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基于银纳米簇/石墨烯量子点混合物增强效应的高效化学发光体系用于雷贝拉唑的超灵敏检测

A Highly Efficient Chemiluminescence System Based on an Enhancing Effect of Ag Nanoclusters/Graphene Quantum Dots Mixture for Ultrasensitive Detection of Rabeprazole.

作者信息

Yousefzadeh Ashraf, Abolhasani Jafar, Hassanzadeh Javad, Somi Mohammad Hossein

机构信息

Department of Chemistry, Tabriz Branch, Islamic Azad University.

Research Laboratory of Advanced Water and Wastewater Treatment Processes, Department of Applied Chemistry, Faculty of Chemistry, University of Tabriz.

出版信息

Anal Sci. 2019;35(4):385-391. doi: 10.2116/analsci.18P419.

Abstract

Herein, an efficient chemiluminescence (CL) reaction with a high emission intensity is reported based on a synergistic improving effect of silver nanoclusters (AgNCs) and graphene quantum dots (GQDs). First, the syntheses of AgNCs and GQDs were simply performed by the chemical reducing of AgNO and a thermal treatment of glucose, respectively. After the characterization steps, the beneficial behavior of the prepared nanomaterial was investigated in CL systems. The oxidation reaction of KMnO-rhodamine B produced weak CL emission. However, the presence of AgNCs and GQDs led to a synergetic enhancing effect, and thus higher emission was obtained. A possible mechanism was investigated for this effect using absorption and fluorescence experiments. Furthermore, rabeprazole showed a relatively selective enhancing impact on the CL emission. The CL intensity was linearly increased in the rabeprazole concentration range of 4 - 133 ng mL with a detection limit (3S/m) of 1.1 ng mL. The developed CL method was utilized for the measurement of Rbp in biological samples with acceptable precision and accuracy.

摘要

在此,基于银纳米簇(AgNCs)和石墨烯量子点(GQDs)的协同增强效应,报道了一种具有高发射强度的高效化学发光(CL)反应。首先,分别通过硝酸银的化学还原和葡萄糖的热处理简单地合成了AgNCs和GQDs。经过表征步骤后,在CL体系中研究了所制备纳米材料的有益行为。高锰酸钾 - 罗丹明B的氧化反应产生较弱的CL发射。然而,AgNCs和GQDs的存在导致了协同增强效应,从而获得了更高的发射。利用吸收和荧光实验研究了这种效应的可能机制。此外,雷贝拉唑对CL发射表现出相对选择性的增强作用。在雷贝拉唑浓度范围为4 - 133 ng/mL时,CL强度呈线性增加,检测限(3S/m)为1.1 ng/mL。所建立的CL方法用于生物样品中雷贝拉唑的测定,具有可接受的精密度和准确度。

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