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Endohedral carbon chains in chiral single-wall carbon nanotubes

机译:手性单壁碳纳米管中的内面碳链

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Using a first-principles, local density functional approach, we report the bond length optimization of endohedral linear carbon chains. In these calculations, all-carbon nanowire structures were constructed by inserting cumulenic linear carbon chains inside the semiconducting (7,3) and metallic (7,4) single-wall carbon nanotubes with radii of similar to 0.35 nm. Our calculations show that the total energy results for the enclohedral chains inside both (7,3) and (7,4) nanotubes are well described with a common total energy curve having an equilibrium bond length of similar to 0.129 nm. The electronic band structures of the carbon nanowires are described in terms of a rigid-band model, with the Fermi level for the carbon nanowire effectively pinned near the top of bands originating from the valence band of the single-wall nanotube. (C) 2006 Wiley Periodicals, Inc.
机译:使用第一原理,局部密度泛函方法,我们报告了内面线性碳链的键长优化。在这些计算中,全碳纳米线结构是通过在半导体(7,3)和金属(7,4)单壁碳纳米管内插入半径为0.35 nm的积碳线性碳链而构建的。我们的计算表明,很好地描述了(7,3)和(7,4)纳米管内部包封链的总能量结果,其常见的总能量曲线的平衡键长类似于0.129 nm。碳纳米线的电子能带结构是根据刚性带模型描述的,碳纳米线的费米能级有效地固定在源自单壁纳米管价带的能带顶部附近。 (C)2006年Wiley Periodicals,Inc.

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