Anhui Key Laboratory of Chemo-Biosensing, College of Chemistry and Materials Science, Anhui Normal University, No. 1 Renmin Road, Wuhu 241000, PR China.
Talanta. 2010 Nov 15;83(1):139-44. doi: 10.1016/j.talanta.2010.08.052. Epub 2010 Sep 22.
With the biomolecule glutathione (GSH) as a capping ligand, Eu(3+)-doped cadmium sulfide composite nanoparticles were successfully synthesized through a straightforward one-pot process. An efficient fluorescence energy transfer system with CdS nanoparticles as energy donor and Eu(3+) ions as energy accepter was developed. As a result of specific interaction, the fluorescence intensity of Eu(3+)-doped CdS nanoparticles is obviously reduced in the presence of Hg(2+). Moreover, the long fluorescent lifetime and large Stoke's shift of europium complex permit sensitive fluorescence detection. Under the optimal conditions, the fluorescence intensity of Eu(3+) at 614 nm decreased linearly with the concentration of Hg(2+) ranging from 10 nmol L(-1) to 1500 nmol L(-1), the limit of detection for Hg(2+) was 0.25 nmol L(-1). In addition to high stability and reproducibility, the composite nanoparticles show a unique selectivity towards Hg(2+) ion with respect to common coexisting cations. Moreover, the developed method was applied to the detection of trace Hg(2+) in aqueous solutions. The probable mechanism of reaction between Eu(3+)-doped CdS composite nanoparticles and Hg(2+) was also discussed.
以生物分子谷胱甘肽 (GSH) 作为盖帽配体,通过简单的一锅法成功合成了掺铕 (Eu(3+)) 的硫化镉复合纳米粒子。开发了一种以 CdS 纳米粒子作为能量供体和 Eu(3+) 离子作为能量受体的高效荧光能量转移体系。由于特异性相互作用,在 Hg(2+) 存在下,掺 Eu(3+) 的 CdS 纳米粒子的荧光强度明显降低。此外,铕配合物的长荧光寿命和大斯托克斯位移允许灵敏的荧光检测。在最佳条件下,Eu(3+) 在 614nm 处的荧光强度随 Hg(2+)浓度从 10nmol L(-1)至 1500nmol L(-1)线性降低,Hg(2+)的检出限为 0.25nmol L(-1)。除了高稳定性和重现性外,复合纳米粒子对 Hg(2+) 离子表现出独特的选择性,相对于常见的共存阳离子。此外,还将开发的方法应用于水溶液中痕量 Hg(2+) 的检测。还讨论了 Eu(3+)-掺杂 CdS 复合纳米粒子与 Hg(2+) 之间反应的可能机制。