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Catalytic synthesis and purification of carbon nanotubes

机译:碳纳米管的催化合成与纯化

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Carbon deposition on a catalyst surface during decomposition of different carbon-containing compounds can be used for the synthesis of carbon nanotubes of graphitic structure. Different supported transition metal oxides were found to be active in the production of these nanotubes. The selectivity of the catalytic method is significantly higher than that of either the arc discharge or the flame method. The experiments were carried out in a flow system, at 700 deg C, with various acetyleneitrogen feeds. Deposited carbon was ivnestigated by transition electron microscopy. The best samples were selected for further investigation and for the synthesis of carbon nanotubes in large amounts. For the purification, different methods were utilized. Separation of nanotubes from the catalyst (support and metal particles) and from other carbon products (soot, fibres) can be carried out only by the combination of ultrasound and various chemical treatments.
机译:在不同的含碳化合物分解期间在催化剂表面上的碳沉积可用于合成石墨结构的碳纳米管。发现在这些纳米管的生产中不同的负载的过渡金属氧化物是活性的。催化方法的选择性明显高于电弧放电或火焰方法的选择性。实验是在700℃的流动系统中,使用各种乙炔/氮气进料进行的。通过过渡电子显微镜对沉积的碳进行了识别。选择最好的样品用于进一步研究和大量合成碳纳米管。为了纯化,使用了不同的方法。纳米管与催化剂(载体和金属颗粒)以及其他碳产物(烟灰,纤维)的分离只能通过超声和​​各种化学处理的组合来进行。

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