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 Oct 15;115:849-56. doi: 10.1016/j.talanta.2013.06.053. Epub 2013 Jul 2.
Cadmium sulfide quantum dots capped with cysteamine (Cys-CdS QDs) were demonstrated as a selective fluorescence probe for sensing of free trace silver ions. The fluorescence intensity of the Cys-CdS QDs can be enhanced only in the presence of free Ag(+) and the fluorescence spectrum was slightly red shift from the original spectra. In addition, the fluorescence intensities were linearly increased upon increasing Ag(+) concentration. At the optimized condition for Ag(+) detection, when adding other metal ions to the Cys-CdS QDs solution, fluorescence spectra of Cys-CdS QDs did not change significantly revealing good selectivity of the sensors towards Ag(+). The working linear concentration range was found to be 0.1-1.5 µM with LOD of 68 nM. The proposed sensor was then applied to detect free Ag(+) in the silver nanoparticles solution. The results showed that the proposed sensor can be efficiently used with good accuracy and precision providing the simple method for detection of free Ag(+) in silver nanoparticles of quality control products.
半胱胺(Cys-CdS QDs)包覆的硫化镉量子点被证明是一种选择性荧光探针,可用于检测游离痕量银离子。只有在存在游离 Ag(+)的情况下,Cys-CdS QDs 的荧光强度才会增强,并且荧光光谱会从原始光谱略微红移。此外,随着 Ag(+)浓度的增加,荧光强度呈线性增加。在优化的 Ag(+)检测条件下,当将其他金属离子加入到 Cys-CdS QDs 溶液中时,Cys-CdS QDs 的荧光光谱没有明显变化,表明该传感器对 Ag(+)具有良好的选择性。工作线性浓度范围为 0.1-1.5 µM,LOD 为 68 nM。然后将该传感器用于检测银纳米粒子溶液中的游离 Ag(+)。结果表明,该传感器可有效用于检测银纳米粒子中游离 Ag(+),准确度和精密度均良好,为质量控制产品中银纳米粒子的游离 Ag(+)检测提供了一种简单的方法。