首页> 外文期刊>力学学报:英文版 >THE COUPLED EFFECTS OF MECHANICAL DEFORMATION AND ELECTRONIC PROPERTIES IN CARBON NANOTUBES
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THE COUPLED EFFECTS OF MECHANICAL DEFORMATION AND ELECTRONIC PROPERTIES IN CARBON NANOTUBES

机译:碳纳米管的机械变形和电子特性的耦合效应

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摘要

Coupled effects of mechanical and electronic behavior in single walled carbon nanotubes are investigated by using quantum mechanics and quantum molecular dynamics. It is found that external applied electric fields can cause charge polarization and significant geometric deformation in metallic and semi-metallic carbon nanotubes. The electric induced axial tension ratio can be up to 10% in the armchair tube and 8.5% in the zigzag tube. Pure external applied load has little effect on charge distribution, but indeed influences the energy gap. Tensile load leads to a narrower energy gap and compressive load increases the gap. When the CNT is tensioned under an external electric field, the effect of mechanical load on the electronic structures of the CNT becomes significant, and the applied electric field may reduce the critical mechanical tension load remarkably. Size effects are also discussed.
机译:通过使用量子力学和量子分子动力学研究了单壁碳纳米管中机械和电子行为的耦合效应。发现外部施加的电场可以在金属和半金属碳纳米管中引起电荷极化和显着的几何变形。扶手椅管中的电感应轴向张力比可以高达10%,而之字形管中则可以高达8.5%。纯外部施加的负载对电荷分布几乎没有影响,但实际上会影响能隙。拉伸载荷导致能隙变窄,而压缩载荷使能隙变大。当CNT在外部电场下张紧时,机械载荷对CNT的电子结构的影响变得显着,并且施加的电场可显着降低临界机械张力载荷。还讨论了尺寸效应。

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