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用于环境或食品领域中氧化石墨烯和儿茶素测定的荧光双模式传感器。

Fluorescent dual-mode sensor for the determination of graphene oxide and catechin in environmental or food field.

作者信息

Pinilla-Peñalver Esther, Esteban-Arranz Adrián, Contento Ana M, Ríos Ángel

机构信息

Department of Analytical Chemistry and Food Technology, University of Castilla-La Mancha Avenue Camilo José Cela, s/n 13071 Ciudad Real Spain

Regional Institute for Applied Chemistry Research, IRICA Avenue Camilo José Cela, 1 13071 Ciudad Real Spain.

出版信息

RSC Adv. 2023 Nov 10;13(47):33255-33268. doi: 10.1039/d3ra04726a. eCollection 2023 Nov 7.

Abstract

The novel fluorescent sensor is proposed in this work based on the competitive interactions between the known bioactive compounds, riboflavin and catechin, which act as guests, and graphene oxide (GO) material that acts as host. Specifically, this proposal is based on an indicator displacement assay which allows the detection of GO and catechin (fluorescence quenching of riboflavin signal by GO and increase in fluorescence by catechin on the GO-riboflavin system). Three GO structures with different lateral dimensions and thickness were synthesized and tested, being able to be the three differentiated depending on the attenuation capacity of the fluorescent signal that each one possesses. The environmental analytical control of GO is more and more important, being this method sensitive and selective in the presence of other potential interferent substances. On the other hand, the other sensing capacity of the sensor also allows the determination of catechin in food samples based on the formation of riboflavin-GO complex. It is a rapid, simple and non-expensive procedure. Thus, the same 2D nanomaterial (GO) is seen to play a double role in this sensing strategy (analyte and analytical tool for the determination of another compound).

摘要

在这项工作中,基于已知生物活性化合物核黄素和儿茶素(作为客体)与氧化石墨烯(GO)材料(作为主体)之间的竞争相互作用,提出了一种新型荧光传感器。具体而言,该方案基于指示剂置换分析法,该方法能够检测GO和儿茶素(GO对核黄素信号的荧光猝灭以及儿茶素对GO-核黄素体系荧光的增强)。合成并测试了三种具有不同横向尺寸和厚度的GO结构,根据它们各自所具有的荧光信号衰减能力,能够区分这三种结构。GO的环境分析控制越来越重要,该方法在存在其他潜在干扰物质时具有灵敏性和选择性。另一方面,该传感器的另一种传感能力还能够基于核黄素-GO复合物的形成来测定食品样品中的儿茶素。这是一种快速、简单且成本低廉的方法。因此,同一种二维纳米材料(GO)在这种传感策略中发挥了双重作用(既是分析物,又是测定另一种化合物的分析工具)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9115/10637338/ee8ae381352f/d3ra04726a-f1.jpg

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