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A layer-by-layer deposition mechanism for producing a pyrolytic carbon coating on carbon nanotubes

机译:用于在碳纳米管上产生热解碳涂层的逐层沉积机制

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摘要

Pyrolytic carbon (PyC) was deposited on carbon nanotubes (CNTs) in order to modify them by introducing defects to their surface. The deposition of PyC was carried out at temperature between 800 and 1000 °C using propane as carbon source with or without a hydrogen carrier gas at low pressure of 20 kPa. The structure of PyC coatings was examined using transmission electron microscopy. The PyC coating could be distinguished from the original CNT walls due to the difference of the structure, with the coating showing a less orderly layer structure. When H2 was introduced during deposition, PyC coating started to form at 900 °C, and the deposition rate increased rapidly with increasing temperature. Without H2, PyC coating with a thickness of a few layers could be formed at temperatures between 800 and 900 °C in 10 min. The outmost layer of the PyC coating showed a structure of rough and curved carbon fragment. A layer-by-layer mechanism is proposed for the deposition consisting of alternating fragment formation (nucleation) and lateral growth to layer.
机译:热解碳(PyC)沉积在碳纳米管(CNT)上,以通过将缺陷引入其表面来对其进行改性。使用丙烷作为碳源,在有或没有氢气载气的情况下,在20 kPa的低压下,于800至1000°C的温度下进行PyC的沉积。使用透射电子显微镜检查了PyC涂层的结构。由于结构的不同,PyC涂层可与原始CNT壁区分开,涂层显示的层状结构较少。在沉积过程中引入H2时,PyC涂层在900°C时开始形成,并且沉积速率随温度的升高而迅速增加。如果没有氢气,则可以在10分钟内在800至900°C的温度下形成几层厚度的PyC涂层。 PyC涂层的最外层显示出粗糙和弯曲的碳碎片结构。提出了一种用于沉积的逐层机制,该机制由交替的碎片形成(成核)和横向生长到层组成。

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