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Enhanced activity for reduction of 4-nitrophenol of Ni/single-walled carbon nanotube prepared by super-growth method

机译:超生长法制备的Ni/单壁碳纳米管4-硝基苯酚还原活性的增强

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In this study, we synthesised the Ni/single-walled carbon nanotube prepared by the super-growth method (SG-SWCNTs). In this approach, the Ni nanoparticles were immobilised by an impregnation method using the SG-SWCNTs with high specific surface areas (1144 m(2) g(-1)). The scanning electron microscopy images confirmed that the SG-SWCNTs exhibit the fibriform morphology corresponding to the carbon nanotubes. In addition, component analysis of the obtained samples clarified that the Ni nanoparticles were immobilised on the surface of the SG-SWCNTs. Next, we evaluated the activity for the reduction of 4-nitoropenol in the presence of the Ni/SG-SWCNTs. Additionally, the Ni/graphene, which was obtained by the same synthetic method, was utilised in this reaction. The rate of reaction activity of the Ni/SG-SWCNTs finished faster than that of the Ni/GPs. From this result, the pseudo-first-order kinetic rate constant k for the Ni/SG-SWCNTs and the Ni/GPs was calculated respectively at 0.083 and 0.070 min(-1), indicating that the Ni/SG-SWCNTs exhibits higher activity.
机译:本研究合成了超生长法制备的Ni/单壁碳纳米管(SG-SWCNTs)。在这种方法中,使用具有高比表面积(1144 m(2) g(-1))的SG-SWCNTs的浸渍方法固定Ni纳米颗粒。扫描电镜图像证实,SG-SWCNTs表现出与碳纳米管相对应的纤维状形貌。此外,对所获得样品的成分分析表明,Ni纳米颗粒被固定在SG-SWCNTs的表面。接下来,我们评估了在Ni/SG-SWCNTs存在下还原4-硝基五氯环醇的活性。 此外,在该反应中使用了通过相同合成方法获得的Ni/石墨烯。Ni/SG-SWCNTs的反应活性速率比Ni/GPs快。根据该结果,Ni/SG-SWCNTs和Ni/GPs在0.083和0.070 min(-1)处分别计算了Ni/SG-SWCNTs的准一级动力学速率常数k,表明Ni/SG-SWCNTs表现出更高的活性。

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