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An Optical Fiber Sensor Based on Fluorescence Lifetime for the Determination of Sulfate Ions

机译:一种基于荧光寿命的光纤传感器用于测定硫酸根离子

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摘要

A new optical fiber sensor based on the fluorescence lifetime was prepared for specific detection of sulfate ion concentration, where 1,1′-(anthracene-9,10-diylbis(methylene))bis(3-(dodecylcarbamoyl)pyridin-1-ium) acted as the sulfate fluorescent probe. The probe was immobilized in a porous cellulose acetate membrane to form the sensitive membrane by the immersion precipitation method, and polyethylene glycol 400 acted as a porogen. The sensing principle was proven, as a sulfate ion could form a complex with the probe through a hydrogen bond, which led to structural changes and fluorescence for the probe. The signals of the fluorescence lifetime data were collected by the lock-in amplifier and converted into the phase delay to realize the detection of sulfate ions. Based on the phase-modulated fluorometry, the relationship between the phase delay of the probe and the sulfate ion concentration was described in the range from 2 to 10 mM. The specificity and response time of this optical fiber sensor were also researched.
机译:制备了一种基于荧光寿命的新光纤传感器,用于特异性检测硫酸根离子浓度,其中1,1' - (蒽-9,10-亚基(亚甲基))双(3-(十二烷基氨基甲酰基)吡啶-1-Ium )用作硫酸盐荧光探针。将探针固定在多孔纤维素乙酸盐膜中,通过浸渍沉淀法形成敏感膜,聚乙二醇400用作孔剂。被证明的感测原理被证明,硫酸根离子可以通过氢键形成探针的复合物,这导致探针的结构变化和荧光。通过锁定放大器收集荧光寿命数据的信号,并转化为相延迟以实现硫酸根离子的检测。基于相调位荧光测定法,探针相位延迟与硫酸根离子浓度之间的关系在2至10mm的范围内。还研究了该光纤传感器的特异性和响应时间。

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