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Surface-enhanced Raman scattering in nanoliter droplets: towards high-sensitivity detection of mercury (II) ions

机译:纳升液滴中的表面增强拉曼散射:旨在高灵敏度检测汞(II)离子

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摘要

We report a new method for the trace analysis of mercury (II) ions in water. The approach involves the use of droplet-based microfluidics combined with surface-enhanced Raman scattering (SERS) detection. This novel combination provides both fast and sensitive detection of mercury (II) ions in water. Specifically, mercury (II) ion detection is performed by using the strong affinity between gold nanoparticles and mercury (II) ions. This interaction causes a change in the SERS signal of the reporter molecule rhodamine B that is a function of mercury (II) ion concentration. To allow both reproducible and quantitative analysis, aqueous samples are encapsulated within nanoliter-sized droplets. Manipulation of such droplets through winding microchannels affords rapid and efficient mixing of the contents. Additionally, memory effects, caused by the precipitation of nanoparticle aggregates on channel walls, are removed since the aqueous droplets are completely isolated by a continuous oil phase. Quantitative analysis of mercury (II) ions was performed by calculating spectral peak area of rhodamine B at 1,647 cm?1. Using this approach, the calculated concentration limit of detection was estimated to be between 100 and 500 ppt. Compared with fluorescence-based methods for the trace analysis of mercury (II) ions, the detection sensitivities were enhanced by approximately one order of magnitude. The proposed analytical method offers a rapid and reproducible trace detection capability for mercury (II) ions in water.
机译:我们报告了一种痕量分析水中汞(II)离子的新方法。该方法涉及结合使用基于液滴的微流体技术和表面增强拉曼散射(SERS)检测。这种新颖的组合可以快速,灵敏地检测水中的汞(II)离子。具体地,通过使用金纳米颗粒和汞(II)离子之间的强亲和力来进行汞(II)离子检测。这种相互作用导致报告分子若丹明B的SERS信号发生变化,该变化是汞(II)离子浓度的函数。为了能够进行重现性和定量分析,将水性样品封装在纳升大小的液滴中。通过缠绕的微通道对这些液滴的处理提供了内容物的快速有效混合。另外,由于水性液滴被连续的油相完全隔离,因此消除了由纳米颗粒聚集体在通道壁上沉淀引起的记忆效应。通过计算若丹明B在1,647 cm?1处的光谱峰面积来进行汞(II)离子的定量分析。使用这种方法,计算出的检测浓度极限估计在100和500 ppt之间。与基于荧光的痕量汞(II)分析方法相比,检测灵敏度提高了大约一个数量级。所提出的分析方法为水中的汞(II)离子提供了快速且可重复的痕量检测能力。

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