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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Roles of metal-support interaction in growth of single- and double-walled carbon nanotubes studied with diameter-controlled iron particles supported on MgO
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Roles of metal-support interaction in growth of single- and double-walled carbon nanotubes studied with diameter-controlled iron particles supported on MgO

机译:在MgO上负载直径控制的铁粒子研究的金属-载体相互作用在单壁和双壁碳纳米管生长中的作用

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The catalytic growth of single- and double-walled carbon nanotubes (SWNTs and DWNTs) by chemical vapor deposition (CVD) strongly depends on the support material. Not only the presence of nanopores in the support material but also the interaction with metal particles is believed to play an important role. Here, we study the roles of the metal-support interaction by employing iron particles with a mean diameter of 9.8 nm supported on crystalline magnesia (MgO) powder. The crystalline MgO powder has a flat surface with few nanopores so that the change of the metal particle size and the growth of nanotubes can be observed with a transmission electron microscope. We found that the original iron particles became smaller during CVD and that these small particles gave SWNTs and DWNTs when reacted with methane. The decrease in the iron particle size is likely due to thermal diffusion of iron atoms into the MgO matrix, representing strong interaction between the iron particles and the MgO support. Reduction of the catalyst under a hydrogen flow at high temperature was found to suppress nanotube growth due to the increase in the particle size. The present results provide valuable information on the nanotube growth mechanism and could be applied to the diameter-controlled or large-scale synthesis of nanotubes on support materials.
机译:单壁和双壁碳纳米管(SWNT和DWNT)通过化学气相沉积(CVD)的催化生长在很大程度上取决于载体材料。据信不仅载体材料中存在纳米孔,而且与金属颗粒的相互作用也起重要作用。在这里,我们通过使用平均粒径为9.8 nm的铁颗粒负载在结晶氧化镁(MgO)粉末上来研究金属与载体相互作用的作用。结晶的MgO粉末具有很少的纳米孔的平坦表面,因此可以通过透射电子显微镜观察金属粒径的变化和纳米管的生长。我们发现原始的铁颗粒在CVD期间变小,并且这些小颗粒在与甲烷反应时产生SWNT和DWNT。铁颗粒尺寸的减小可能是由于铁原子向MgO基体中的热扩散,代表了铁颗粒与MgO载体之间的强相互作用。发现在高温氢流下催化剂的还原由于粒径的增加而抑制了纳米管的生长。目前的结果提供了有关纳米管生长机理的有价值的信息,并且可以应用于在载体材料上直径控制或大规模合成纳米管。

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