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A refined finite element analysis on the vibrational properties of ideal and degenerated carbon nanostructures

Imani Yengejeh, S. and Kazemi, S. A. and Ivasenko, O. and \xD6chsner, A. (2016) A refined finite element analysis on the vibrational properties of ideal and degenerated carbon nanostructures. Solid State Communications, 231-23 . pp. 36-42. ISSN 0038-1098

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Abstract

Different types of degenerated nanostructures were simulated and their eigenfrequencies and corresponding eigenmodes were evaluated by applying the well-established finite element method. In addition, the structural and vibrational stability of these nanoparticles was examined under the influence of microscopic modifications. For this purpose, four common types of atomic defects (i.e. different types of vacancy defects, perturbation, pentagon-heptagon pair defect and chemical doping) were introduced to the finite element models and their vibrational properties were obtained and finally compared to those of perfect, i.e. defect-free, structures. The detailed geometry around a defected area was calculated based on density functional theory and implemented in the finite element model. Based on the results, it was shown that all these structural modifications changes the natural frequency and as a result, reduce the vibrational stability of degenerated nano-materials.

Item Type:Article
Uncontrolled Keywords:Defects, Density functional theory, Nanostructures, Vacancies, C. Microscopic modifications, Carbon Nanostructures, Chemical doping, Eigen frequencies, Structural modifications, Vacancy Defects, Vibrational properties, Vibrational stability, Finite element method
Subjects:T Technology > TJ Mechanical engineering and machinery
Divisions:Mechanical Engineering
ID Code:73708
Deposited By: Haliza Zainal
Deposited On:18 Nov 2017 00:44
Last Modified:18 Nov 2017 00:44

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