Design of acid-regulated zirconium-based MOFs for efficient enrichment and sensitive detection of sulfonamide
Xiao Tian1, Yaxin Li1, Mengyuan Ren1
1Henan International Joint Laboratory of Medicinal Plants Utilization, College of Chemistry and Molecular Sciences, Henan University, Kaifeng, Henan 475004, China.
Abstract:
Sulfonamide antibiotics (SAs) are widely used broad-spectrum antibacterials whose residues raise serious food safety concerns. Efficient enrichment of trace SAs requires advanced sorbents. Herein, we report that acid-modulated defect engineering in Zr-MOFs (MOF-525-X) significantly enhances their enrichment and detection performance for SAs. Of these, MOF-525-6 exhibited optimal performance, combining rapid kinetics, high capacity (225.07-1173.22 mg g-1), and high enrichment factors (228-446), which collectively surpass most reported SAs sorbents. DFT calculations identified non-covalent interactions as the primary driving force between the sorbent and SAs. Furthermore, a dispersive solid-phase extraction coupling with HPLC-DAD was established, and the method exhibited a wide linear range (0.1-500 ng·mL-1) and low detection limits (0.03-0.13 ng·mL-1). Subsequently, MOF-525-6 was effectively applied to extract trace SAs from chicken, eggs, and milk, achieving high recovery (83.55-109.73 %) and precision (1.73-9.55 %). This work not only provides an efficient sorbent for SAs monitoring but also offers valuable insights into defect-based functional design of MOFs.


