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Updated: May 5, 2026

Synthesis and Characterization of Functionalized Metal-organic Frameworks
Published on: September 5, 2014
Metal-organic framework-based molecularly imprinted polymers for solid-phase extraction of fluoroquinolones in
Jingyi Yan1, Siyuan Peng2, Jingying Huang3
1School of Pharmacy, Key Laboratory of Molecular Pharmacology and Drug Evaluation (Yantai University), Ministry of Education, Collaborative Innovation Center of Advanced Drug Delivery System and Biotech Drugs in Universities of Shandong, Yantai University, Yantai 264005, China; Coastal Zone Ecological Environment Monitoring Technology and Equipment Shandong Engineering Research Center, Shandong Key Laboratory of Coastal Environmental Processes, Yantai Institute of Coastal Zone Research, Chinese Academy of Sciences, Yantai 264003, China.
Abstract:
Antibiotics have received wide concerns especially in coastal-zone waters, necessitating their sensitive determination. Metal-organic frameworks (MOFs) based molecularly imprinted polymers (MIPs) composites have demonstrated excellent versatility, recognition properties, and practical applicability in the sample preparation. Herein, zeolitic imidazolate frameworks (ZIFs)-8 (ZIF-8) as a kind of typical MOF material, was employed as the support of MIPs and the resultant ZIF-8-MIPs were used for solid-phase extraction (SPE) of fluoroquinolones (FQs) in coastal-zone environmental water samples followed by high-performance liquid chromatography (HPLC) determination. The composites were facilely prepared via precipitation polymerization combined with surface imprinting, using enrofloxacin (ENR) as template molecule. The composition, structure and morphology of ZIF-8@MIPs were well characterized, and the adsorption followed pseudo-second-order kinetic and Langmuir isotherm models. Rapid adsorption equilibrium can be reached within 30 min, with a maximum adsorption capacity of 79.97 mg/g. Then, key parameters of SPE packed with ZIF-8@MIPs were systematically investigated. Under the optimal conditions, a sensitive SPE-HPLC method was developed towards four FQs, offering high enrichment factors of 82-153. Excellent linearity was attained in the wide range of 0.1-200 μg/L, and the limits of detection were as low as 0.024-0.034 μg/L together with limits of quantitation within 0.081-0.113 μg/L. The matrix effect values in the tested coastal waters including seawater, aquaculture wastewater, lake water, and river water, were from -6.69% to 5.47%, indicating the ZIF-8@MIPs-SPE efficiently eliminated matrix interference and ensured accurate reliable quantification. Consequently, in all the four water samples, high recoveries ranged from 91.4 to 105.2%, with low relative standard deviations of 1.8-8.7%. This study can enrich the research connotation of MOF@MIPs composites based sample preparation and provide an alternative detection scheme for the monitoring of trace antibiotics in complicated matrices.
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