Poorahong Sujittra, Niammusik Anusorn, Chaykleang Pawinee, Kanatharana Pproespichaya, Thavarungkul Panote, Thammakhet-Buranachai Chongdee
a Trace Analysis and Biosensor Research Center , Prince of Songkla University , Hat Yai , Songkhla , Thailand.
b Center of Excellence for Innovation in Chemistry, Faculty of Science , Prince of Songkla University , Hat Yai , Songkhla , Thailand.
J Environ Sci Health A Tox Hazard Subst Environ Eng. 2017 Sep 19;52(11):1082-1088. doi: 10.1080/10934529.2017.1338903. Epub 2017 Jul 28.
This paper reports the development of a sensitive, high-throughput colorimetric method for the detection of trace mercuric ions (Hg). The method is based on the binding of the analyte to gold nanoparticles (AuNPs) modified with Tween-20. Tween-20 was used as a nonionic stabilizer to allow a good dispersion of AuNPs in solution. When mercuric ions were added to the solution, they replaced the Tween-20 stabilizer on the surface of the AuNPs due to their stronger binding affinity. This caused the NPs to aggregate and the color of the solution to change from red to blue. The quantitative analysis of Hg was achieved by plotting the Red Green Blue (RGB) values of the scanned images of the analyte samples in the AuNP solution against concentrations of Hg. Since the reaction was carried out in 96-well plates, ninety-six samples were analyzed simultaneously, reducing the cost and time of analysis. The experimental parameters optimized were the concentrations of Tween-20 and NaCl, the reactants ratio, and the incubation time. Under the optimum conditions, the calibration plot of the assay was linear over an Hg concentration range of 0.10-2.00 mg L, and the detection limit was 0.050 mg L (S/N = 3). The selectivity of the technique was high with no significant colorimetric responses to the presence of 100-fold excesses of other metal ions. Quantification was validated with Hg standard solutions and spiked tap and waste water samples, and the accuracy of the technique was confirmed. The developed technique is simple and cost effective because it requires no complicated instruments, yet the results demonstrate it to be a very powerful technique with the potential to be developed for on-site mercury detection.
本文报道了一种用于检测痕量汞离子(Hg)的灵敏、高通量比色法的开发。该方法基于分析物与用吐温 - 20修饰的金纳米颗粒(AuNPs)的结合。吐温 - 20用作非离子稳定剂,以使AuNPs在溶液中良好分散。当向溶液中加入汞离子时,由于它们更强的结合亲和力,它们取代了AuNPs表面的吐温 - 20稳定剂。这导致纳米颗粒聚集,溶液颜色从红色变为蓝色。通过将AuNP溶液中分析物样品的扫描图像的红、绿、蓝(RGB)值相对于Hg浓度作图,实现了Hg的定量分析。由于反应在96孔板中进行,可同时分析96个样品,降低了分析成本和时间。优化的实验参数是吐温 - 20和NaCl的浓度、反应物比例以及孵育时间。在最佳条件下,该测定的校准曲线在Hg浓度范围为0.10 - 2.00 mg/L时呈线性,检测限为0.050 mg/L(S/N = 3)。该技术的选择性高,对100倍过量的其他金属离子的存在没有明显的比色响应。用Hg标准溶液以及加标自来水和废水样品验证了定量,证实了该技术的准确性。所开发的技术简单且具有成本效益,因为它不需要复杂的仪器,然而结果表明它是一种非常强大的技术,具有开发用于现场汞检测的潜力。