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Electrical and Optical Properties of Carbon Nanotube Hybrid Zinc Oxide Nanocomposites Prepared by Ball Mill Technique

机译:球磨技术制备的碳纳米管杂化氧化锌纳米复合材料的电学和光学性质

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The electrical and optical properties of carbon nanotubes hybrid zinc oxide (ZnO-CNTs) nanocomposites synthesized by ball mill technique have been investigated. The nanocomposites were prepared using zinc oxide (ZnO) powder and carbon nanotube (CNT) synthesized by catalytic thermal chemical vapor deposition (CVD). The diameters and lengths of the CNTs were respectively determined to be 20-30 nm and about 3-5 mu m. DC conductivity measurements reveal that the nanocomposites are good conductive material. The room temperature DC electrical conductivity sigma(dc) of the un-doped ZnO and ZnO-CNT nanocomposites with 0.1% CNT, 0.5% CNT, and 1% CNT were found to be 6.55 x 10(-5), 5.46 x 10(-4), 1.49 x 10(-3), and 4.01 x 10(-3) S/cm, respectively. This indicates that there is a remarkable improvement of the electrical conductivity as the CNTs' content increases. The optical band gaps of the composites were determined by Kubelka-Munk theory based on the analysis of diffuse reflectance. The band gap (E-g) values of the composites decreased with increasing CNT contents. The obtained results indicate that the electrical and optical properties of ZnO semiconductor can be improved by incorporation of CNT.
机译:研究了用球磨技术合成的碳纳米管杂化氧化锌(ZnO-CNTs)纳米复合材料的电学和光学性质。使用氧化锌(ZnO)粉末和通过催化热化学气相沉积(CVD)合成的碳纳米管(CNT)制备纳米复合材料。 CNT的直径和长度分别确定为20-30nm和约3-5μm。直流电导率测量表明,纳米复合材料是良好的导电材料。发现具有0.1%CNT,0.5%CNT和1%CNT的未掺杂ZnO和ZnO-CNT纳米复合材料的室温直流电导率sigma(dc)为6.55 x 10(-5),5.46 x 10( -4),1.49 x 10(-3)和4.01 x 10(-3)S / cm。这表明,随着CNT含量的增加,电导率有了显着提高。在漫反射率分析的基础上,采用Kubelka-Munk理论确定了复合材料的光学带隙。复合材料的带隙(E-g)值随CNT含量的增加而降低。所得结果表明,通过引入CNT可以改善ZnO半导体的电学和光学性质。

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