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基于 MoS_CNTs 气凝胶的 PEDOT 纳米复合材料电化学传感器用于同时检测食品样品中的氯霉素和呋喃唑酮。

MoS_CNTs_aerogel-based PEDOT nanocomposite electrochemical sensor for simultaneous detection of chloramphenicol and furazolidone in food samples.

机构信息

Department of Chemistry, School of Applied Science, REVA University, Bangalore, India.

Department of Chemistry, B.M.S. College of Engineering, Bangalore, Karnataka, India.

出版信息

J Environ Sci Health B. 2024;59(9):595-610. doi: 10.1080/03601234.2024.2399461. Epub 2024 Sep 17.

Abstract

Toxic intermediates in food caused by chloramphenicol (CP) and furazolidone (FZ) have gained interest in research toward their detection. Hence, fast, reliable, and accurate detection of CP and FZ in food products is of utmost importance. Here, a novel molybdenum disulfide-connected carbon nanotube aerogel/poly (3,4-ethylenedioxythiophene) [MoS/CNTs aerogel/PEDOT] nanocomposite materials are constructed and deposited on the pretreated carbon paste electrode (PCPE) by a facile eletropolymerization method. The characterization of MoS/CNTs aerogel/PEDOT nanocomposite was analyzed by scanning electron microscopy (SEM), cyclic voltammetry, and differential pulse voltammetry. The modified MoS/CNTs aerogel/PEDOT nanocomposite has improved sensing characteristics for detecting CP and FZ in PBS solution. For this work, we have studied various parameters like electrocatalytic activity, the effect of scan rates, pH variation studies, and concentration variation studies. Under optimum conditions, the modified electrode exhibited superior sensing ability compared to the bare and pretreated CPE. This improvement in electrocatalytic activity can be the higher conductivity, larger surface area, increased heterogeneous rate constant, and presence of more active sites in the MoS/CNTs aerogel/PEDOT nanocomposite. The modified electrode demonstrated distinct electrochemical sensing toward the individual and simultaneous analysis of CP and FZ with a high sensitivity of 0.701 µA. µM .cm for CP and 0.787 µA. µM .cm for FZ and a low detection limit of 3.74 nM for CP and 3.83 nM for FZ with good reproducibility, repeatability, and interferences. Additionally, the prepared sensor effectively detects CP and FZ in food samples (honey and milk) with an acceptable recovery range and a relative standard deviation below 4%.

摘要

食物中氯霉素(CP)和呋喃唑酮(FZ)产生的有毒中间体引起了人们对其检测方法的研究兴趣。因此,快速、可靠、准确地检测食品中的 CP 和 FZ 至关重要。在此,通过简单的电聚合方法构建了一种新型的二硫化钼连接的碳纳米管气凝胶/聚(3,4-亚乙基二氧噻吩)[MoS/CNTs 气凝胶/PEDOT]纳米复合材料,并将其沉积在预处理过的碳糊电极(PCPE)上。通过扫描电子显微镜(SEM)、循环伏安法和差分脉冲伏安法对 MoS/CNTs 气凝胶/PEDOT 纳米复合材料进行了表征。修饰后的 MoS/CNTs 气凝胶/PEDOT 纳米复合材料对 PBS 溶液中 CP 和 FZ 的检测具有更好的传感特性。在这项工作中,我们研究了各种参数,如电催化活性、扫描速率的影响、pH 值变化研究和浓度变化研究。在最佳条件下,修饰后的电极与裸电极和预处理过的 CPE 相比,表现出更高的传感能力。这种电催化活性的提高可以归因于 MoS/CNTs 气凝胶/PEDOT 纳米复合材料更高的导电性、更大的表面积、增加的异质速率常数和更多的活性位点。修饰后的电极对 CP 和 FZ 的单独和同时分析表现出明显的电化学传感能力,对 CP 的灵敏度为 0.701 μA.μM.cm,对 FZ 的灵敏度为 0.787 μA.μM.cm,检测限低至 3.74 nM 的 CP 和 3.83 nM 的 FZ,具有良好的重现性、重复性和抗干扰性。此外,该制备的传感器能够有效地检测蜂蜜和牛奶等食品样品中的 CP 和 FZ,回收率范围在可接受范围内,相对标准偏差低于 4%。

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