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Determination of arsenic in water using fluorescent ZnO quantum dots

机译:荧光ZnO量子点测定水中砷。

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Stabiliser-free zinc oxide (ZnO) quantum dots (QDs) have been synthesised by refluxing zinc acetate dihydrate in methanol under alkaline conditions and were re-dispersed into water by centrifugation. The ultrasmall particles so obtained have been characterised by absorption and fluorescence spectroscopy, transmission electron microscopy and selected area electron diffraction studies. The as-prepared fluorescent ZnO QDs have been employed as a greener indicator for selective and ultrasensitive detection of highly toxic arsenic in aqueous solution. Since fluorescence spectroscopy is a very sensitive technique, fluorescence quenching behaviour of ZnO QDs upon addition of arsenic compounds has been utilised as a sensing platform for the quantification of arsenic at the parts-per-billion (ppb) level. The interaction of the arsenic species with the ZnO QDs has been elucidated by Fourier transform infrared spectroscopy, zeta potential measurements and dynamic light scattering studies. Three different calibration curves of arsenic(III), arsenic(V) and total arsenic [arsenic(III) + arsenic(V)] have been set up in the dynamic range of 10a€“100 ppb and the corresponding limit of detection is 27, 7 and 28 ppb, respectively. The method is free from common interference and applicable for real sample analysis.
机译:无稳定剂的氧化锌(ZnO)量子点(QDs)通过在碱性条件下在甲醇中回流乙酸锌二水合物来合成,并通过离心将其重新分散在水中。如此获得的超小颗粒已经通过吸收和荧光光谱,透射电子显微镜和选定区域电子衍射研究进行了表征。所制备的荧光ZnO量子点已被用作更环保的指示剂,用于选择性和超灵敏地检测水溶液中的剧毒砷。由于荧光光谱法是一种非常敏感的技术,因此添加砷化合物后ZnO QD的荧光猝灭行为已被用作定量十亿分之几(ppb)砷的传感平台。砷物种与ZnO量子点的相互作用已通过傅立叶变换红外光谱,ζ电位测量和动态光散射研究得以阐明。在动态范围10a–100 ppb中建立了砷(III),砷(V)和总砷[砷(III)+砷(V)]的三种不同的校准曲线,相应的检出限为27 ,分别为7和28 ppb。该方法不受常见干扰,适用于实际样品分析。

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