The selective and rapid elimination of refractory organic pollutants from surface water is significant. However, the relationship of between reactive oxygen species (ROSs) and diversified pollutants molecular structures still needs to be further clarified. Here, we utilize polydopamine (PDA)-assisted coating strategy to prepare hollow 2D carbon nanosheet (ZPL-HCNS) and 2D Co3O4 nanosheet (ZPL-Co3O4) by thermolysis of PDA coated ZIF-L (ZIFL@PDA) precursor under different gas atmosphere, which realizes the controlled generation of radicals and nonradicals. Organic pollutants including bisphenols, sulfonamides, quinolones, tetracyclines, and azo dyes are applied to assess the catalytic performance. Results show that dyes containing azo structure are more likely to be degraded by radical process, which is due to that the energy (Delta E) requirements to break the azo bond is higher than energy released from singlet oxygen to oxygen molecule and lower than that of sulfate radical to sulfate. Frontier molecular orbital theory HOMO-LUMO and Fukui function expounded the possible selectivity mechanism. In addition, the degradation pathway and biotoxicity test are carried out. This work provides a reference to illustrate the selective degradation for ROSs and molecular structure of pollutants.
机构:
Univ Paris 05, UFR Biomed St Peres, F-75006 Paris, France
Univ Toulouse 3, IRD UMR 152, F-31062 Toulouse, FranceUniv Paris 05, Dept Biol Expt Metab & Clin, Fac Sci Pharmaceut & Biol, EA 4466, F-75006 Paris, France
Collin, Fabrice
Jore, Daniel
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Univ Paris 05, UFR Biomed St Peres, F-75006 Paris, FranceUniv Paris 05, Dept Biol Expt Metab & Clin, Fac Sci Pharmaceut & Biol, EA 4466, F-75006 Paris, France
Jore, Daniel
Gardes-Albert, Monique
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Univ Paris 05, UFR Biomed St Peres, F-75006 Paris, FranceUniv Paris 05, Dept Biol Expt Metab & Clin, Fac Sci Pharmaceut & Biol, EA 4466, F-75006 Paris, France