Electronic Properties of Aluminum Doped Carbon Nanotubes with Stone Wales Defects: Density Functional Theory
- Authors: Nairat M.1, Talla J.A.2
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Affiliations:
- Department of Physics, Al-Balqa Applied University
- Department of Physics, Al al-Bayt University
- Issue: Vol 61, No 10 (2019)
- Pages: 1896-1903
- Section: Low Dimensional Systems
- URL: https://ogarev-online.ru/1063-7834/article/view/206375
- DOI: https://doi.org/10.1134/S1063783419100421
- ID: 206375
Cite item
Abstract
Al-doped single wall carbon nanotube with Stone Wales defect was theoretically analyzed, two different orientations of chiral (8, 4) carbon nanotubes was doped among the joints of defective carbon rings. Density functional theory was implemented to study structural and electronic properties of Al-doped chiral carbon nanotubes. Doping bond lengths as well as their geometrical structure were determined at the different orientations. The electronic properties were also illustrated by evaluation band of the gap energies at each possible doping site. Our results indicated that not only Al-doping tune the band structure, but also dopant site played a crucial rule on manipulating physical properties of chiral carbon nanotubes.
About the authors
Mazen Nairat
Department of Physics, Al-Balqa Applied University
Email: jtalla@aabu.edu.jo
Jordan, Al-Salt, 19117
Jamal A. Talla
Department of Physics, Al al-Bayt University
Author for correspondence.
Email: jtalla@aabu.edu.jo
Jordan, Al-Mafraq, 130040
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