Title of article
Dynamics behavior of lithium in graphite lattice: MD calculation approach Original Research Article
Author/Authors
A Shimizu، نويسنده , , H Tachikawa، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2000
Pages
5
From page
1895
To page
1899
Abstract
In order to investigate the diffusion process of Li atom in graphite, molecular dynamics simulation was achieved on the basis of molecular mechanics 2 (MM2) method using four layers cluster model one of which is composed of C150H30 with terminating hydrogen atoms.
According to the simulations at 500 K, Li atom stabilizes initially around the center of mass, gets out of the graphite layers after 3.0 ps through diffusion, which is different from the movement of Li+ ion captured by the dangling bonds of the edge carbon atoms. The diffusion process of Li atom is found to be composed of following four steps in series: (1) vibration around the stabilization point; (2) bulk diffusion; (3) vibration under influence of the dangling bonds of edge carbon atoms; and (4) escape from the graphite layers. The diffusivity for step (3) is smaller than that for step (2).
Keywords
D. Diffusion
Journal title
Journal of Physics and Chemistry of Solids
Serial Year
2000
Journal title
Journal of Physics and Chemistry of Solids
Record number
1307639
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