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Highly efficient and recyclable catalyst: porous Fe3O4-Au magnetic nanocomposites with tailored synthesis

机译:高效且可回收催化剂:多孔Fe3O4-Au磁性纳米复合材料,具有量身定制的合成

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摘要

In this work, we reported the tailored design of highly efficient Fe3O4-Au magnetic nanocomposite (MNP) catalysts. Fe3O4 nanocrystals with three different morphologies have been developed with engineered amounts of urea, and the plausible mechanism has been proposed. Then by controlling the amount of Au seeds, Fe3O4-Au MNPs with different morphologies and tunable Au deposition have been realized. Characterizations including x-ray diffraction (XRD), transmission electron microscopy (TEM), Mossbauer spectra, and elemental mapping are implemented to unveil the structural and physical characteristics of the successfully developed Fe3O4-Au MNPs with different morphologies. The catalytic ability of Fe3O4-Au MNPs with different morphologies have been compared by applying them to degrading RhB and 4-NP, meanwhile the correlation between the amount of Au seeds and the turnover frequency as well as the catalytic ability of Fe3O4-Au MNPs is investigated systematically. We found that the flower-like Fe3O4-Au MNPs with 20 ml Au seeds added achieved the best degradation efficiency of 96.7%, and their catalytic ability were almost unchanged after recycling. Out study sheds the light into the tailored design of highly efficient and recyclable catalysts for RhB and 4-NP.
机译:在这项工作中,我们报道了高效Fe3O4-Au磁性纳米复合材料(MNP)催化剂的定制设计。已经开发了具有三种不同形态的Fe3O4纳米晶体,具有工程化的尿素,并提出了合理的机制。然后通过控制Au种子的量,已经实现了具有不同形态和可调谐Au沉积的Fe3O4-Aumnps。实施包括X射线衍射(XRD),透射电子显微镜(TEM),Mossbauer光谱和元素映射的特征,以推出成功开发的Fe3O4-Au MNP的结构和物理特性,具有不同的形态。通过将其施加到降解的RHB和4-NP来比较Fe3O4-Au mnps具有不同形态的催化能力,同时Au种子和周转频率与Fe3O4-aumps的催化能力之间的相关性系统地调查。我们发现,具有20mlα的花朵Fe3O4-Aumnps加入了20ml种子的最佳降解效率为96.7%,回收后几乎不变。外出的研究将光线缩小为rhb和4-np的高效和可回收催化剂的量身定制设计。

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