4.7 Article

Efficient adsorption and degradation of dyes from water using magnetic covalent organic frameworks with a pyridinic structure

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ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH
卷 30, 期 12, 页码 34669-34683

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SPRINGER HEIDELBERG
DOI: 10.1007/s11356-022-24688-w

关键词

Magnetic COFs; Dyes; Adsorption; Degradation; Mechanism

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In this study, a magnetic COF with a pyridinic structure, BiPy-MCOF, was successfully synthesized and demonstrated superior adsorption and catalytic degradation abilities for organic dyes removal. The introduction of pyridinic N improved the adsorption and degradation efficiency of BiPy-MCOF for methyl orange. Experimental results confirmed the potential sites on MO molecules that may be attacked by free radicals and proposed possible degradation pathways. BiPy-MCOF showed high degradation efficiency not only for MO but also for other dyes applications, indicating its effectiveness as a material for organic dyes removal.
Covalent organic frameworks (COFs) have promising applications in environmental remediation owing to their precise directional synthesis and superior adsorption ability. However, magnetic COFs with pyridinic N have not been studied as bifunctional materials for the adsorption and catalytic degradation of dyes. Therefore, in this study, a magnetic COF with a pyridinic structure ( BiPy-MCOF) was successfully synthesized using a solvothermal method, which exhibited higher methyl orange (MO) removal than other common adsorbents. The best degradation efficiency via the Fenton-like reaction was obtained by pre-adsorbing MO for 3 h at pH 3.1. Both adsorption and catalytic degradation resulted in better removal of MO under acidic conditions. The introduction of pyridinic N improved MO adsorption and degradation on BiPy-MCOF. The electrostatic potential (ESP) showed that pyridinic N had a strong affinity for MO adsorption. Density functional theory calculations confirmed the potential sites on MO molecules that may be attacked by free radicals. Possible degradation pathways were proposed based on the experimental results. Moreover, BiPy-MCOF could effectively degrade MO at least four times, and a high degradation efficiency was obtained in other dyes applications. The coupling of adsorption and degradation demonstrated that the as-prepared BiPy-MCOF was an effective material for organic dyes removal from water.

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