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Surface molecular imprinting on CdTe quantum dots for fluorescence sensing of 4-nitrophenol

机译:表面分子印迹在CdTe量子点上用于4-硝基苯酚的荧光传感

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摘要

We tested a simple and economical approach to synthesize CdTe quantum dots (QDs). We then developed a MIP-capped CdTe QD fluorescent sensor by anchoring a molecularly imprinted polymer (MIP) layer on the surface of CdTe QDs using 3-aminopropyltriethoxysilane as the functional monomer and tetramethoxysilane as the cross-linker via a surface molecular imprinting process. The sensor possessed the sensitivity of CdTe QDs, the selectivity of the molecular imprinting technique, and a nearly spherical morphology. The fluorescence of the MIP-capped CdTe QDs can be efficiently quenched when the template 4-nitrophenol (4-NP) rebinds to the binding sites, as a result of the charge transfer from QDs (donor) to 4-NP (acceptor). MIP-capped CdTe QDs generated a significantly reduced fluorescence intensity within the initial 12 min of binding 4-NP. Under optimized conditions, the sensor presented a satisfactory linearity with 4-NP concentrations in the range of 1-30 mu M, and the detection limit was 40 nM. The sensor also successfully detected trace amounts of 4-NP in water samples, and the recovery of 4-NP in three spiked samples ranged from 95.1% to 98.1% with relative standard deviations below 4.3%. The results provide an alternative method for the development of sensors for the rapid recognition and determination of 4-NP in water samples.
机译:我们测试了一种简单经济的方法来合成CdTe量子点(QD)。然后,我们通过使用表面分子印迹过程将3-氨基丙基三乙氧基硅烷作为功能单体和四甲氧基硅烷作为交联剂,将分子印迹聚合物(MIP)锚定在CdTe QD的表面上,从而开发了MIP封端的CdTe QD荧光传感器。该传感器具有CdTe QD的灵敏度,分子印迹技术的选择性以及接近球形的形貌。当模板4-硝基苯酚(4-NP)重新结合到结合位点时,由于QD(供体)到4-NP(受体)的电荷转移,MIP封端的CdTe QD的荧光可以有效地猝灭。 MIP封端的CdTe QD在结合4-NP的最初12分钟内产生了显着降低的荧光强度。在优化的条件下,该传感器呈现出令人满意的线性度,4-NP浓度在1-30μM范围内,检测极限为40 nM。该传感器还成功检测了水样品中的痕量4-NP,三个加标样品中4-NP的回收率从95.1%到98.1%,相对标准偏差低于4.3%。结果为传感器的开发提供了另一种方法,用于快速识别和测定水样品中的4-NP。

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