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Doping the armchair single-walled carbon nanotubes by silicon substitutions: A density functional theory study

机译:用硅取代掺杂扶手椅单壁碳纳米管:密度泛函理论研究

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In this paper the nanotubes obtained by silicon atoms substitutionally doping the armchair single-walled carbon nanotubes were investigated by quantum chemistry calculations under the framework of density functional theory. The geometrical structures, relative stabilities and electronic properties of the fifteen Si-doped tubes were studied in details and compared with those of the pristine (5, 5) tubes. It is found that the Si atoms tend to “pop out” from the original positions when the silicon atoms are introduced into the nanotubes. The Si-doped nanotubes exhibit lower thermodynamic stability than those of the undoped tubes from viewpoint of cohesive energy, and this is similar to the case of the silicon doped zigzag nanotubes. The energy levels of the frontier orbitals vary very little when the silicon atom is introduced into the nanotubes. However, most hybrid nanotubes present smaller energy gaps than those of the pristine ones.
机译:在本文中,在密度函数理论框架下,通过量子化学计算研究了通过硅原子获得的纳米管,在密度函数理论框架下,研究了量子化学计算。在细节中研究了十五个Si掺杂管的几何结构,相对稳定性和电子性质,并与原始(5,5)管相比。发现当硅原子被引入纳米管中时,Si原子倾向于从原始位置“弹出”。从粘性能量的观点来看,Si掺杂的纳米管比未掺杂管的热力学稳定性较低,这类似于硅掺杂Z字形纳米管的情况。当将硅原子引入纳米管中时,前沿轨道的能量水平变化很小。然而,大多数杂交纳米管比原始纳米管呈较小的能量间隙。

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