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电化学比率法用于水样和蔬菜样品中残留甲萘威的检测。

Ratiometric Strategy for Electrochemical Sensing of Carbaryl Residue in Water and Vegetable Samples.

机构信息

College of Food Science and Engineering, Northwest A&F University, No.22 Xinong Road, Yangling 712100, China.

出版信息

Sensors (Basel). 2020 Mar 10;20(5):1524. doi: 10.3390/s20051524.

Abstract

Accurate analysis of pesticide residue in real samples is essential for food safety and environmental protection. However, a traditional electrochemical sensor based on single-signal output is easily affected by background noise, environmental conditions, electrode diversity, and a complex matrix of samples, leading to extremely low accuracy. Hence, in this paper, a ratiometric strategy based on dual-signal output was adopted to build inner correction for sensing of widely-used carbaryl (CBL) for the first time. By comparison, Nile blue A (NB) was selected as reference probe, due to its well-defined peak, few effects on the target peak of CBL, and excellent stability. The effects of a derivatization method, technique mode, and pH were also investigated. Then the performance of the proposed ratiometric sensor was assessed in terms of three aspects including the elimination of system noise, electrode deviation and matrix effect. Compared with traditional single-signal sensor, the ratiometric sensor showed a much better linear correlation coefficient (r > 0.99), reproducibility (RSD < 10%), and limit of detection (LOD = 1.0 μM). The results indicated the introduction of proper reference probe could ensure the interdependence of target and reference signal on the same sensing environment, thus inner correction was fulfilled, which provided a promising tool for accurate analysis.

摘要

准确分析实际样品中的农药残留对于食品安全和环境保护至关重要。然而,基于单一信号输出的传统电化学传感器容易受到背景噪声、环境条件、电极多样性以及复杂的样品基质的影响,导致准确性极低。因此,本文首次采用基于双信号输出的比率策略构建了广泛使用的carbaryl(CBL)的传感内校正。相比之下,由于尼罗蓝 A(NB)具有明确的峰、对 CBL 目标峰的影响较小以及出色的稳定性,因此选择其作为参考探针。还研究了衍生化方法、技术模式和 pH 值的影响。然后,从消除系统噪声、电极偏差和基质效应三个方面评估了所提出的比率传感器的性能。与传统的单信号传感器相比,比率传感器表现出更好的线性相关系数(r>0.99)、重现性(RSD<10%)和检测限(LOD=1.0 μM)。结果表明,引入适当的参考探针可以确保目标和参考信号在相同的传感环境中的相互依存关系,从而实现了内校正,为准确分析提供了有前途的工具。

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