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Highly Sensitive Simultaneous Detection of Mercury and Copper Ions by Ultrasmall Fluorescent DNA-Ag Nanoclusters

机译:超小型荧光DNA-Ag纳米团簇同时灵敏地检测汞和铜离子

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摘要

Fluorescent metal nanoclusters (NCs) have given rise to a new class of fluorescent nanomaterials for the detection of heavy metals. Here, we design a simple, rapid and highly sensitive sensing nanosystem for the detection of Hg2+ and Cu2+ based on fluorescence quenching of ultrasmall DNA-Ag NCs. The fluorescence intensity of DNA-Ag NCs was selectively quenched by Hg2+ and Cu2+, and the limit of detection (LOD) was found to be 5 nM and 10 nM, respectively. The technique was renewable employment by EDTA addition and successfully applied to detection of Hg2+ and Cu2+ in domestic water samples. The quantum yield (QY) of DNA-Ag NCs was significantly higher to ~30% compared to traditional water-soluble fluorescent metal NCs. The DNA-Ag NC detection system make it potentially suitable for detecting Hg2+ and Cu2+ and monitoring water quality in a wide range of samples regulated under the Environmental Protection Agency.
机译:荧光金属纳米簇(NCs)引发了用于检测重金属的新型荧光纳米材料。在此,我们设计了一种基于超小型DNA-Ag NC荧光猝灭检测Hg 2 + 和Cu 2 + 的简单,快速,高度灵敏的传感纳米系统。 Hg 2 + 和Cu 2 + 有选择地猝灭DNA-Ag NCs的荧光强度,检测限(LOD)为5 nM和10分别为nM。该技术可通过添加EDTA进行可再生利用,并成功应用于生活用水样品中Hg 2 + 和Cu 2 + 的检测。与传统的水溶性荧光金属NC相比,DNA-Ag NC的量子产率(QY)明显更高,达到〜30%。 DNA-Ag NC检测系统使其潜在地适用于检测Hg 2 + 和Cu 2 + 以及监测环境保护署监管的各种样品中的水质。

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