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Published on: June 23, 2020
Metformin-integrated luminescent hydrogen-bonded organic framework for rapid and selective fluorescent detection of
Jinai Chen1, Ning Li1, Leyi Chen2
1Anhui Provincial International Science and Technology Cooperation Base for Major Metabolic Diseases and Nutritional Interventions, China Light Industry Key Laboratory of Meat Microbial Control and Utilization, School of Food and Biological Engineering, Engineering Research Center of Bio-process, Ministry of Education, Hefei University of Technology, Hefei, 230601, PR China; Wuhan Beyondfocus Technology Co., Ltd., Wuhan, 430000, PR China.
Abstract:
Hypochlorite (ClO-), a widely used oxidant in disinfection and bleaching processes, requires rapid and reliable analytical detection because of its strong reactivity and widespread use. Herein, a metformin-integrated terbium-doped hydrogen-bonded organic framework (Tb@PMA-MET) was developed as a luminescent sensing platform that integrates molecular recognition with lanthanide luminescent transduction. The integrated metformin units provide electron-rich guanidine sites for selective hypochlorite recognition, while Tb3+ serves as the emissive center through the antenna effect. The sensor exhibited a rapid response within 10.3 s, high sensitivity with a detection limit of 104 ng mL-1, and a broad linear range of 0.1-100 μg mL-1. In addition, enhanced Stern-Volmer quenching behavior was observed for Tb@PMA-MET compared with the Tb@PMA reference material. Fluorescence lifetime measurements, PXRD, FT-IR, XPS, and density functional theory calculations collectively suggested that hypochlorite preferentially interacts with metformin units, accompanied by chemical transformation and excited-state deactivation. The sensing platform was further validated by spike-and-recovery analysis in diluted bleach and tap water matrices. This work demonstrates the potential of metformin-integrated luminescent HOFs as fluorescent sensing platforms for rapid hypochlorite analysis in representative aqueous matrices.
