Department of Chemistry, Gandhigram Rural Institute, Gandhigram, 624 302 Dindigul, Tamilnadu, India.
J Hazard Mater. 2012 Apr 30;213-214:193-9. doi: 10.1016/j.jhazmat.2012.01.079. Epub 2012 Feb 2.
This manuscript describes a highly selective and ultra sensitive determination of Hg(II) in aqueous solution using functionalized mercaptothiadiazole capped silver nanoparticles (AgNPs) by spectrofluorimetry. We have synthesized 2,5-dimercapto-1,3,4-thiadiazole (DMT), 2-mercapto-5-methyl-1,3,4-thiadiazole (MMT) and 2-mercapto-5-amino-1,3,4-thiadiazole (AMT) capped AgNPs by wet chemical method. Among these AgNPs, DMT capped AgNPs (DMT-AgNPs) were more stable and highly fluorescent than the other two AgNPs. DMT-AgNPs show the emission maximum at 677 nm while exciting at 400 nm. After the addition of Hg(II), the emission intensity was decreased at 677 nm. The observed decreased emission intensity was ascribed to the aggregation of AgNPs and it was confirmed by TEM. Based on the decrease in emission intensity, the concentration of Hg(II) was determined. The lowest detection limit (LOD=3S/m) of 1.0 pg L(-1) was achieved for the first time using DMT-AgNPs by spectrofluorimetry. The quantum yield (φ(F)), Stern-Volmer constant (K(SV)), Gibbs free energy changes (ΔG°), association constant (K(f)) were calculated and the quenching mechanism also was discussed. Finally, the proposed method was successfully utilized for the determination of Hg(II) in river water, industrial effluent water and tap water samples. The obtained results were fairly matches with the ICP-AES method.
本文描述了一种使用功能化巯基噻二唑封端的银纳米粒子(AgNPs)通过荧光光谱法在水溶液中对 Hg(II) 进行高选择性和超灵敏测定的方法。我们通过湿化学法合成了 2,5-二巯基-1,3,4-噻二唑(DMT)、2-巯基-5-甲基-1,3,4-噻二唑(MMT)和 2-巯基-5-氨基-1,3,4-噻二唑(AMT)封端的 AgNPs。在这些 AgNPs 中,DMT 封端的 AgNPs(DMT-AgNPs)比其他两种 AgNPs 更稳定且具有更高的荧光性。DMT-AgNPs 在 400nm 激发时发射最大波长为 677nm。加入 Hg(II)后,在 677nm 处的发射强度降低。观察到的发射强度降低归因于 AgNPs 的聚集,这通过 TEM 得到了证实。基于发射强度的降低,可以确定 Hg(II)的浓度。使用 DMT-AgNPs 通过荧光光谱法首次实现了 1.0pgL(-1)的最低检测限(LOD=3S/m)。计算了量子产率(φ(F))、斯特恩-沃尔默常数(K(SV))、吉布斯自由能变化(ΔG°)、缔合常数(K(f)),并讨论了猝灭机制。最后,该方法成功用于河水、工业废水和自来水样品中 Hg(II)的测定。所得结果与 ICP-AES 法相当吻合。