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基于 CsPbBr 3 量子点和聚(3-噻吩乙酸)交联纳米金印迹层的电化学发光传感器用于食用油中苯并(a)芘的测定。

An electrochemiluminescence sensor based on CsPbBr -zquantum dots and poly (3-thiophene acetic acid) cross-linked nanogold imprinted layer for the determination of benzo(a)pyrene in edible oils.

机构信息

School of Food Science and Engineering, South China University of Technology, Guangzhou 510640, China.

School of Food Science and Engineering, South China University of Technology, Guangzhou 510640, China; Guangdong Province Key Laboratory for Green Processing of Natural Products and Product Safety, South China University of Technology, Guangzhou 510640, China.

出版信息

Food Chem. 2023 Nov 15;426:136508. doi: 10.1016/j.foodchem.2023.136508. Epub 2023 Jun 3.

Abstract

A novel quench molecularly imprinted electrochemiluminescence sensor (MIECLS) based on a covalent organic framework composite (COF-300-Au) with enhanced electrochemiluminescence (ECL) signal from CsPbBr quantum dots and cross-linked 3-thiopheneacetic acid functionalized AuNPs (3-TAA@AuNPs) was developed for the detection of the environmental pollutant benzo(a)pyrene (BaP). A composite material constructed of COF-300-Au with a large specific surface area served as the sensor's support substrate, providing more CsPbBr and imprint recognition sites. Electropolymerization was then employed to form an AuNPs three-dimensional imprinting layer with polythiophene cross-linked using BaP as a template and 3-TAA@AuNPs as a functional monomer. A specific cross-linked imprinting recognition effect was recorded on BaP along with the quenching effect of quinones. The density functional theory (DFT) evaluation of the binding mechanism between 3-TAA@AuNPs and BaP revealed powerful MIECLS toward the detection of BaP at concentrations ranging from 10 to 10M, with a detection limit of as low as 4.1 × 10 M.

摘要

一种基于共价有机框架复合材料(COF-300-Au)的新型猝灭分子印迹电化学发光传感器(MIECLS),该复合材料具有增强的电化学发光(ECL)信号,来自 CsPbBr 量子点和交联的 3-噻吩乙酸功能化金纳米粒子(3-TAA@AuNPs),用于检测环境污染物苯并(a)芘(BaP)。具有大比表面积的 COF-300-Au 复合材料作为传感器的支撑基底,提供了更多的 CsPbBr 和印迹识别位点。然后采用电聚合的方法,以 BaP 为模板,以 3-TAA@AuNPs 为功能单体,形成具有聚噻吩交联的 AuNPs 三维印迹层。在苯并[a]芘存在的情况下,记录到了特定的交联印迹识别效应以及醌的猝灭效应。通过密度泛函理论(DFT)评估 3-TAA@AuNPs 和 BaP 之间的结合机制,发现 MIECLS 对浓度范围在 10 到 10 M 之间的 BaP 具有强大的检测能力,检测限低至 4.1×10 M。

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