Title of article
The effect of empirical potential functions on modeling of amorphous carbon using molecular dynamics method
Author/Authors
Longqiu Li، نويسنده , , Ming Xu، نويسنده , , Wenping Song، نويسنده , , Andrey Ovcharenko، نويسنده , , Guangyu Zhang، نويسنده , , Ding Jia، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2013
Pages
11
From page
287
To page
297
Abstract
Empirical potentials have a strong effect on the hybridization and structure of amorphous carbon and are of great importance in molecular dynamics (MD) simulations. In this work, amorphous carbon at densities ranging from 2.0 to 3.2 g/cm3 was modeled by a liquid quenching method using Tersoff, 2nd REBO, and ReaxFF empirical potentials. The hybridization, structure and radial distribution function G(r) of carbon atoms were analyzed as a function of the three potentials mentioned above. The ReaxFF potential is capable to model the change of the structure of amorphous carbon and MD results are in a good agreement with experimental results and density function theory (DFT) at low density of 2.6 g/cm3 and below. The 2nd REBO potential can be used when amorphous carbon has a very low density of 2.4 g/cm3 and below. Considering the computational efficiency, the Tersoff potential is recommended to model amorphous carbon at a high density of 2.6 g/cm3 and above. In addition, the influence of the quenching time on the hybridization content obtained with the three potentials is discussed.
Keywords
Amorphous carbon , Liquid quenching , molecular dynamics , Empirical potentials
Journal title
Applied Surface Science
Serial Year
2013
Journal title
Applied Surface Science
Record number
1008242
Link To Document