Department of Chemistry, Faculty of Natural and Agricultural Sciences, University of Pretoria, Lynnwood Road, Pretoria 0002, South Africa.
Talanta. 2016 Jan 1;146:780-8. doi: 10.1016/j.talanta.2015.06.023. Epub 2015 Jun 16.
Environmental pollutants, such as the polycyclic aromatic hydrocarbons (PAHs), become widely distributed in the environment after emission from a range of sources, and they have potential biological effects, including toxicity and carcinogenity. In this work, we have demonstrated the analytical potential of a covalently linked L-cysteine-capped CdSeTe/ZnSe/ZnS core/shell/shell quantum dot (QD)-graphene oxide (GO) nanocomposite fluorescence probe to detect PAH compounds in aqueous solution. Water-soluble L-cysteine-capped CdSeTe/ZnSe/ZnS QDs were synthesized for the first time and were covalently bonded to GO. The fluorescence of the QD-GO nanocomposite was enhanced relative to the unconjugated QDs. Various techniques including TEM, SEM, HRSEM, XRD, Raman, FT-IR, UV/vis and fluorescence spectrophotometry were employed to characterize both the QDs and the QD-GO nanocomposite. Four commonly found priority PAH analytes namely; phenanthrene (Phe), anthracene (Ant), pyrene (Py) and naphthalene (Naph), were tested and it was found that each of the PAH analytes enhanced the fluorescence of the QD-GO probe. Phe was selected for further studies as the PL enhancement was significantly greater for this PAH. A limit of detection (LOD) of 0.19 µg/L was obtained for Phe under optimum conditions, whilst the LOD of Ant, Py and Naph were estimated to be ~0.26 µg/L. The fluorescence detection mechanism is proposed.
环境污染物,如多环芳烃(PAHs),在从各种来源排放后会广泛分布在环境中,它们具有潜在的生物效应,包括毒性和致癌性。在这项工作中,我们展示了一种共价连接的 L-半胱氨酸封端的 CdSeTe/ZnSe/ZnS 核/壳/壳量子点(QD)-氧化石墨烯(GO)纳米复合材料荧光探针在水溶液中检测 PAH 化合物的分析潜力。首次合成了水溶性 L-半胱氨酸封端的 CdSeTe/ZnSe/ZnS QD,并将其共价键合到 GO 上。与未共轭的 QD 相比,QD-GO 纳米复合材料的荧光得到了增强。采用 TEM、SEM、HRSEM、XRD、拉曼、FT-IR、UV/vis 和荧光分光光度法等多种技术对 QD 和 QD-GO 纳米复合材料进行了表征。测试了四种常见的优先 PAH 分析物,即:菲(Phe)、蒽(Ant)、芘(Py)和萘(Naph),结果发现每种 PAH 分析物都增强了 QD-GO 探针的荧光。由于这种 PAH 的 PL 增强明显更大,因此选择 Phe 进行进一步研究。在最佳条件下,Phe 的检测限(LOD)为 0.19 µg/L,而 Ant、Py 和 Naph 的 LOD 估计约为 0.26 µg/L。提出了荧光检测机制。