基于中空球形 PProDOT-2CH2OH 和壳聚糖衍生碳材料的分子印迹电化学传感器,用于高灵敏度检测氯霉素。

Journal of hazardous materials Pub Date : 2024-10-05 Epub Date: 2024-08-22 DOI:10.1016/j.jhazmat.2024.135615
Qian Cheng, Cong Xue, Tursun Abdiryim, Ruxangul Jamal
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引用次数: 0

摘要

氯霉素(CAP)的滥用危害了环境安全。建立一种有效、灵敏的 CAP 检测技术至关重要。本文设计了一种由壳聚糖(CS)衍生的碳材料改性的中空球形羟基化聚(3,4-丙二氧基噻吩)(PProDOT-2CH2OH)复合材料,创新性地使用邻苯二胺和对氨基苯甲酸作为双功能单体,制备了分子印迹聚合物(MIP)传感器,用于高灵敏度地分析和测定 CAP。研究发现,PProDOT-2CH2OH 的中空球形结构显著增强了电子的快速迁移。当与具有多功能位点的 CS 衍生碳材料结合使用时,它提高了传感器的电活性和稳定性。它还为 MIP 层提供了更多的活性中心,使其能够特异性地识别 CAP。因此,这种 MIP 传感器具有较宽的线性响应(0.0001 ∼ 125 μM)、较低的检测限(LOD,6.6 pM)、出色的选择性和稳定性。此外,研究还表明该传感器具有潜在的实用价值。环境意义:氯霉素(CAP)因其低廉的价格和广谱抗菌特性,是使用最广泛、用量最大的抗生素之一。由于其在生物体内代谢不完全,且在环境中难以降解,其造成的污染会对公共健康构成威胁。本研究设计了一种新型分子印迹传感器(MIP/PC2C1/GCE),为通过吸附快速、精确地去除 CAP 提供了一种新思路。实现了在制药、水质和食品领域对 CAP 的检测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Molecular imprinting electrochemical sensor based on hollow spherical PProDOT-2CH2OH and chitosan-derived carbon materials for highly sensitive detection of chloramphenicol.

The misuse of chloramphenicol (CAP) has jeopardized environmental safety. It is critical to create an effective and sensitive CAP detection technique. In this paper, a composite of chitosan (CS)-derived carbon material modified hollow spherical hydroxylated poly(3,4-propylenedioxythiophene) (PProDOT-2CH2OH) was designed, which innovatively used o-phenylenediamine and p-aminobenzoic acid as bi-functional monomers to prepare molecular imprinting polymer (MIP) sensors for highly sensitive analysis and determination of CAP. It was found that the hollow spherical structure of PProDOT-2CH2OH significantly enhanced the rapid electron migration. When combined with the CS-derived carbon material, which has multi-functional sites, it improved the electrical activity and stability of the sensor. It also provided more active centers for the MIP layer to specifically recognize CAP. Therefore, this MIP sensor had a wide linear response (0.0001 ∼ 125 μM), a low limit of detection (LOD, 6.6 pM), excellent selectivity and stability. In addition, studies showed that the sensor has potential practical value. ENVIRONMENTAL IMPLICATION: Chloramphenicol (CAP) is one of the most widely used antibiotics with the highest dosage due to its low price and broad-spectrum antimicrobial properties. Due to its incomplete metabolism in living organisms and its difficulty in degrading in the environment, contamination caused by it can pose a threat to public health. In this study, a novel molecularly imprinted sensor (MIP/PC2C1/GCE) was designed to provide a new idea for rapid and precise removal of CAP by adsorption. The detection of CAP in pharmaceutical, water quality, and food fields was realized.

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