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A 1D [Ni(L)(H2O)3]n·nH2O Coordination Polymer as a Dual Function Material for Antibiotic Detection and Dye
Fengli Yu1, Mingxuan Zhu1, Xiaoyu Weng2
1Jilin University of Chemical Technology, Jilin 132022, China.
Abstract:
The development of materials for the remediation and monitoring of water environments remains a significant challenge in the field of environment and materials science. In this study, a nickel-based coordination polymer, [Ni(L)(H2O)3]n·nH2O (1), was synthesized employing 4,4'-(1H,1'H-[2,2'-biimidazole]-1,1'-diyl)dibenzoic acid (H2L). Single-crystal X-ray diffraction analysis showed that L2- ligands connect Ni2+ ions into 1D Z-shaped chains via two coordination modes. The chains are further assembled into a 3D supramolecular structure through hydrogen bonding interactions. The photocatalytic test showed that complex 1 could effectively degrade the organic dye methylene blue (MB). Under the conditions of catalyst dosage 5 mg, MB initial concentration 20 ppm and pH 7, the degradation efficiency reached 87.7% within 180 min. In addition, complex 1 can be used for the electrochemical detection of norfloxacin (NOR) by differential pulse voltammetry (DPV), exhibiting a linear response in the concentration range of 2-197 μM and the detection limit (LOD) of 1.74 μM. These results demonstrate that complex 1 has bifunctional properties of photocatalytic degradation of organic dyes and electrochemical sensing of antibiotic NOR, making it a promising candidate material for the synergistic treatment of complex pollutants.

