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首页> 外文期刊>RSC Advances >Highly efficient and simultaneous catalytic reduction of multiple dyes using recyclable RGO/Co dendritic nanocomposites as catalyst for wastewater treatment
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Highly efficient and simultaneous catalytic reduction of multiple dyes using recyclable RGO/Co dendritic nanocomposites as catalyst for wastewater treatment

机译:使用可回收的RGO / CO树枝状纳米复合材料作为废水处理催化剂的高效和同时催化催化还原多染料

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摘要

Development of a low cost, highly efficient and easily retrievable catalyst with improved reusability is a major challenge in the area of advanced catalysts. In this study, we report a simple one-step approach for the fabrication of a reduced graphene oxide (RGO)/Co dendritic nanocomposite. The structure and morphology of the as synthesized material are thoroughly examined by XRD, Raman, FTIR, TEM, and SEM. The magnetic properties of the RGO/Co dendritic nanocomposite reveal that it exhibits ferromagnetic behavior at room temperature with high saturation magnetization. The catalytic activity of the RGO/Co dendritic nanocomposite was investigated for the reduction of different dyes namely, 4-nitrophenol, methylene blue, methyl orange and rhodamine B individually, and their mixture in the presence of a sufficient amount of NaBH4. RGO/Co dendritic nanocomposite exhibits excellent catalytic activity as compared to the bare Co dendritic structure. The catalyst could be easily separated by an external magnet and recycled magnetically with no major loss of catalytic activity upto five cycles. The high catalytic efficiency, low cost and easy recycle technique make RGO/Co dendritic nanocomposite a proficient catalyst for degradation of organic dyes.
机译:开发低成本,高效且易于检索的催化剂,具有改善的可重用性是晚期催化剂领域的主要挑战。在这项研究中,我们报告了一种简单的一步方法,用于制造一氧化物氧化物(RGO)/ Co树枝状纳米复合材料。通过XRD,拉曼,FTIR,TEM和SEM彻底检查AS合成材料的结构和形态。 RGO / Co树突纳米复合材料的磁性表明它在室温下具有高饱和磁化强度的铁磁性行为。研究了RGO / CO树枝状纳米复合物的催化活性,用于将不同的染料减少,即单独的4-硝基苯酚,亚甲基蓝,甲基橙和罗丹明B,以及它们在足够量的NaBH 4存在下的混合物。与裸CO树枝状结构相比,Rgo / Co树枝状纳米复合材料表现出优异的催化活性。催化剂可以通过外部磁铁容易地分开,并且磁性地再循环,没有大量的催化活性损失高达五个循环。高催化效率,低成本且易再循环技术使RGO / CO树枝状纳米复合材料成为有机染料的降解的易碎催化剂。

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  • 来源
    《RSC Advances》 |2016年第108期|共9页
  • 作者单位

    Indian Inst Technol Dept Met Engn &

    Mat Sci Bombay 400076 Maharashtra India;

    Indian Inst Technol Dept Met Engn &

    Mat Sci Bombay 400076 Maharashtra India;

    Indian Inst Technol Dept Met Engn &

    Mat Sci Bombay 400076 Maharashtra India;

    Indian Inst Sci Solid State &

    Struct Chem Unit Bangalore 560012 Karnataka India;

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  • 正文语种 eng
  • 中图分类 化学;
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