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

TALANTA(2024)

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摘要
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 Tb3+-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 2chlorophenol (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 mu M and 2.18 mu M, 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.
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关键词
Hydrogen-bonded organic frameworks,Food and environmental safety,Thiabendazole,2-Chlorophenol,Back propagation neural network
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