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Excellent photocatalytic reduction of nitroarenes to aminoarenes by BiVO4 nanoparticles grafted on reduced graphene oxide (rGO/BiVO4)

机译:通过Bivo4纳米颗粒在还原的氧化石墨烯(RGO / Bivo4)上通过Bivo4纳米颗粒对氨基甲烷的优异的光催化还原氨基甲烷(Rgo / Bivo4)

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摘要

A novel heterogeneous composite material based on reduced graphene oxide (rGO) and bismuth vanadate (BiVO4) was prepared and characterized by various techniques such as powder XRD, HRTEM, EADX, UV-Vis-DRS, FT-IR, Raman, BET and XPS analyses. The characterization results reveal that the rGO well decorated by BiVO4. The electrochemical impedance spectroscopy (EIS) shows the increasing of charge transfer of rGO/BiVO4 in presence of light irradiation. In this research, the pure BiVO4 and rGO/BiVO4 composite have been explored for photocatalytic reduction of nitroarenes. Among the prepared nanocomposites, rGO loaded with 10% BiVO4 catalyst (noted as rGO/BiVO4-10%) shows the best performance for the photo-reduction of various nitroaromatic molecules to their corresponding amine compounds under visible-light irradiation at room temperature. The catalyst exhibited in particular excellent photocatalytic activity for the conversion of 1,4-dinitrobenzene to 4-nitroanilline (100% conversion) in 20 min, 4-chloronitrobenzene to 4-chloroaniline and 2-nitrophenol to 2-aminophenol (100% conversion) in only 30 min. In addition, the conversion of 4-bromonitrobenzene, 4-iodonitrobenzene to their corresponding amine compounds (100% conversion) was achieved in 60 min. The catalyst was recovered for several times and reused without decreasing of its efficiency.
机译:制备基于石墨烯氧化物(RGO)和钒酸盐(BIVO4)的新型异构复合材料,并以各种技术为特征,例如粉末XRD,HRTEM,EADX,UV-Vis-DRS,FT-IR,拉曼,BET和XPS分析。表征结果表明,rgo良好的Bivo4装饰。电化学阻抗光谱(EIS)显示在光照射存在下rgo / Bivo4的电荷转移的增加。在本研究中,已经探讨了纯BIVO4和RGO / BIVO4复合材料,用于硝基甲烷的光催化还原。在制备的纳米复合材料中,用10%BIVO4催化剂的RGO(以RGO / BIVO4-10%指出)显示出在室温下可见光照射下的各种硝基芳族分子的最佳性能。将1,4-二硝基苯(100%转化率)在20分钟,4-氯硝基苯和2-硝基苯酚中转化为4-硝基苯甲酸(100%转化率),特别优异的光催化活性。只有30分钟。此外,在60分钟内实现了4-溴硝苯,4-碘硝基苯4-碘硝基苯(100%转化)。回收催化剂几次并重复使用而不降低其效率。

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