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The effect of graphitic target density on carbon nanotube synthesis by pulsed laser ablation method

机译:石墨靶浓度对脉冲激光烧蚀方法碳纳米管合成的影响

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Carbon nanotube (CNT) was synthesized by pulsed laser ablation (PLA) of a graphitic target in vacuum chamber filled by argon gas. The effect of different condition of target preparation on the amount and quality of carbon nanotube generation was investigated. The graphite powder with 2 at% micrometer nickel (Ni) powder was mixed and packed in to a mold using a hydraulic press device at a pressure of 1000 kg/cm~3. The obtained pellet which contained the mixture powder provided the carbon source for CNTs formation in PLA method. Two pellets with the pressure time of 15 and 200 min was prepared. It has been shown that the time which graphitic target is under pressure is an effective parameter that can increase the amount of produced CNTs. Field emission scanning electron microscopy (FESEM) images show that if the density of graphitic target is increased by raising up the pressure time, CNTs can grow even under the condition in which usually no nanotube can be formed. It can be due to the elimination of the distances between the graphite and catalyst grains that causes the catalysis performance improvement. The experiment was performed for nanometer cobalt ferrite (CoF_e2O_4) together with Ni catalyst particles too. The diameter of synthesized CNPs was larger in the case of pure nickel that is related to the size of catalysts. Moreover, it was also observed that the production rate of the nanotubes increased for high density targets. This shows that the results are independent of the type of catalyst.
机译:通过氩气填充的真空室中石墨靶的脉冲激光烧蚀(PLA)合成碳纳米管(CNT)。研究了靶制剂不同条件对碳纳米管生成量和质量的影响。将具有2at%千分比镍(Ni)粉末的石墨粉末混合并在1000kg / cm〜3的压力下使用液压压榨装置填充到模具中。含有混合物粉末的所得颗粒提供了PLA方法中CNT形成的碳源。制备两个压力时间为15-200分钟的颗粒。已经表明,石墨靶在压力下的时间是可以增加产生的CNT的量的有效参数。场发射扫描电子显微镜(FeSEM)图像表明,如果通过升高压力时间来增加石墨靶的密度,即使在通常没有形成纳米管的情况下,CNT也可以生长。它可能是由于消除了导致催化性能改善的石墨和催化剂颗粒之间的距离。该实验与Ni催化剂颗粒一起对纳米钴铁氧体(COF_E2O_4)进行。在纯镍的情况下,合成的CNP的直径较大,其与催化剂的尺寸有关。此外,还观察到,纳米管的生产率增加高密度靶标。这表明结果与催化剂的类型无关。

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