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Characterization of the thermal expansion properties of graphene using molecular dynamics simulations.

Authors :
Islam, M Zahabul
Mahboob, Monon
Lowe, L Robert
Bechtel, E Stephen
Source :
Journal of Physics D: Applied Physics. 10/30/2013, Vol. 46 Issue 43, p435302-435306. 5p.
Publication Year :
2013

Abstract

In the present study, the temperature-dependent coefficient of thermal expansion (CTE) of a graphene sheet (GS) is determined using molecular dynamics (MD) simulations. Our simulations show that the CTE of a GS (i) varies non-linearly with temperature, (ii) is negative over a temperature range of 0–500 K and (iii) differs by no more than 9% in the armchair and zigzag directions. We find good agreement between our MD results and recent experimental data. The present study also investigates the effect of missing atoms (vacancy defects) on the CTE of a GS. In our MD simulations of a 4.9 nm × 4.9 nm GS, we find that the presence of two vacant atoms (about 1.56% by volume) increases the negative CTE by as much as 40%. Correlations between the CTE and the number of missing atoms have been developed based on MD simulation results for a perfect GS and a GS with 1.56% defects by volume. Predictions of the CTE of a defective GS from the correlations compare favourably with MD simulations at 3.13% defects by volume. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00223727
Volume :
46
Issue :
43
Database :
Academic Search Index
Journal :
Journal of Physics D: Applied Physics
Publication Type :
Academic Journal
Accession number :
94287386
Full Text :
https://doi.org/10.1088/0022-3727/46/43/435302