Investigation of Transport Parameters of Graphene-Based Nanostructures


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Abstract

The paper presents results of computer simulation of the main transport parameters of nanostructures obtained through the row-by-row removal of carbon atoms from graphene ribbon. Research into the electrical parameters is carried out within the density functional theory using the non-equilibrium Green functions in the local-density approximation. Virtual NanoLab based on Atomistix ToolKit is used to construct structures and analyze simulation results. Current-voltage characteristics, differential conductivity and transmittance spectra of nanostructures are calculated at different values of bias voltage. It is found that there is a large region of negative differential resistance in current-voltage characteristics of nanostructures caused by resonant tunneling of quasi-particles. Differential (dI/dV) characteristic also has similar changes. The obtained results can be useful for building novel electronic devices in the field of nanoelectronics.

About the authors

D. M. Sergeyev

Military Institute of Air Defence Forces; Zhubanov Aktobe Regional State University

Author for correspondence.
Email: shunkeev@rambler.ru
Kazakhstan, Aktobe; Aktobe

K. Sh. Shunkeyev

Military Institute of Air Defence Forces

Email: shunkeev@rambler.ru
Kazakhstan, Aktobe

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