Theoretical Study of the Effect of Pentagon/Heptagon Defects on the Electronic Behaviour of Coiled Carbon Nanotubes: A Review

dc.date.accessioned2024-05-30T16:37:00Z
dc.date.available2024-05-30T16:37:00Z
dc.date.issued2020-02-23
dc.descriptionIntervention
dc.description.abstractCoiled carbon nanotube (CCNT) structure is the result of the periodic insertion of the pentagon and heptagon pairs (defect) into the carbon hexagonal network of the nanotube causing positively and negatively curved surface. Based on theoretical studies, regular coiled nanotubes exhibit exceptional electronic, mechanical, electrical, optic and magnetic properties due to the combination of their peculiar helical morphology and the fascinating properties of nanotubes. Although coiled carbon nanotubes provide attractive features, there is little both theoretical and experimental research. In the present work, we attempted to clarify essential aspect of the electronic behaviour of CCNTs and summarize results obtained until now.
dc.identifier.citationBechohra, Lina Linda. Kellou-Tairi Safia. Azzaz Hamza. Theoretical Study of the Effect of Pentagon/Heptagon Defects on the Electronic Behaviour of Coiled Carbon Nanotubes: A Review. International PluridisciplinaryPhD Meeting (IPPM’20). 1st Edition, February23-26, 2020. University Of Eloued. [Visited in ../../….]. Available from [copy the link here].
dc.identifier.urihttps://dspace.univ-eloued.dz/handle/123456789/32894
dc.language.isoen
dc.publisherUniversity Of Eloued جامعة الوادي
dc.subjectcoiled carbon nanotube
dc.subjectpentagon/heptagon pairs (defect)
dc.subjectcarbon hexagonal network
dc.subjectstructure
dc.subjectelectronic properties
dc.titleTheoretical Study of the Effect of Pentagon/Heptagon Defects on the Electronic Behaviour of Coiled Carbon Nanotubes: A Review
dc.typeIntervention

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