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基于 Tb(III)功能化 HOF 杂化材料的食品和环境安全监测平台,用于超快速检测噻菌灵和 2-氯苯酚。

Food and environmental safety monitoring platform based on Tb(III) functionalized HOF hybrids for ultrafast detection of thiabendazole and 2-chlorophenol.

机构信息

School of Chemical Science and Engineering, Tongji University, Siping Road 1239, Shanghai, 200092, China.

School of Chemical Science and Engineering, Tongji University, Siping Road 1239, Shanghai, 200092, China.

出版信息

Talanta. 2024 May 15;272:125829. doi: 10.1016/j.talanta.2024.125829. Epub 2024 Feb 25.

Abstract

Development of efficient and intelligent method for detecting harmful agrochemicals in resource-limited settings remains an urgent need to ensure food and environmental safety. Herein, a novel dual-emitting Tb-modified hydrogen-bonded organic framework (Tb@TBTC, TBTC is the ligand of HOF-TBTC.) with visible green fluorescence has been prepared through coordination post-synthetic modification. Tb@TBTC can be designed as a fluorescence sensor for the identification of two harmful carcinogenic pesticides, thiabendazole (TBZ) and 2-chlorophenol (2-CP) with high sensitivity, high efficiency and excellent selectivity. Tb@TBTC can also adsorb 2-CP with high adsorption rate. In realistic fruit juice and river water samples, the detection limits of Tb@TBTC toward TBZ and 2-CP are as low as 2.73 μM and 2.18 μM, respectively, demonstrating the feasibility in practical application. Furthermore, an intelligent real-time and on-site monitoring platform for 2-CP detection is constructed based on Tb@TBTC-agarose hydrogel films with the assistance of back propagation neural network, which can efficiently and accurately determine the concentration of 2-CP from fluorescence images through human-machine interaction. This work presents a facile pathway to prepare Tb@HOF fluorescent sensor for food and ecological environment safety, which is highly promising for preventing human disease and improving global public health.

摘要

在资源有限的环境中开发高效、智能的有害农用化学品检测方法对于确保食品安全和环境安全仍然是当务之急。本文通过配位后合成修饰,制备了一种具有可见绿色荧光的新型双发射 Tb 修饰氢键有机骨架(Tb@TBTC,TBTC 是 HOF-TBTC 的配体)。Tb@TBTC 可设计为荧光传感器,用于高灵敏度、高效率和优异选择性地识别两种有害致癌农药噻菌灵(TBZ)和 2-氯苯酚(2-CP)。Tb@TBTC 还可以高吸附率吸附 2-CP。在实际果汁和河水样品中,Tb@TBTC 对 TBZ 和 2-CP 的检测限低至 2.73 μM 和 2.18 μM,证明了实际应用的可行性。此外,在反向传播神经网络的辅助下,构建了基于 Tb@TBTC-琼脂糖水凝胶膜的 2-CP 智能实时现场监测平台,通过人机交互可以从荧光图像中高效、准确地确定 2-CP 的浓度。这项工作为食品安全和生态环境安全制备 Tb@HOF 荧光传感器提供了一种简便的途径,对于预防人类疾病和改善全球公共卫生具有很高的应用前景。

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