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Cysteamine capped CdS quantum dots as a fluorescence sensor for the determination of copper ion exploiting fluorescence enhancement and long-wave spectral shifts

机译:半胱胺加帽的CdS量子点作为荧光传感器,用于利用荧光增强和长波光谱位移确定铜离子

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We described a turn-on fluorescence sensor for the determination of Cu2+ ions, utilizing the quantum confinement effect of cadmium sulfide quantum dots capped with cysteamine (Cys-CdS QDs). The fluorescence intensity of the Cys-CdS QDs was both enhanced and red shifted (from blue-green to yellow) in the presence of Cu2+. Fluorescence enhancement was linearly proportional to the concentration of Cu2+ in the concentration range 2 to 10 mu M. Other cations at the same concentration level did not significantly change the intensity and spectral maxima of Cys-CdS QDs, except Ag+. The limit of detection was 1.5 mu M. The sensor was applied to the determination of Cu2+ in (spiked) real water samples and gave satisfactory results, with recoveries ranging from 96.7 to 108.2%, and with RSDs ranging from 0.3 to 2.6%. (C) 2016 Elsevier B.V. All rights reserved.
机译:我们描述了一种开启荧光传感器,用于利用覆有半胱胺(Cys-CdS QDs)的硫化镉量子点的量子约束效应来测定Cu2 +离子。在存在Cu 2+的情况下,Cys-CdS QD的荧光强度既增强又红移(从蓝绿色到黄色)。荧光增强与浓度范围为2至10μM的Cu2 +呈线性比例关系。除Ag +外,相同浓度水平的其他阳离子不会显着改变Cys-CdS QD的强度和光谱最大值。检测限为1.5μM。该传感器用于测定(加标)真实水样中的Cu 2+,结果令人满意,回收率在96.7%至108.2%之间,RSD在0.3%至2.6%之间。 (C)2016 Elsevier B.V.保留所有权利。

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