Romero Aldo H, Garcia Martin E, Valencia Felipe, Terrones Humberto, Terrones Mauricio, Jeschke Harald O
CINVESTAV Querétaro, Libramiento Norponiente No 2000, 76230 Querétaro, Mexico.
Nano Lett. 2005 Jul;5(7):1361-5. doi: 10.1021/nl050626t.
All self-assembled nanostructures, like carbon nanotubes, exhibit structural imperfections that affect their electronic and mechanical properties and constitute a serious problem for the development of novel electronic nanodevices. Very common defects in nanotubes are pentagon-heptagon pairs, in which the replacement of four hexagons by two pentagons and two heptagons disrupts the perfect hexagonal lattice. In this work, we demonstrate that these defects can be eliminated efficiently with the help of femtosecond laser pulses. By performing nonadiabatic molecular dynamics simulations, we show that in the laser-induced electronic nonequilibrium the pentagon-heptagon pair is transformed back into four hexagons without producing any irreversible damage to the rest of the nanotube.
所有自组装纳米结构,如碳纳米管,都存在影响其电学和力学性能的结构缺陷,这对新型电子纳米器件的开发构成了严重问题。纳米管中非常常见的缺陷是五边形 - 七边形对,其中用两个五边形和两个七边形取代四个六边形会破坏完美的六边形晶格。在这项工作中,我们证明借助飞秒激光脉冲可以有效消除这些缺陷。通过进行非绝热分子动力学模拟,我们表明在激光诱导的电子非平衡状态下,五边形 - 七边形对会变回四个六边形,而不会对纳米管的其余部分造成任何不可逆的损伤。