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一种使用 TiO-聚三嗪亚胺亚微结构复合材料作为高效电催化剂的新型电化学传感器,用于检测氟虫腈及其有毒代谢物氟虫腈砜。

A novel electrochemical sensor for the detection of fipronil and its toxic metabolite fipronil sulfone using TiO-polytriazine imide submicrostructured composite as an efficient electrocatalyst.

机构信息

Centre of Excellence in Mycotoxicology and Public Health, Faculty of Pharmaceutical Sciences, Ghent University, Ghent, Belgium; Department of Pharmaceutical Chemistry, Egyptian Drug Authority (EDA), Giza, Egypt.

Nanotechnology Education and Research Center, South Ural State University, Chelyabinsk, Russia.

出版信息

Talanta. 2022 Feb 1;238(Pt 2):123025. doi: 10.1016/j.talanta.2021.123025. Epub 2021 Nov 2.

Abstract

For the first time, a simple and sensitive electrochemical sensor based on a screen printed electrode (SPE) modified with titanium dioxide (TiO) and polytriazine imide submicrostructured composite (TiO-PTI) has been developed for the simultaneous detection of fipronil (FIP) and its toxic metabolite fipronil sulfone (FIP-S). The submicrostructured composite material based on TiO and PTI was obtained by simple hydrothermal treatment of the Ti peroxocomplexes in the presence of pristine. This carbon nitride allotrope has better crystallinity and conductivity than its graphitic analog. It was found that the TiO-PTI submicrostructured composite enhanced the electrochemical sensing of the SPE electrode towards FIP and its metabolite FIP-S in 0.1 M Britton-Robinson buffer (pH 10) at the oxidation potentials of 0.82 V and 0.94 V, respectively. In addition, it showed good stability and reproducibility for the determination of both analytes. Under optimal conditions, the peak currents by square wave voltammetry were found to vary linearly with FIP and FIP-S concentrations in the range from 0.01 to 10 μM and from 10 to 50 μM, with a detection limit of 8.42 nM, 3.6 μg/kg for FIP and 9.72 nM, 4.04 μg/kg for FIP-S. This sensor was successfully used to detect FIP and FIP-S in eggs and water samples with good recoveries of 90%-106.6%.

摘要

首次开发了一种基于二氧化钛 (TiO) 和聚三嗪亚胺亚微结构复合材料 (TiO-PTI) 修饰的丝网印刷电极 (SPE) 的简单灵敏电化学传感器,用于同时检测氟虫腈 (FIP) 和其有毒代谢物氟虫腈砜 (FIP-S)。基于 TiO 和 PTI 的亚微结构复合材料是通过 Ti 过氧化物配合物在原始存在下的简单水热处理获得的。这种碳氮同素异形体比其石墨类似物具有更好的结晶度和导电性。结果发现,TiO-PTI 亚微结构复合材料增强了 SPE 电极对 FIP 和其代谢物 FIP-S 在 0.1 M Britton-Robinson 缓冲液 (pH 10) 中的电化学传感,氧化电位分别为 0.82 V 和 0.94 V。此外,它显示出良好的稳定性和重现性,可用于两种分析物的测定。在最佳条件下,通过方波伏安法发现峰电流与 FIP 和 FIP-S 浓度在 0.01 至 10 μM 和 10 至 50 μM 的范围内呈线性变化,检测限分别为 8.42 nM、3.6 μg/kg 的 FIP 和 9.72 nM、4.04 μg/kg 的 FIP-S。该传感器成功用于检测鸡蛋和水样中的 FIP 和 FIP-S,回收率为 90%-106.6%。

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