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Ratiometric fluorescence molecularly imprinted sensor based on dual-emission quantum dots hybrid for determination of tetracycline

机译:基于双发射量子点杂种的比例荧光分子印迹传感器测定四环素

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摘要

A novel ratiometric fluorescence molecularly imprinted sensor based on a dual-emission quantum dot hybrid was fabricated and used as an alternative analytical tool for the detection of tetracycline. In the synthesis process, red-emitting quantum dots (r-QDs) and green-emitting quantum dots (g-QDs) were modified by two different methods. Afterward, a stepwise precipitation polymerization imprinting reaction was performed to prepare the novel ratiometric fluorescence molecularly imprinted sensor (MIP-g/r-QD sensor). The MIP-g/r-QD sensor integrated the advantages of molecularly imprinted polymers and ratiometric fluorescence probes. The specific recognition sites in the polymer layers could adsorb tetracycline molecules, and then they caused fluorescence quenching behavior of g-QDs via an electron transfer process. Under the optimal conditions, a linear relationship was obtained covering the range from 10 to 160 mu mol/L, with a correlation coefficient of 0.9976 and a high imprinting factor of about 3.3. Moreover, the novel MIP-g/r-QD sensor was successfully applied to detect tetracycline in milk samples. This work provides a new way to fabricate an efficient ratiometric fluorescence molecularly imprinted sensor based on quantum dots for convenient, fast, and highly selective and sensitive detection of organic molecules.
机译:制造基于双发射量子点杂种的新型比例荧光分子印迹传感器,并用作检测四环素的替代分析工具。在合成过程中,通过两种不同的方法改性红发量子点(R-QDS)和绿色发光量子点(G-QDS)。之后,进行逐步沉淀聚合压印反应以制备新颖的比例荧光分子印迹传感器(MIP-G / R-QD传感器)。 MIP-G / R-QD传感器集成了分子印迹聚合物和比率荧光探针的优点。聚合物层中的特异性识别位点可以吸附四环素分子,然后通过电子转移方法引起G-QD的荧光猝灭行为。在最佳条件下,获得线性关系,覆盖10至160μmmol/ l的范围,其相关系数为0.9976,并且具有约3.3的高压印因子。此外,新型MIP-G / R-QD传感器被成功地应用于检测牛奶样品中的四环素。这项工作提供了一种基于量子点制造有效的比率荧光分子印迹传感器的新方法,以方便,快速,高度选择性和敏感的有机分子检测。

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