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首页> 外文期刊>Sensors >Highly Selective and Ultrasensitive Turn-on Luminescence Chemosensor for Mercury (II) Determination Based on the Rhodamine 6G Derivative FC1 and Au Nanoparticles
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Highly Selective and Ultrasensitive Turn-on Luminescence Chemosensor for Mercury (II) Determination Based on the Rhodamine 6G Derivative FC1 and Au Nanoparticles

机译:基于若丹明6G衍生物FC1和Au纳米粒子的用于汞(II)测定的高选择性和超灵敏开启发光化学传感器

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摘要

A method for the detection and quantitation of Hg2+ in aqueous samples by fluorescence spectroscopy is presented. It consists of a turn-on sensor developed by coupling Gold nanoparticles (AuNPs) with the rhodamine 6G derivative FC1, in which the response is generated by a mercury-induced ring-opening reaction. The AuNPs were included in order to improve the sensitivity of the method towards the analyte, maintaining its high selectivity. The method was validated in terms of linearity, precision and accuracy, and applied to the quantitation of Hg2+ in Milli-Q and tap water with and without spiked analyte. The limit of detection and quantitation were 0.15 μg·L?1 and 0.43 μg·L?1, respectively, constituting a substantial improvement of sensitivity in comparison with the previously reported detection of Hg2+ with free FC1.
机译:提出了一种通过荧光光谱法检测和定量分析水样中Hg2 +的方法。它由通过将金纳米颗粒(AuNPs)与若丹明6G衍生物FC1偶联而开发的开启传感器组成,其中响应是由汞诱导的开环反应产生的。包括了AuNP,以提高方法对分析物的灵敏度,并保持其高选择性。该方法在线性,精密度和准确性方面均得到验证,可用于定量分析有无尖峰分析物的Milli-Q和自来水中的Hg2 +。检出限和定量检出限分别为0.15μg·L?1和0.43μg·L?1,与先前报道的使用游离FC1检测Hg2 +的灵敏度相比,显着提高了灵敏度。

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