Department of Analytical Chemistry, Faculty of Chemistry, K. N. Toosi University of Technology, Tehran, Iran.
Department of Marine Living Science, Ocean Sciences Research Center, Iranian National Institute for Oceanography and Atmospheric Science, Tehran, Iran.
Anal Chim Acta. 2020 Jul 11;1120:11-23. doi: 10.1016/j.aca.2020.04.060. Epub 2020 Apr 27.
In the present study, a novel plasmonic sensing platform was proposed for sequential colorimetric detection of dopamine (DA) and glutathione (GSH) in human serum sample by taking advantage of plasmon hybridization in graphene nanoribbons/sliver nanoparticles (GNR/Ag NPs) hybrid. DA was detected based on etching strategy and morphology transition of label-free Ag NPs hybridized with GNR. As a result of the etching process, hexagonal Ag NPs were changed to smaller corner-truncated nanoparticles and a blue shift was observed in its plasmonic band, accompanied by the color change from green to red. Sequentially, GSH induced aggregation of Ag NPs which resulted in a decrease in absorption intensity of Ag NPs plasmonic band and a color change from red to gray. By employing GNR/Ag NPs hybrid as a sensitive colorimetric sensor, DA and GSH were successfully detected in low concentrations of 0.04 μM and 0.23 μM, respectively. The same experiment was carried out in the absence of GNR and the detection limits were obtained 0.46 and 1.2 μM for DA and GSH, respectively. These results confirmed the effective role of GNR on the sensitivity improvement of GNR/Ag NPs hybrid. The proposed simple and sensitive sensing approach offered a beneficial and promising platform for sequential detection of DA and GSH in the biological samples.
在本研究中,利用石墨烯纳米带/银纳米粒子(GNR/Ag NPs)杂化中的等离子体杂化,提出了一种新颖的等离子体传感平台,用于通过人血清样本中顺序比色检测多巴胺(DA)和谷胱甘肽(GSH)。DA 的检测基于无标记的 Ag NPs 与 GNR 杂交的蚀刻策略和形态转变。由于蚀刻过程,六方 Ag NPs 变成更小的角截断纳米颗粒,并且观察到其等离子体带的蓝移,同时颜色从绿色变为红色。接着,GSH 诱导 Ag NPs 的聚集,导致 Ag NPs 等离子体带的吸收强度降低,颜色从红色变为灰色。通过将 GNR/Ag NPs 杂化用作灵敏的比色传感器,成功地在低浓度 0.04 μM 和 0.23 μM 下检测到 DA 和 GSH。在没有 GNR 的情况下进行了相同的实验,并分别获得了 DA 和 GSH 的检测限为 0.46 和 1.2 μM。这些结果证实了 GNR 在提高 GNR/Ag NPs 杂化灵敏度方面的有效作用。所提出的简单灵敏的传感方法为在生物样品中顺序检测 DA 和 GSH 提供了有益且有前途的平台。