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Controlled production of tubular carbon and BCN architecture

机译:管状碳和BCN结构的受控生产

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摘要

Pure carbon filaments and nanotubes are of interest in materials science because of their remarkable electronic and mechanical properties. In this context, efficient self assembly pyrolytic routes to large arrays of aligned carbon nanotubes and CN_x nanofibers are presented. These routes include hydrocarbon decomposition over preformed metal-cluster substrates and pyrolysis of organometallic compounds. During the thermolytic process, the metal particles are responsible for carbon agglomeration and subsequent tube axial growth. The generation of aligned Fe-filled carbon nanothube films is also described in detail. Nanowire arrangements of this novel kind should find applications in the fabrication of high density magnetic reording devices, as well as fine particle magnets in magnetic inks and toners in xerography. Electronic properties and state-of-the-art electron microscopy studies on these nanostructures are presented. In addition, pyrolytic routes to B_xC_yN_z materials (hybrids of h-BN and graphite) are also described. Finally, the synthesis and recent electronic calculations of WS_2 and MoS_2 nanotubes are briefly discussed.
机译:纯碳丝和纳米管由于其卓越的电子和机械性能而在材料科学中引起了人们的兴趣。在这种情况下,提出了有效的自组装热解路线,该路线具有大的排列的碳纳米管和CN_x纳米纤维阵列。这些途径包括在预制的金属簇基材上进行烃分解以及对有机金属化合物进行热解。在热解过程中,金属颗粒负责碳的团聚和随后的管子轴向生长。还详细描述了对齐的铁填充碳纳米管薄膜的产生。这种新型的纳米线装置应在制造高密度磁记录装置以及静电油墨中的细颗粒磁体和静电复印中的调色剂中得到应用。介绍了这些纳米结构的电子性质和最新的电子显微镜研究。另外,还描述了到B_xC_yN_z材料(h-BN和石墨的杂化物)的热解路线。最后,简要讨论了WS_2和MoS_2纳米管的合成和最新电子计算。

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