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Considering the effect of different arrangements of pentagons on density of states of capped carbon nanotubes

机译:考虑五边形的不同排列对封端碳纳米管状态密度的影响

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摘要

We have used a non-equilibrium surface Greens function matching formalism combined with a tight-binding Hamiltonian to consider the effect of different arrangements of pentagon rings on localization of density of states at the tip regions of semi-infinite capped carbon nanotubes. The transfer matrixes are obtained by an iterative procedure. The results demonstrate that the positions of the peaks near Fermi energy are remarkably affected by the relative locations of pentagons. It is observed that in thin nanotubes, carbon atoms belonging two neighboring pentagon rings have significant contribution in the localized states near fermi energy. From our calculations, it turns out that the metallic or semiconducting behavior of capped nanotubes in the tip regions depends on the metallic or semiconducting nature of their nanotube stems.
机译:我们已经使用非平衡表面格林函数匹配形式主义与紧密结合的哈密顿量来考虑五边形环的不同排列对半无限封端碳纳米管尖端区域状态密度的影响。通过迭代过程获得转移矩阵。结果表明,费米能量附近的峰的位置受五边形的相对位置的影响很大。观察到在薄的纳米管中,属于两个相邻的五边形环的碳原子在费米能量附近的局部态中具有重要的作用。根据我们的计算,结果表明,封端纳米管在尖端区域的金属或半导体行为取决于其纳米管茎的金属或半导体性质。

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