using fluorescence spectroscopy. In particular, pi-extended TPhOHs and TPhOHs containing electron-withdrawing groups exhibited significant solvatochromism, and fluorescence colors varied from blue to red. Detection of ethanol contents in alcohol beverages (detection limit similar to 5 v/v %) was demonstrated using different TPhOHs revealing the effect of molecular structure on sensing properties. Ethanol contents in alcoholic beverages could be estimated from the intensity of the fluorescence elicited from the TPhOHs. Moreover, when terphenol and Na2CO3 were combined with a water-absorbent polymer, ethanol could be detected at lower concentrations. Detection of ethanol vapor (8 v/v % in air) was also accomplished using a nanofibrous polymer scaffold as the immobilized sensing film.
机译:使用三苯酚(TPhOH)衍生物的固态荧光发射技术开发了酒精传感器。加入少量乙醇后,TPhOH和碳酸钠的混合物在固态下显示出明亮的天蓝色荧光。合成了一系列的三元酚衍生物,并利用荧光光谱系统地研究了溶剂极性和这些π共轭体系的结构对其荧光的影响。尤其是,pi扩展的TPhOH和包含吸电子基团的TPhOH表现出显着的溶剂变色现象,荧光颜色从蓝色到红色不等。使用不同的TPhOH可以检测酒精饮料中的乙醇含量(检测极限类似于5 v / v%),从而揭示了分子结构对传感特性的影响。酒精饮料中的乙醇含量可以根据TPhOH发出的荧光强度进行估算。此外,将三聚酚和Na2CO3与吸水聚合物混合使用时,可以检测到较低浓度的乙醇。还使用纳米纤维聚合物支架作为固定的传感膜来完成乙醇蒸气(空气中8 v / v%)的检测。

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