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Magnetically responsive SnFe_2O_4/g-C_3N_4 hybrid photocatalysts with remarkable visible-light-induced performance for degradation of environmentally hazardous substances and sustainable hydrogen production

机译:具有显着可见光诱导性能的具有磁性的SnFe_2O_4 / g-C_3N_4杂化光催化剂,可降解环境有害物质并持续生产氢

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SnFe2O4/g-C3N4 (SFO/CN) hybrids were fabricated as efficient magnetically recoverable and visible-light-responsive photocatalysts via a facile in situ precipitation method. The photocatalytic activities of the fabricated SFO/CN hybrids were assessed on the basis of their ability to degrade environmentally hazardous dyes (Rhodamine B, methylene blue, and methyl orange) and to produce H-2 under visible light. The SFO/CN hybrids displayed outstanding performance toward both the elimination of dye pollutants and the production of H-2, demonstrating several-fold enhancements compared with the performances of the hybrids' CN and SFO components and a commercial P25 catalyst. This enhancement in the photocatalytic performance of the SFO/CN hybrids predominantly corresponds to the synergetic effect between CN and SFO that improves not only their specific surface area and optical absorption capability but also the separation efficiency of photoexcited electrons and holes. Total organic carbon analysis further demonstrated the efficient mineralization of model dye molecules over the SFO/CN hybrids. In addition, the SFO/CN hybrids could be easily recovered magnetically and exhibited notable recyclability without obvious loss of activity after five consecutive photocatalytic test cycles, demonstrating their strong potential for use in practical applications, especially pollutant elimination and sustainable H-2 production.
机译:通过简便的原位沉淀法将SnFe2O4 / g-C3N4(SFO / CN)杂化物制成高效的可磁回收和可见光响应的光催化剂。基于其降解环境有害染料(若丹明B,亚甲基蓝和甲基橙)并在可见光下产生H-2的能力,评估了制成的SFO / CN杂化物的光催化活性。 SFO / CN杂化物在消除染料污染物和产生H-2方面均表现出卓越的性能,与杂化物的CN和SFO组分以及市售P25催化剂相比,表现出数倍的增强。 SFO / CN杂化物的光催化性能增强主要对应于CN和SFO之间的协同效应,不仅提高了它们的比表面积和光吸收能力,而且还提高了光激发电子和空穴的分离效率。总有机碳分析进一步证明了SFO / CN杂种上模型染料分子的有效矿化作用。此外,在连续五个光催化测试循环后,SFO / CN杂化物可以很容易地被磁性回收并显示出显着的可回收性,而没有明显的活性损失,这表明它们在实际应用中具有强大的潜力,尤其是消除污染物和可持续的H-2生产。

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