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Morphology Study of Prepared Carbon Nanotubes using Palm Oil as Carbon Source in Spray Pyrolysis Chemical Vapor Deposition

机译:使用棕榈油作为喷雾热解化学气相沉积中棕榈油作为碳源的制备碳纳米管的形态学研究

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Surface morphology study on the influence of starting carbon materials by using newly developed spray pyrolysis chemical vapor deposition (Spray-CVD) to produced carbon nanotubes (CNTs) is investigated. The CNTs derived from palm oil as carbon sources weresynthesized in Argon gas ambient by using Spray-CVD system. The major parameters are also evaluated in order to obtain high-yield and high-quality CNTs. The prepared CNTs are examined using field emission scanning electron microscopy (FESEM) and high resolution transmission electron microscope (HR-TEM) to determine the microstructure of nanocarbons. The FESEM investigation of the CNTs formed on the support catalysts provides evidence that palm oil can serve as a precursor materials for nanotubes formation. The high-temperature graphitization process induced by the Spray-CVD enables the hydrocarbons to act as carbon sources and changes the aromatic species into the layered graphite structure of CNTs. The palm oil of hydrocarbons not only found acts as the precursors but also enhances the production rate of CNTs.
机译:研究了通过使用新开发的喷雾热解化学气相沉积(喷雾CVD)产生碳纳米管(CNT)来产生碳纳米管(CNT)的表面形态学研究。通过使用喷雾-CVD系统,从棕榈油衍生自棕榈油作为碳源在氩气环境中加入。还评估了主要参数,以获得高产和高质量的CNT。使用场发射扫描电子显微镜(FESEM)和高分辨率透射电子显微镜(HR-TEM)检查制备的CNT,以确定纳米碳的微观结构。在载体催化剂上形成的CNT的FESEM研究提供了棕榈油可以用作纳米管形成的前体材料。喷雾CVD诱导的高温石墨化方法使烃能够充当碳源并将芳族物质改变为CNT的层状石墨结构。碳氢化合物的棕榈油不仅被发现为前体,而且增强了CNT的生产率。

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