论文标题
碳纳米管在高应变速率条件下:分子动力学研究
Carbon Nanotube Peapods Under High-Strain Rate Conditions: A Molecular Dynamics Investigation
论文作者
论文摘要
新形式的碳基材料受到了极大的关注,并且发达的材料发现了许多在纳米技术中的应用。有趣的新型碳结构包括碳豆荚,这些碳豆形由碳纳米管内包装的富勒烯组成。 PEAPOD样纳米结构已成功合成,并已用于光学调制设备,晶体管,太阳能电池和其他设备中。但是,这些结构的机械性能尚未完全阐明。在这项工作中,我们使用了完全原子分子动力学模拟研究,在高晶体速率条件下,碳豆荚的变形是通过以超声速度对刚性底物进行超声速度的peapods来实现的。我们的结果表明,碳PEAPODS在撞击时经历了较大的变形,并经历了多个断裂途径,这主要取决于Peapod和底物之间的相对方向以及冲击速度。观察到的结果包括富勒烯的射血症,碳纳米管骨折,富勒烯和纳米管结合,以及无定形碳结构的形成。
New forms of carbon-based materials have received great attention, and the developed materials have found many applications in nanotechnology. Interesting novel carbon structures include the carbon peapods, which are comprised of fullerenes encapsulated within carbon nanotubes. Peapod-like nanostructures have been successfully synthesized, and have been used in optical modulation devices, transistors, solar cells, and in other devices. However, the mechanical properties of these structures are not completely elucidated. In this work, we investigated, using fully atomistic molecular dynamics simulations, the deformation of carbon peapods under high-strain rate conditions, which are achieved by shooting the peapods at ultrasonic velocities against a rigid substrate. Our results show that carbon peapods experience large deformation at impact, and undergo multiple fracture pathways, depending primarily on the relative orientation between the peapod and the substrate, and the impact velocity. Observed outcomes include fullerene ejection, carbon nanotube fracture, fullerene, and nanotube coalescence, as well as the formation of amorphous carbon structures.