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Chemosensory Performance of Molecularly Imprinted Fluorescent Conjugated Polymer Materials

机译:分子印迹荧光共轭聚合物材料的化学传感性能

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摘要

Fluorescent conjugated polymers are an attractive basis for the design of low detection limit sensing devices owing to their intrinsic signal amplification capability. A simple and universal method to rationally control or fine-tune the chemodetection selectivity of conjugated polymer materials toward a desired analytical target would further benefit their applications. In a quest of such a method we investigated a general approach to cross-linked molecularly imprinted fluorescent conjugated polymer (MICP) materials that possess an intrinsic capability for signal transduction and have potential to enhance selectivity and sensitivity of sensor devices based on conjugated polymers. To study these capabilities, we prepared an MICP material for the detection of 2,4,6-trinitrotoluene and related nitroaromatic compounds. We found the imprinting effect in this material to be based on analyte shape/size recognition being substantial and generally overcoming other competing thermodynamically determined trends. The described molecularly imprinted fluorescent conjugated polymers show remarkable air stability and photostability, high fluorescence quantum yield, and reversible analyte binding and therefore are advantageous for sensing applications due to the ability to "preprogram" their detection selectivity through a choice of an imprinted template.
机译:荧光共轭聚合物因其固有的信号放大能力而成为设计低检测限传感设备的诱人基础。合理控制或微调共轭聚合物材料对所需分析目标物的化学检测选择性的简单通用方法将进一步有益于其应用。为了寻求这种方法,我们研究了一种交联的分子印迹荧光共轭聚合物(MICP)材料的通用方法,该材料具有固有的信号转导能力,并且有可能增强基于共轭聚合物的传感器设备的选择性和灵敏度。为了研究这些功能,我们准备了一种MICP材料,用于检测2,4,6-三硝基甲苯和相关的硝基芳族化合物。我们发现这种材料上的烙印效果是基于充分的分析物形状/尺寸识别,并且通常可以克服其他竞争性热力学确定的趋势。所述的分子印迹荧光共轭聚合物显示出显着的空气稳定性和光稳定性,高荧光量子产率和可逆的分析物结合,因此由于能够通过选择印迹模板来“预编程”其检测选择性,因此对于传感应用是有利的。

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