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Effect of sp-hybridized defects on the oscillatory behavior of carbon nanotube oscillators
Authors:Taiyu Guo  Tony Weixi Ding  Qing-Xiang Pei  Yong-Wei Zhang
Affiliation:a National University of Singapore High School of Mathematics and Science, Singapore 129957, Singapore
b Institute of High Performance Computing, Singapore 117528, Singapore
Abstract:
Using molecular dynamics simulations, we investigate the oscillatory behaviors of carbon nanotube oscillators containing sp3-hybridized defects formed by hydrogen chemisorption. It is found that the presence of these defects significantly affects the kinetic and potential energies of the nanotube systems, which in turn affects their oscillation periods and frequencies. We have also studied the oscillatory characteristics of the oscillators containing sp3-hybridized Stone-Wales defects. Our results show that it is possible to control the motion of the inner nanotube by introducing sp3-hybridized defects on the outer nanotube, which provides a potential way to tune the oscillatory behavior of nanotube oscillators.
Keywords:Oscillator   Carbon nanotube   Molecular dynamics simulation
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