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A Water-Stable Lanthanide Coordination Polymer as Multicenter Platform for Ratiometric Luminescent Sensing Antibiotics
Authors:Dr Shuangyan Wu  Dr Mingchang Zhu  Dr Ying Zhang  Prof Marina Kosinova  Prof Vladimir P Fedin  Prof Enjun Gao
Institution:1. School of Chemical Engineering, University of Science and Technology Liaoning, Anshan, Liaoning, 114051 P.R. China

The Key Laboratory of the Inorganic Molecule-Based Chemistry of Liaoning, Province, Laboratory of Coordination Chemistry, Shenyang University of Chemical Technology, Shenyang, Liaoning, 110142 P.R. China;2. The Key Laboratory of the Inorganic Molecule-Based Chemistry of Liaoning, Province, Laboratory of Coordination Chemistry, Shenyang University of Chemical Technology, Shenyang, Liaoning, 110142 P.R. China;3. Nikolaev Institute of Inorganic Chemistry, Lavrentiev Avenue 3, Novosibirsk, 630090 Russian Federation;4. School of Chemical Engineering, University of Science and Technology Liaoning, Anshan, Liaoning, 114051 P.R. China

Abstract:As a hot topic of global concern, the distinguishing and detecting of antibiotic pollution is crucial owing to its adverse effect on ecosystems and human health stemming from excessive use and poor management. Herein, a water-stable lanthanide coordination polymer sensor (Dy-TCPB) with multiple emitting centers is prepared. The versatile Dy-TCPB can conveniently differentiate various antibiotics, and displays a self-calibration luminescent response to nitrofurazone (NFZ) and furazolidone (FZD). Each antibiotic exhibits notable correlation to a unique combination of the two ligand-to-Dy ion emission intensity ratios, enabling two-dimensional fingerprint recognition. Furthermore, the novel self-calibration sensor demonstrates effective recognition of NFZ and FZD with excellent sensitivity and selectivity, and detection limits as low as 0.0476 and 0.0482 μm for NFZ and FZD, respectively. The synthetic approach for the fabrication of a singular coordination polymer exhibiting multiple emissions provides a promising strategy for the development of facile and effective ratiometric sensors.
Keywords:antibiotics  antibiotics pollution  luminescence  self-calibration  sensors  water stability
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