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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Molecular dynamics simulations of the transformation of carbon peapods into double-walled carbon nanotubes
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Molecular dynamics simulations of the transformation of carbon peapods into double-walled carbon nanotubes

机译:碳豆荚转变为双壁碳纳米管的分子动力学模拟

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The transformation of carbon peapods (encapsulated fullerenes in nanotubes) into double-walled nanotubes was studied using molecular dynamics simulation. The simulations reproduce the two main trends known experimentally: the production of low-defect nanotubes and the templating effect of the outer tube. The process involves a low-temperature polymerization of the fullerenes followed by higher temperature self-assembly into a tube. Modelling of this second stage is made possible by the use of the Environment-Dependent Interaction Potential, a large number of atoms and long-time annealing. Analysis shows that the outer tube acts as a container for the self-assembly process, analogous to previous simulations and experiments in which free surfaces, either external or internal, template the formation of highly ordered sp2 phases.
机译:用分子动力学模拟研究了碳豌豆(纳米管中的富勒烯)向双壁纳米管的转化。模拟重现了实验上已知的两个主要趋势:低缺陷纳米管的生产和外管的模板效应。该方法涉及富勒烯的低温聚合,然后高温自组装成管。通过使用依赖于环境的相互作用势,大量原子和长时间退火,可以对第二阶段进行建模。分析表明,外管充当自组装过程的容器,类似于先前的模拟和实验,在该模拟和实验中,外部或内部的自由表面形成了高度有序的sp2相的模板。

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