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Early stages in the nucleation process of carbon nanotubes

机译:碳纳米管成核过程的早期阶段

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The early stages of carbon nanotube nucleation are investigated using field ion/electron microscopy along with in situ local chemical probing of a single nanosized nickel crystal. To go beyond experiments, tight-binding Monte Carlo simulations are performed on oriented Ni slabs. Real-time field electron imaging demonstrates a carbon-induced increase of the number density of steps in the truncated vertices of a polyhedral Ni nanoparticle. The necessary diffusion and step-site trapping of adsorbed carbon atoms are observed in the simulations and precede the nucleation of graphene-based sheets in these steps. Chemical probing of selected nanofacets of the Ni crystal reveals the occurrence of C _n (n=1-4) surface species. Kinetic studies prove C_(2+) species are formed from C1 with a delay time of several milliseconds at 623 K. Carbon dimers, C_2, must not necessarily be formed on the Ni surface. Tight-binding Monte Carlo simulations reveal the high stability of such dimers in the first layer beneath the surface.
机译:碳纳米管成核的早期阶段使用场离子/电子显微镜以及单个纳米级镍晶体的原位局部化学探测进行了研究。除了实验以外,还对取向的Ni板进行了紧密结合的Monte Carlo模拟。实时场电子成像表明,碳诱导的多面体Ni纳米粒子的截顶顶点的步数密度增加。在模拟中观察到了吸附碳原子的必要扩散和阶跃位阱,并在这些步骤中先于石墨烯基片的成核。 Ni晶体选定纳米面的化学探测揭示了C_n(n = 1-4)表面物质的出现。动力学研究证明C_(2+)是由C1形成的,在623 K时的延迟时间为几毫秒。碳二聚体C_2不一定必须在Ni表面形成。紧密结合的蒙特卡洛模拟显示了表面之下第一层中此类二聚体的高度稳定性。

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