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Bimetallic-atom-hybridization-driven catalytic reaction kinetics and solar utilization to accelerate norfloxacin degradation

APPLIED CATALYSIS B-ENVIRONMENTAL(2021)

引用 19|浏览8
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摘要
The high level of norfloxacin (NOR) in aquatic environment causes bacterial drug resistance and perilous effects on human and aquatic life because of the greater toxicity and the oxidation-refractory property. Herein, we propose a series of porous metal-organic frameworks (MOFs) via a developed solvothermal process to accelerate NOR degradation, in which the solar response and catalytic activity is sharply enhanced through an electronic hybridization between Fe3+ and Co2+ metal center. The time-resolved photoluminescence spectra disclose that electrostatic potential induced by electronegativity difference in bimetallic sites leads to an efficient separation of electron-hole pairs. As a result, the optimized bimetallic MOF sample makes the NOR concentration go down to similar to 20 % within 30 min under sunlight radiation, keeping an unchanged activity after 9 cycles. Our findings provide new inspirations for regulating the photogenic carrier dynamics via bimetallic hybridization strategy in accelerating NOR degradation.
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关键词
Electronic state hybridization,Bimetallic MOF,NOR degradation,Catalytic reaction kinetics
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