Materials Chemistry Research Unit, Department of Chemistry and Center of Excellence for Innovation in Chemistry, Faculty of Science, Khon Kaen University, Khon Kaen 40002, Thailand.
Talanta. 2013 Feb 15;105:320-6. doi: 10.1016/j.talanta.2012.10.052. Epub 2012 Oct 22.
A new fluorescence sensor for detection of cyanide ions (CN(-)) in aqueous media based on the recovered fluorescence of cysteamine capped CdS quantum dots [Cys-CdS QDs]-Cu(2+) system was proposed. The fluorescence intensity of Cys-CdS QDs was quenched by Cu(2+) due to the binding of Cu(2+) to cysteamine on the surface of the QDs. The degree of fluorescence quenching was proportional to the concentration of Cu(2+). However, in the presence of CN(-), the fluorescence intensity of Cys-CdS QDs was found to be efficiently recovered. Experimental results showed that the pH of the buffer solution and the concentration of Cu(2+) affected the fluorescence intensity upon adding CN(-). Under the optimal condition, the recovered fluorescence intensity was linearly proportional to the increasing CN(-) concentration in the range 2.5-20 μM. The limit of detection and the limit of quantification were found to be 1.13 μM and 3.23 μM, respectively. In addition, among the tested ions, only CN(-) could turn on the fluorescence intensity suggesting that the [Cys-CdS QDs]-Cu(2+) system was a highly selective sensor for CN(-). Moreover, this proposed sensor was demonstrated to detect CN(-) in drinking water with satisfactory results.
基于巯基半胱氨酸(Cysteamine)封端的硫化镉量子点[Cys-CdS QDs]-Cu(2+)体系荧光恢复的新荧光传感器,用于检测水相介质中的氰根离子(CN(-))。由于 Cu(2+)与量子点表面上的巯基半胱氨酸结合,Cys-CdS QDs 的荧光强度被 Cu(2+)猝灭。荧光猝灭的程度与 Cu(2+)的浓度成正比。然而,在存在 CN(-)的情况下,发现 Cys-CdS QDs 的荧光强度可以有效恢复。实验结果表明,缓冲溶液的 pH 值和 Cu(2+)的浓度影响加入 CN(-)时的荧光强度。在最佳条件下,恢复的荧光强度与 2.5-20 μM 范围内增加的 CN(-)浓度呈线性比例关系。检测限和定量限分别为 1.13 μM 和 3.23 μM。此外,在测试的离子中,只有 CN(-)可以打开荧光强度,表明 [Cys-CdS QDs]-Cu(2+)体系是一种对 CN(-)具有高选择性的传感器。此外,该传感器已成功用于检测饮用水中的 CN(-),结果令人满意。