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Fabrication of Electrochemical-DNA Biosensors for the Reagentless Detection of Nucleic Acids, Proteins and Small Molecules
Published on: June 1, 2011
Synchronous dual-mode sensing platform based on 1D chiral ionic COF for epoxiconazole detection
Yeqian Ruan1, Xiaodong Zheng2, Xuan Kuang1
1Key Laboratory of Interfacial Reaction & Sensing Analysis in Universities of Shandong, School of Chemistry and Chemical Engineering, University of Jinan, Jinan 250022, China. chm_kuangx@ujn.edu.cn.
Abstract:
Pesticide misuse leads to environmental contamination and food safety risks. Herein, we report a dual-mode sensor based on a 1D ionic covalent organic framework (COF) for simultaneous electrochemiluminescence (ECL) and differential pulse voltammetry (DPV) detection. The COF ((R)-PTCDA-RMP) was synthesized through polycondensation of π-conjugated 3,4,9,10-perylenetetracarboxylic dianhydride (PTCDA) and chiral (R)-(-)-2-methylpiperazine (RMP) building blocks. This innovative platform utilizes pulsed voltage to generate synchronized ECL and DPV signals, achieving excellent linear responses to epoxiconazole (EPC) concentrations with detection limits (LODs) of 0.189 μg L-1 (ECL) and 5.15 μg L-1 (DPV). The sensor demonstrated high accuracy and satisfactory recoveries (95.3-103.8%) in orange fruit samples. This work establishes a robust method for rapid surveillance of pesticide residues in foodstuffs and environmental applications.
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