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A study of the electrical properties of carbon nanotube-NiFe_2O_4 composites:Effect of the surface treatment of the carbon nanotubes

机译:碳纳米管-NiFe_2O_4复合材料的电学性能研究:碳纳米管表面处理的影响

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摘要

Novel carbon nanotube-NiFe_2O_4 composite materials have been prepared for the first time by in situ chemical precipitation of metal hydroxides in ethanol in the presence of carbon nanotubes (CNTs) and followed by hydrothermal processing.The obtained composite powders were characterized using XRD,TEM and EDS.The effect of surface oxidation treatment of CNTs on their properties was investigated by FTIR,zeta potential and hydrodynamic radius distribution characterization.Electrical conductivity measurements show that surface oxidation treatment of CNTs can improve the electrical conductivity of the composites more pronouncedly than pristine CNTs do.With 10wt. addition of surface treated CNTs,the electrical conductivity is increased by 5 orders of magnitude.The surface oxidized CNTs are crucial for this significant increase in electrical conductivity,which provides strong adhesion between the nanotubes and the matrix to give a homogeneous carbon nanotube-NiFe_2O_4 composite.
机译:首次在碳纳米管(CNTs)存在下,通过原位化学沉淀将金属氢氧化物在乙醇中,然后进行水热处理,制备了新型碳纳米管NiFe_2O_4复合材料。采用XRD、TEM和EDS对所制得的复合粉末进行了表征。通过FTIR、zeta电位和流体动力学半径分布表征研究了CNT表面氧化处理对其性能的影响。电导率测量表明,与原始碳纳米管相比,碳纳米管的表面氧化处理可以更明显地提高复合材料的电导率。表面处理后的碳纳米管添加量为10wt.%,电导率提高了5个数量级。表面氧化碳纳米管对电导率的显著提高至关重要,它在纳米管和基体之间提供了很强的粘附力,从而形成了均匀的碳纳米管NiFe_2O_4复合材料。

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