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A Novel Surface-Tethered Double-Signal Electrochemiluminescence Sensor Based on Luminol@Au and CdS Quantum Dots for Mercury Ion Detection

机译:基于luminol@au和用于汞离子检测的CDS量子点的新型表面束缚双信号电化学传感器

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摘要

A novel surface-tethered double-signals electrochemiluminescence(ECL)sensor has been developed for the detection of mercury(II)ions(Hg~(2+)).Firstly,cysteamine functionalized CdS quantum dots(CdS QDs-Cys)as one of ECL nanoprobes were deposited onto the glass carbon electrode.Then electrode was modified with carboxylated thymine via the carboxyl groups of thymine and amino groups of CdS QDs-Cys.Due to the specific recognition between thymine and Hg~(2+),the above electrode acted as the substrate to capturing target Hg~(2+),which could further bind luminol@Au-Cys-T multifunctional nanoarchitecture.It was found that the ECL intensity of luminol and CdS QDs both increased with the increasing of mercury ion concentration.Under the optimum condition,the logarithm of the ratio of two signals was linearly proportionally to the logarithmic concentrations of Hg~(2+)in the range 0.005 ~ 2.5 nM with a limit of detection of 0.002 nM(S/N=3).The novel sensor displayed good reproducibility and sensitivity and provided an alternative analytical approach for the following research.
机译:已经开发了一种新型的表面束缚双信号电化学传感器(ECL)传感器,用于检测汞(II)离子(Hg〜(2+))。首先,Cysteamine官能化CDS量子点(CDS QDS-CYS)作为其中一种将ECL纳米探针沉积到玻璃碳电极上。然后用羧化胸腺氨酸通过胸腺氨酸的羧基和CDS QDS-CYS的氨基氨基甲基修饰。充当捕获靶标Hg〜(2+)的底物,它可以进一步结合Luminol@au-cys-t多功能纳米结构。它发现Luminol和CDS QD的ECL强度都随着汞离子浓度的增加而增加。在最佳条件下,两个信号的比率与Hg〜(2+)的对数浓度在0.005〜2.5 nm的范围内线性性成正比,并且检测到0.002 nm的极限(s/n = 3)。新型传感器显示出良好的可重复性和灵敏度VITY并为以下研究提供了另一种分析方法。

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