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Updated: Apr 22, 2026

A Complete Method for Evaluating the Performance of Photocatalysts for the Degradation of Antibiotics in Environmental Remediation
Published on: October 6, 2022
Highly Water-Stable and Visible-Light-Responsive Ag@Al-TCPP MOFs for Enhanced Photochemical Transformation of
Hongyue Sun1, Zijun Guo1, Shufang Yan1
1College of Chemistry, Chemical Engineering and Resource Utilization, Northeast Forestry University, No. 26 Hexing Road, Harbin 150040, China.
Abstract:
In this study, a series of Ag@Al-TCPP metal-organic frameworks (MOFs) with uniformly dispersed, small-sized silver nanoparticles (Ag NPs) on starfruit-shaped porphyrin Al-MOFs were fabricated through a facile two-step process involving hydrothermal and solvent-assisted thermal reduction methods. Benefiting from the excellent light-harvesting ability of the porphyrin ligand, the strong coordination of Al-O bonds, and the modification of Ag NPs, Ag@Al-TCPP MOFs exhibit broad light absorption, good chemical stability, and enhanced photogenerated charge separation and transfer. Under visible-light irradiation, Ag@Al-TCPP-2 achieved a removal efficiency of 86.3% for 20 mg L-1 tetracycline (TC) in a 50 mL solution within 90 min, with the average photodegradation rate of TC being 0.169 mg L-1 min-1. This situation is approximately 1.32 times higher than that of pure Al-TCPP (0.128 mg L-1 min-1). Radical trapping experiments and electron paramagnetic resonance tests demonstrated that photogenerated holes and superoxide radicals (•O2-) are the key reactive species responsible for the degradation of TC. What's more, research indicates that the Ag NPs modification renders Al-MOFs thermodynamically more conducive to •O2- generation, leading to improved TC degradation performance. This study provides a convenient and effective approach for synthesizing highly efficient water-stable MOF-based photocatalysts for the treatment of antibiotic pollution.
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