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新烟碱类农药的电化学传感机制及功能材料在电化学生物传感平台中的最新研究进展。

Electrochemical sensing mechanisms of neonicotinoid pesticides and recent progress in utilizing functional materials for electrochemical detection platforms.

机构信息

Institute for Advanced Interdisciplinary Research (iAIR), School of Chemistry and Chemical Engineering, University of Jinan, Jinan, 250022, PR China.

Institute for Advanced Interdisciplinary Research (iAIR), School of Chemistry and Chemical Engineering, University of Jinan, Jinan, 250022, PR China.

出版信息

Talanta. 2024 Jun 1;273:125937. doi: 10.1016/j.talanta.2024.125937. Epub 2024 Mar 16.

Abstract

The excessive residue of neonicotinoid pesticides in the environment and food poses a severe threat to human health, necessitating the urgent development of a sensitive and efficient method for detecting trace amounts of these pesticides. Electrochemical sensors, characterized by their simplicity of operation, rapid response, low cost, strong selectivity, and high feasibility, have garnered significant attention for their immense potential in swiftly detecting trace target molecules. The detection capability of electrochemical sensors primarily relies on the catalytic activity of electrode materials towards the target analyte, efficient loading of biomolecular functionalities, and the effective conversion of interactions between the target analyte and its receptor into electrical signals. Electrode materials with superior performance play a crucial role in enhancing the detection capability of electrochemical sensors. With the continuous advancement of nanotechnology, particularly the widespread application of novel functional materials, there is paramount significance in broadening the applicability and expanding the detection range of pesticide sensors. This comprehensive review encapsulates the electrochemical detection mechanisms of neonicotinoid pesticides, providing detailed insights into the outstanding roles, advantages, and limitations of functional materials such as carbon-based materials, metal-organic framework materials, supramolecular materials, metal-based nanomaterials, as well as molecular imprinted materials, antibodies/antigens, and aptamers as molecular recognition elements in the construction of electrochemical sensors for neonicotinoid pesticides. Furthermore, prospects and challenges facing various electrochemical sensors based on functional materials for neonicotinoid pesticides are discussed, providing valuable insights for the future development and application of biosensors for simplified on-site detection of agricultural residues.

摘要

环境和食物中过量的新烟碱类农药残留对人类健康构成严重威胁,因此迫切需要开发一种灵敏、高效的方法来检测这些农药的痕量。电化学传感器具有操作简单、响应迅速、成本低、选择性强、可行性高的特点,因其在快速检测痕量目标分子方面的巨大潜力而受到广泛关注。电化学传感器的检测能力主要依赖于电极材料对目标分析物的催化活性、生物分子功能的有效负载以及目标分析物与其受体之间相互作用向电信号的有效转化。具有优异性能的电极材料在提高电化学传感器的检测能力方面起着至关重要的作用。随着纳米技术的不断进步,特别是新型功能材料的广泛应用,拓宽农药传感器的适用性和检测范围具有重要意义。本综述总结了新烟碱类农药的电化学检测机制,详细介绍了碳基材料、金属有机骨架材料、超分子材料、金属基纳米材料以及分子印迹材料、抗体/抗原和适体等功能材料作为电化学传感器中分子识别元件在构建新烟碱类农药电化学传感器方面的卓越作用、优势和局限性。此外,还讨论了基于功能材料的各种新烟碱类农药电化学传感器所面临的前景和挑战,为简化现场检测农业残留的生物传感器的未来发展和应用提供了有价值的见解。

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