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Zhurnal Tekhnicheskoi Fiziki, 2023 Volume 93, Issue 4, Pages 481–487 (Mi jtf6971)

10th International Symposium on Optics and Biophotonics September 26-30, 2022, Saratov, Russia
Physics of Nanostructures

Influence of stretching and compression deformations on the electrical conductive properties of graphene-nanotube composites with an island-type topology

M. M. Slepchenkov, P. V. Barkov, O. E. Glukhova

Saratov State University, Saratov, Russia

Abstract: Within the framework of the self–consistent–charge density functional tight-binding method, we study the features of the atomic structure and electrical conductive properties of a hybrid graphene-nanotube film with an island topology under uniaxial stretching and compression. The hybrid film is a composite structure formed by AB-stacked bilayer graphene and horizontally oriented chiral single-walled carbon nanotubes of 1.2 nm in diameter. The regularities of the deformation behavior of the investigated hybrid structure are revealed and the limits of its strength are established. It is shown how the electrical resistance and the current-voltage characteristic of the film change under stretching/compression deformations.

Keywords: island-type graphene-nanotube films, uniaxial stretching/compression, resistance, current-voltage characteristic.

Received: 17.01.2023
Revised: 17.01.2023
Accepted: 17.01.2023

DOI: 10.21883/JTF.2023.04.55035.5-23



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