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首页> 外文期刊>Physical Review, B. Condensed Matter >Electronic structures of capped carbon nanotubes under electric fields - art. no. 165418
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Electronic structures of capped carbon nanotubes under electric fields - art. no. 165418

机译:在电场下加盖的碳纳米管的电子结构-艺术。没有。 165418

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摘要

We have investigated the electronic structure of capped carbon nanotubes under electric fields by density functional calculations. The calculated effective work function of the capped armchair nanotubes decreases linearly with increasing electric fields, whereas that of the metal tip decreases quadratically. We analyzed the density of states, highest occupied molecular orbitals (HOMO's) and lowest unoccupied molecular orbitals (LUMO's) for various charged states under electric fields. While the HOMO and the LUMO are not localized at the cap for a neutral state, the HOMO and LUMO of a negatively charged state are localized at the cap, particularly under electric fields. This localization plays an important role in the field emission. The Mulliken charge population shows that the charge accumulation is not dependent on the local atomic geometry but on the sharpness of the tip. [References: 28]
机译:我们已经通过密度泛函计算研究了在电场下封端的碳纳米管的电子结构。封闭的扶手椅状碳纳米管的有效功函数随电场的增加而线性下降,而金属尖端的有效功函数则呈二次方下降。我们分析了电场下各种带电状态的状态密度,最高占据分子轨道(HOMO's)和最低未占据分子轨道(LUMO's)。尽管对于中性状态,HOMO和LUMO并未定位在瓶盖上,但带负电状态的HOMO和LUMO却位于瓶盖上,特别是在电场下。这种定位在场发射中起重要作用。 Mulliken电荷总数表明,电荷积累不取决于局部原子的几何形状,而是取决于尖端的锋利度。 [参考:28]

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