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Ratiometric fluorescence detection of mercuric ions by sole intrinsic dual-emitting gold nanoclusters

机译:唯一固有的双发射金纳米簇对汞离子进行比例荧光检测

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Ratiometric fluorescence sensing based on intrinsic dual-emitting nanomaterials is very intriguing for their simplicity and efficacy. However, intrinsic dual-emitting gold nanocluster-based fluorescence ratiometry remains unexplored. In this work, a ratiometric fluorescence assay for detection of mercuric ions (Hg2+) has been developed using sole intrinsic dual-emitting gold nanoclusters (DE-AuNCs). The DE-AuNCs, simply synthesized by reducing chloroauric acid with an appropriate amount of glutathione, had two distinct intrinsic emission bands peaked at 610 nm and 810 nm respectively. When exposed to Hg2+, the 610 nm emission of the DE-AuNCs was remarkably quenched serving as a reporter signal, while the 810 nm emission almost kept unchanged serving as a reference signal, and thus giving a ratiometric signal. This ratiometric method showed high sensitivity and selectivity for sensing Hg2+ with low LOD down to 0.19 ppb which is quite lower than the WHO drinking-water guideline for inorganic mercury, and was successfully applied to the detection of Hg2+ in environmental water samples.
机译:基于内在双发射纳米材料的比率式荧光传感因其简单性和有效性而非常吸引人。然而,内在的基于双发射金纳米团簇的荧光比率测定法尚未探索。在这项工作中,使用唯一的固有双发射金纳米团簇(DE-AuNCs),开发了一种用于检测汞离子(Hg2 +)的比例荧光分析法。通过用适量的谷胱甘肽还原氯金酸简单合成的DE-AuNCs具有两个不同的固有发射带,分别在610 nm和810 nm处达到峰值。当暴露于Hg2 +时,DE-AuNCs的610 nm发射显着淬灭,用作报告信号,而810 nm的发射几乎保持不变,用作参考信号,因此提供了比例信号。这种比例法显示出低LOD至0.19 ppb的Hg2 +的高灵敏度和选择性,远低于WHO的无机汞饮用水准则,并已成功应用于环境水样中Hg2 +的检测。

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