English

Kinetic Monte Carlo Simulation of Electrodeposition using the Embedded-Atom Method

Chemical Physics 2014-01-08 v2 Materials Science Computational Physics

Abstract

A kinetic Monte Carlo (KMC) method is presented to simulate the electrodeposition of a metal on a single crystal surface of the same metal under galvanostatic conditions. This method utilizes the multi-body embedded-atom method (EAM) potential to characterize the interactions of metal atoms and adatoms. The KMC method accounts for deposition and surface diffusion processes including hopping, atom exchange and step-edge atom exchange. Steady-state deposition configurations obtained using the KMC method are validated by comparison with the structures obtained through the use of molecular dynamics (MD) simulations to relax KMC constraints. The results of this work support the use of the proposed KMC method to simulate electrodeposition processes at length (microns) and time (seconds) scales that are not feasible using other methods.

Keywords

Cite

@article{arxiv.1307.5586,
  title  = {Kinetic Monte Carlo Simulation of Electrodeposition using the Embedded-Atom Method},
  author = {Tanyakarn Treeratanaphitak and Mark D. Pritzker and Nasser Mohieddin Abukhdeir},
  journal= {arXiv preprint arXiv:1307.5586},
  year   = {2014}
}

Comments

17 pages, 6 figures

R2 v1 2026-06-22T00:55:08.770Z