Analytical and Food Chemistry Department, Faculty of Chemistry, University of Vigo, Campus As Lagoas-Marcosende s/n, 36310, Vigo, Spain.
Mikrochim Acta. 2018 Mar 13;185(4):221. doi: 10.1007/s00604-018-2760-3.
This work reports on the implementation of gold nanorods (AuNRs) in headspace solvent microextraction for colorimetric determination of volatile analyte derivatives in a single drop. The exposure of AuNRs to both HSe and elemental mercury (Hg) results in a shift of the longitudinal plasmonic band, unlike a number of volatiles. Accordingly, a method is reported for the determination of Hg with potential applicability to the determination of thiomersal (sodium ethylmercurithiosalicylate). It is based on the photochemical decomposition of thiomersal into Hg(II) and subsequent exposure of AuNRs-containing microdrop to in situ generated Hg. Colorimetric analysis of the enriched drop was carried out without dilution by means of a cuvetteless microvolume UV-vis spectrometer. Under optimal conditions, the limit of detection was 0.5 ng mL (as Hg). The repeatability, expressed as relative standard deviation, was 8.4% (for n = 10). AuNRs exposed to increasing concentrations of the analyte were characterized by means of transmission electron microscopy and UV-vis spectrophotometry to ascertain the mechanism of detection. The method was finally applied to the determination of thiomersal in various pharmaceutical samples and showed quantitative recoveries. Graphical abstract Schematic illustration of a miniaturized colorimetric method based on the use of a microdrop of gold nanorods (AuNRs) for thiomersal determination in pharmaceuticals. It is based on the photochemical decomposition of thiomersal and subsequent Hg generation with in-drop amalgamation.
这项工作报告了金纳米棒(AuNRs)在顶空溶剂微萃取中的应用,用于在单滴中对挥发性分析物衍生物进行比色测定。AuNRs 暴露于 HSe 和元素汞(Hg)会导致纵向等离子体带的移动,与许多挥发性物质不同。因此,报告了一种用于测定 Hg 的方法,该方法可能适用于测定硫柳汞(乙基汞硫代水杨酸钠)。它基于硫柳汞光化学分解为 Hg(II),随后将含有 AuNRs 的微滴暴露于原位生成的 Hg。通过无比色皿微体积紫外可见分光光度计对富集液滴进行比色分析,无需稀释。在最佳条件下,检测限为 0.5ng/mL(以 Hg 计)。重复性以相对标准偏差表示,为 8.4%(n=10)。用透射电子显微镜和紫外可见分光光度法对暴露于分析物浓度逐渐增加的 AuNRs 进行了表征,以确定检测机制。该方法最终应用于各种药物样品中硫柳汞的测定,显示出定量回收率。