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首页> 外文期刊>Journal of Molecular Liquids >Ternary deep eutectic solvent modified cadmium selenide quantum dots as a selective fluorescent probe for sensing of uranyl ions in water samples
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Ternary deep eutectic solvent modified cadmium selenide quantum dots as a selective fluorescent probe for sensing of uranyl ions in water samples

机译:将稀硒酸亚硒酸溶剂改性甲二醇酸镉量子点作为选择性荧光探针,用于检测水样中的铀酰离子

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A single step hydrothermal approach for the synthesis of CdSe QDs using green precursor materials with the assistance of urea-thioglycolic acid-choline chloride ternary deep eutectic solvent (IDES-CdSe QDs) in an aqueous solution is reported. The fluorescent TDES-CdSe QDs probe was successfully applied to the fast and selective detection of uranyl ions. It was found that the fluorescence emission of the probe was dramatically quenched by uranyl ions, while other ions had no significant influence on the fluorescence intensity of the DES-CdSe QDs. The nanoprobe was systematically characterized by FTIR, XRD, TEM and EDX analysis. Some key factors affecting the performance of TDES-CdSe QDs probe were optimized using response surface methodology based on face centered central composite design. Under the optimal conditions, the DES-CdSe QDs probe provided a linear response to uranyl ions in the concentration range from 10 to 500 nM with a limit of detection 5.7 nM. The relative standard deviation (RSD%) of the developed method for live replicate determinations of uranyl ions at 100 nM was estimated to be 1.9%. In addition, the proposed method was successfully explored to the uranyl ions quantitation in environmentally water samples and desirable results were achieved. (C) 2020 Elsevier B.V. All rights reserved.
机译:报道了在水溶液中使用绿色前体材料合成CDSE QDS的单步水温方法,在水溶液中使用尿素 - 硫代乙酸 - 胆碱氯化物三元深对共晶溶剂(IDES-CDSE QDS)。荧光TDES-CDSE QDS探针成功地应用于铀酰离子的快速和选择性检测。发现探针的荧光发射被铀酰离子显着猝灭,而其他离子对DES-CDSE QD的荧光强度没有显着影响。通过FTIR,XRD,TEM和EDX分析系统地进行了纳泊骨瓣。基于面对中心复合设计的响应表面方法优化了影响TDES-CDSE QDS探针性能的一些关键因素。在最佳条件下,DES-CDSEQDS探针提供了对浓度范围内的铀离子的线性响应,其具有10至500nm的浓度为5.7nm。估计在100nm下铀离子的实时复制测定方法的相对标准偏差(RSD%)估计为1.9%。此外,将所提出的方法成功探索于环状水上的铀酰离子定量,并达到了所需的结果。 (c)2020 Elsevier B.v.保留所有权利。

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