August 15, 2015
Journal Article

Structure and ionic diffusion of alkaline-earth ions in mixed cation glasses

Abstract

A series of mixed cation silicate glasses of the composition A2O – 2MO – 4SiO2, with A=Li,Na,K and M=Ca,Sr,Ba has been investigated by means of molecular dynamics simulations in order to understand the effect of the nature of the cations on the mobility of the alkaline-earth ions within the glass network. The size of the alkaline-earth cation was found to affect the inter-atomic distances, the coordination number distributions and the bond angle distributions , whereas the medium-range order was almost unaffected by the type of the cation. All the alkaline-earth cations contribute to lower vibrational frequencies but it is observed that that there is a shift to smaller frequencies and the vibrational density of states distribution gets narrower as the size of the alkaline-earth increases. The results from our modeling for the ionic diffusion of the alkaline-earth cations are in a qualitative agreement with the experimental observations in that there is a distinct correlation between the activation energy for diffusion of alkaline earth-ions and the cation radii ratio. An asymmetrical linear behavior in the diffusion activation energy with increasing size difference is observed. The results can be described on the basis of a theoretical model that relates the diffusion activation energy to the electrostatic interactions of the cations with the oxygens and the elastic deformation of the silicate network.

Revised: August 11, 2020 | Published: August 15, 2015

Citation

Konstantinou K., P.V. Sushko, and D.M. Duffy. 2015. Structure and ionic diffusion of alkaline-earth ions in mixed cation glasses. Journal of Non-crystalline Solids 422. PNNL-SA-110319. doi:10.1016/j.jnoncrysol.2015.05.005