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Synthesis of Narrow Diameter Multiwalled Carbon Nanotubes (MWNTs) By Catalytic Chemical Vapor Deposition For Mechanical Reinforcement Applications

机译:用机械加固应用催化化学气相沉积合成窄直径多壁碳纳米管(MWNTs)

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Strong and versatile carbon nanotubes (CNTs) are finding new applications in improving conventional polymer-based fibers. Nanotube-reinforced composites could ultimately provide the foundation for a new class of strong and lightweight fibers with properties such as electrical and thermal conductivity unavailable in current fibers. A recent research has discovered that the best type of nanotube for polymer composite reinforcement is the small diameter multiwalled nanotubes (MWNTs). One serious weakness of all current techniques for preparing MWNTs is that they produce a wide range of tube sizes and structures, which could be a drawback in areas where specific tube structures are needed. Here, a catalytic technique has been developed that has the ability to define the diameter of bulk multiwalled carbon nanotubes grown. The method involved catalytic decomposition of methane over the catalyst at 950°C in a chemical vapor deposition (CVD) system. It includes pre-treatment of iron, nickel and cobalt catalyst with NH_3 gas as the key step to vary the size of catalyst used for the growth and subsequently defined the diameter of CNTs produced. Structural characterizations including scanning electron microscopy (SEM), high resolution transmission electron microscopy (HRTEM), thermo gravimetric analysis and Raman spectroscopy conducted on CNTs grown on three different catalysts, namely iron, cobalt and nickel have indicated that the size and type of catalyst used affects their sizes and crystallinity. With this technique, narrow diameter bulk multiwalled carbon nanotubes in the range of 19 to 38 nm has been produced. It is believed that with this diameter-controlled synthesis, bulk CNTs of certain range of diameter can be produced to fulfill the requirement needed for mechanical reinforcement of polymer composites.
机译:强且通用的碳纳米管(CNT)在改善常规聚合物基纤维中寻找新的应用。纳米管增强复合材料最终可能为新阶级强纤维提供的基础,其具有电流和导热率在当前纤维中不可用。最近的研究发现,用于聚合物复合增强件的最佳类型的纳米管是小直径多壁纳米管(MWNT)。所有当前制备MWNT的技术的一个严重弱点是它们产生多种管尺寸和结构,这可能是所需特定管结构的区域的缺点。这里,已经开发了一种催化技术,其具有限定生长的散装多壁碳纳米管的直径的能力。该方法在化学气相沉积(CVD)系统中,在950℃下涉及催化剂在催化剂上催化分解。它包括用NH_3气体的铁,镍和钴催化剂的预处理作为改变用于生长的催化剂尺寸并随后限定所产生的CNT直径的关键步骤。包括扫描电子显微镜(SEM),高分辨率透射电子显微镜(HRTEM),热重量分析和在三种不同催化剂上生长的CNT,即铁,钴和镍中进行的热重量分析和拉曼光谱的结构表征表明,使用的催化剂的尺寸和类型影响它们的尺寸和结晶度。利用这种技术,已经产生了19至38nm范围内的窄直径散装碳纳米管。据信,通过这种直径控制的合成,可以制造各种直径范围的体CNT以满足聚合物复合材料的机械加固所需的要求。

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