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Nanoparticles as scaffolds for FRET-based ratiometric detection of mercury ions in water with QDs as donors

机译:纳米颗粒作为支架,用于以QD为供体的基于FRET的比率检测水中的汞离子

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摘要

The quenching of quantum dots' emission by some analytes (Hg ~(2+), Pb ~(2+), etc.) has long been hindering the fabrication of QD-based 'turn-on' or ratiometric fluorescent sensors for these analytes. In this study, we demonstrate a facile solution for constructing a robust FRET-based ratiometric sensor for Hg ~(2+) detection in water with CdTe QDs as the donor. By using the reverse microemulsion approach, CdTe QDs were first embedded into nanosized silica particles, forming the QDs/silica cores, a positively charged ultrathin spacer layer was then deposited on each QDs/silica core, followed by the coating of a mercury ion probe on the particle surfaces. The resultant multilayered QDs/silica composite nanoparticles are dispersible in HEPES buffered water; and in the presence of mercury ions, the QDs inside the nanoparticles will not be quenched by mercury ions due to the existence of the positively charged spacer layer, but can transfer their excited energy to the acceptors (probe/Hg 2+ complex), thus achieving the FRET-based ratiometric sensing for mercury ions in totally aqueous media. With its detection limit of 260 nM, this QD-based sensor exhibits high selectivity toward mercury ion and can be used in a wide pH range. This strategy may be used to construct QDs-based ratiometric assays for other ions which quench the emission of QDs.
机译:长期以来,某些分析物(Hg〜(2 +),Pb〜(2+)等)对量子点发射的猝灭一直阻碍着针对这些分析物的基于QD的“开启”或比例荧光传感器的制造。 。在这项研究中,我们演示了一种简便的解决方案,该解决方案可构造一个可靠的基于FRET的比率式传感器,用于以CdTe QDs作为供体的水中Hg〜(2+)检测。通过使用反向微乳液方法,将CdTe量子点首先嵌入纳米级二氧化硅颗粒中,形成量子点/二氧化硅核,然后在每个量子点/二氧化硅核上沉积带正电的超薄间隔层,然后在其上涂覆汞离子探针粒子表面。所得的多层QD /二氧化硅复合纳米颗粒可分散在HEPES缓冲水中。并且在存在汞离子的情况下,由于存在带正电的间隔层,纳米粒子内部的量子点将不会被汞离子淬灭,而是可以将其激发能转移至受体(探针/ Hg 2+络合物),因此实现了基于FRET的比例感测,用于完全水性介质中的汞离子。这种基于QD的传感器具有260 nM的检出限,对汞离子具有高选择性,可以在很宽的pH范围内使用。该策略可用于构建其他离子的基于QDs的比率分析,从而淬灭QDs的发射。

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