Self-Consistent Set of Lennard–Jones Potential Parameters for Molecular Dynamics Simulations of Oxide Materials
G. I. Makarova, *, K. S. Shilkovaa, A. V. Shunailova, P. V. Pavlova, and T. M. Makarovaa
a South Ural State University, Chelyabinsk, 454080 Russia
Correspondence to: *e-mail: makarovgi@susu.ru
Received 12 August, 2022
Abstract—A forcefield for high-performance molecular dynamics (MD) simulation of inorganic oxide substances, including borosilicate glasses, based on a combination of electrostatic interactions with the 6–12 type of Lennard–Jones potentials is developed. The forcefield parameters are selected to reproduce the structures and bulk moduli of the binary oxides of a wide spectrum of elements. The proposed forcefield is able to accurate reproduce structures of minerals containing two to three types of cations during the MD simulations. Application of the 6–12 potential makes it possible to carry out simultaneous MD simulations of the organic and inorganic phases, for example, in modeling composite materials with mineral and glass fillers.
Keywords: molecular dynamics, forcefield, glass, silicates, oxides, Lennard–Jones potential
DOI: 10.1134/S1087659622600995