Research Article

First-Principles Study of Graphene-6H SiC Surface Interactions

Volume: 9 Number: 2 April 30, 2021
EN

First-Principles Study of Graphene-6H SiC Surface Interactions

Abstract

Interactions of graphene with 6H-SiC {0001} surfaces are numerically investigated from first principles. In order to describe the bulk structure and its 6 bilayer thick surfaces correctly, bare and dipole-corrected atomic relaxations are considered. The obtained lattice parameters and bulk modulus are in good agreement with experimental values. The calculated indirect band gap width of 2.10 eV is smaller than the experimental value due to the nature of the computational method. Geometrical optimization of the surfaces, where dipole correction is applied, reveals that the first two bilayers displace significantly, where the relaxations of the very top bilayer is more pronounced. Band structures of the {0001} surfaces possess two flat bands around the Fermi level due to unsaturated bonds on opposite faces. When one layer of C atoms are introduced on the Si-terminated surface, it behaves as a tightly-bound buffer layer. This is also the case for the C-terminated surface when van der Waals interactions are taken into account. In contrast, disregarding these interactions yields free-standing graphene like behavior for the first C overlayer. On both surfaces, the second C overlayer is free-standing where the corresponding band structures incorporate Dirac-cone like features.

Keywords

Supporting Institution

Akdeniz University

Project Number

2008.01.0105.010

Thanks

This work is supported by Akdeniz University Scientific Research Projects Coordination Unit under the grant number 2008.01.0105.010.

References

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Details

Primary Language

English

Subjects

Electrical Engineering

Journal Section

Research Article

Publication Date

April 30, 2021

Submission Date

April 1, 2021

Acceptance Date

April 27, 2021

Published in Issue

Year 2021 Volume: 9 Number: 2

APA
Çiçek, A., & Uluğ, B. (2021). First-Principles Study of Graphene-6H SiC Surface Interactions. Balkan Journal of Electrical and Computer Engineering, 9(2), 171-177. https://doi.org/10.17694/bajece.908183
AMA
1.Çiçek A, Uluğ B. First-Principles Study of Graphene-6H SiC Surface Interactions. Balkan Journal of Electrical and Computer Engineering. 2021;9(2):171-177. doi:10.17694/bajece.908183
Chicago
Çiçek, Ahmet, and Bülent Uluğ. 2021. “First-Principles Study of Graphene-6H SiC Surface Interactions”. Balkan Journal of Electrical and Computer Engineering 9 (2): 171-77. https://doi.org/10.17694/bajece.908183.
EndNote
Çiçek A, Uluğ B (April 1, 2021) First-Principles Study of Graphene-6H SiC Surface Interactions. Balkan Journal of Electrical and Computer Engineering 9 2 171–177.
IEEE
[1]A. Çiçek and B. Uluğ, “First-Principles Study of Graphene-6H SiC Surface Interactions”, Balkan Journal of Electrical and Computer Engineering, vol. 9, no. 2, pp. 171–177, Apr. 2021, doi: 10.17694/bajece.908183.
ISNAD
Çiçek, Ahmet - Uluğ, Bülent. “First-Principles Study of Graphene-6H SiC Surface Interactions”. Balkan Journal of Electrical and Computer Engineering 9/2 (April 1, 2021): 171-177. https://doi.org/10.17694/bajece.908183.
JAMA
1.Çiçek A, Uluğ B. First-Principles Study of Graphene-6H SiC Surface Interactions. Balkan Journal of Electrical and Computer Engineering. 2021;9:171–177.
MLA
Çiçek, Ahmet, and Bülent Uluğ. “First-Principles Study of Graphene-6H SiC Surface Interactions”. Balkan Journal of Electrical and Computer Engineering, vol. 9, no. 2, Apr. 2021, pp. 171-7, doi:10.17694/bajece.908183.
Vancouver
1.Ahmet Çiçek, Bülent Uluğ. First-Principles Study of Graphene-6H SiC Surface Interactions. Balkan Journal of Electrical and Computer Engineering. 2021 Apr. 1;9(2):171-7. doi:10.17694/bajece.908183

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