Molecular dynamics simulation study of a carbon-nanotube oscillator in a graphene-nanoribbon trench

被引:0
|
作者
Eunae Lee
Jeong Won Kang
Ki-Sub Kim
Oh-Kuen Kwon
机构
[1] Korea National University of Transportation,Graduate School of Transportation
[2] Korea National University of Transportation,Department of IT Convergence
[3] Korea National University of Transportation,Department of Chemical and Biological Engineering
[4] Semyung University,Department of Electronic Engineering
来源
Journal of the Korean Physical Society | 2016年 / 69卷
关键词
Carbon Nanotube; Nanotube Oscillator; Graphene Nanoribbon; Molecular Dynamics;
D O I
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中图分类号
学科分类号
摘要
A graphene/carbon-nanotube (CNT) hybrid material can be useful in energy storage and nanoelectronic technologies. Here, we address a CNT oscillator encapsulated in a graphene-nanoribbon (GNR) trench as a novel design, and investigate its properties via classical molecular dynamics simulations. Because the energy barrier was very low while the CNT was encapsulated in the GNR trench, the CNT absorbed on the GNR surface could easily be encapsulated in the GNR trench. MD simulations showed that the CNT oscillator encapsulated in a GNR trench was compatible with simple CNT oscillators, so we anticipate that the CNT in the GNR trench could work as an oscillator. Thus, we can anticipate that the CNT encapsulated in a GNR trench can be applied to ultra-sensitive nanoelectromechanical oscillators and that this system has the possibility to be applied to relay-switching devices and to shuttle memories.
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页码:426 / 434
页数:8
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