Yousefzadeh Ashraf, Abolhasani Jafar, Hassanzadeh Javad, Somi Mohammad Hossein
Department of Chemistry, Tabriz Branch, Islamic Azad University, Tabriz, Iran.
Research Laboratory of Advanced Water and Wastewater Treatment Processes, Department of Applied Chemistry, Faculty of Chemistry, University of Tabriz, Tabriz, Iran.
Luminescence. 2019 Mar;34(2):261-271. doi: 10.1002/bio.3604. Epub 2019 Feb 5.
A novel and sensitive chemiluminescence (CL) procedure based on the synergetic catalytic effects of gold nanoclusters (Au NCs) and graphene quantum dots (GQDs) was developed for the reliable measurement of cimetidine (CM). The initial experiments showed that the KMnO -based oxidation of alkaline rhodamine B (RhoB) generated a very weak CL emission, which was intensively enhanced in the simultaneous presence of Au NCs and GQDs. CL intermediates can be adsorbed and gathered on the surface of Au NCs, becoming more stable. GQDs participate in the energy transferring processes and facilitate them. These improving effects were simultaneously obtained by adding both Au NCs and GQDs into the RhoB-KMnO reaction. Consequently, the increasing effect of the Au NCs/GQDs mixture was more than that of pure Au NCs or GQDs, and a new nano-assisted powerful CL system was achieved. Furthermore, a marked quenching in the emission of the introduced CL system was observed in the presence of CM, so the system was examined to design a sensitive sensor for CM. After optimization of influencing parameters, the linear lessening in CL emission intensity of KMnO -RhoB-Au NCs/GQDs was verified for CM concentrations in the range 0.8-200 ng ml . The limit of detection (3S /m) was 0.3 ng ml . Despite being a simple CL method, good sensitivity was obtained for CM detection with reliable results for CM determination in human urine samples.
基于金纳米簇(Au NCs)和石墨烯量子点(GQDs)的协同催化作用,开发了一种新颖且灵敏的化学发光(CL)方法,用于可靠测定西咪替丁(CM)。初步实验表明,碱性罗丹明B(RhoB)基于KMnO的氧化产生的CL发射非常微弱,而在同时存在Au NCs和GQDs时会强烈增强。CL中间体可吸附并聚集在Au NCs表面,变得更加稳定。GQDs参与能量转移过程并促进其进行。通过将Au NCs和GQDs同时添加到RhoB-KMnO反应中可同时获得这些改善效果。因此,Au NCs/GQDs混合物的增强效果大于纯Au NCs或GQDs,从而实现了一种新型的纳米辅助强CL体系。此外,在存在CM的情况下,观察到引入的CL体系的发射有明显猝灭,因此对该体系进行了研究以设计一种用于CM的灵敏传感器。在优化影响参数后,验证了KMnO-RhoB-Au NCs/GQDs的CL发射强度随CM浓度在0.8-200 ng/ml范围内呈线性降低。检测限(3S/m)为0.3 ng/ml。尽管这是一种简单的CL方法,但对于CM检测仍获得了良好的灵敏度,并且在人尿样中CM测定结果可靠。