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Excimer laser nanostructuring of nickel thin films for the catalytic growth of carbon nanotubes

机译:镍薄膜的准分子激光纳米结构化,用于碳纳米管的催化生长

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Pulse laser ablation and subsequent laser nanostructuring at room temperature has been employed to produce nanostructured Ni on SiO_(2)/Si substrates for catalytic growth of carbon nanotubes. The resultant nanostructured surface is seen to consist of nanometer sized hemispherical droplets whose mean diameter is controlled by the initial metal thickness, which in turn is readily controlled by the number of laser pulses. Vertically aligned multiwall carbon nanotube mats were then grown using conventional plasma enhanced chemical vapor deposition. We show that within a single processing technique it is possible to produce the initial metal-on-oxide thin film to a chosen thickness but also to be able to alter the morphology of the film to desired specifications at low macroscopic temperatures using the laser parameters. The influence of the underlying oxide is also explored to explain the mechanism of nanostructuring of the Ni catalyst.
机译:脉冲激光烧蚀和随后在室温下进行的激光纳米结构化已被用于在SiO_(2)/ Si衬底上生产纳米结构化的Ni,以催化碳纳米管的生长。看到所得的纳米结构表面由纳米尺寸的半球形液滴组成,其平均直径由初始金属厚度控制,而金属初始厚度又容易由激光脉冲的数量控制。然后使用常规的等离子体增强化学气相沉积法生长垂直排列的多壁碳纳米管垫。我们表明,在单一的处理技术中,可以将初始的金属氧化物薄膜生产到选定的厚度,而且还可以使用激光参数在低宏观温度下将薄膜的形态改变为所需的规格。还探讨了底层氧化物的影响,以解释Ni催化剂的纳米结构化机理。

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