Nie Zongye, Zhang Zixin, Yang Kai, Chen Hao, Wu Hanqing
School of Materials Science and Engineering, Guangdong University of Petrochemical Technology, Maoming, 525000, People's Republic of China.
Jiangxi Province Key Laboratory of Pharmacologyof, Traditional Chinese Medicine , College of Pharmacy, Gannan Medical University, Ganzhou, 341000, People's Republic of China.
J Fluoresc. 2025 Jul 10. doi: 10.1007/s10895-025-04440-6.
The widespread use of pesticides has led to their residues posing a serious threat to the environment and the health of plants and animals, making the development of efficient and convenient detection technologies an urgent priority. Organic fluorescent probes have become a research hotspot owing to their rapid response, visual detection capabilities, and potential for portability. Therefore, this paper reviews the research progress of organic fluorescence detection of pesticides based on the mechanisms of enzymatic reactions, competitive complexation with metal ions, nucleophilic/electrophilic reactions and hydrogen bonding in the past three years (From 2023 to 2025). The aim is to provide theoretical support for future research that needs to focus on the design of synergistic probes with multiple mechanisms, the development of new sensing systems with intelligent responses, and the optimization of detection strategies combined with artificial intelligence algorithms, in order to promote the development of detection technology in the direction of high precision and intelligence, and to provide theoretical support for the construction of pesticide rapid detection platforms applicable to multiple scenarios.
农药的广泛使用导致其残留对环境以及动植物健康构成严重威胁,这使得开发高效便捷的检测技术成为当务之急。有机荧光探针因其响应迅速、具备可视化检测能力以及便携潜力而成为研究热点。因此,本文综述了过去三年(2023年至2025年)基于酶促反应、与金属离子竞争络合、亲核/亲电反应以及氢键作用机制的农药有机荧光检测研究进展。目的是为未来研究提供理论支持,未来研究需要聚焦于具有多种机制的协同探针设计、具有智能响应的新型传感系统开发以及结合人工智能算法的检测策略优化,以推动检测技术朝着高精度和智能化方向发展,并为构建适用于多种场景的农药快速检测平台提供理论支持。