January 3, 2018
Journal Article

Supersaturated calcium carbonate solutions are classical

Abstract

We will present a description of nucleation phenomena in the condensed phase that takes into account non-ideal solution effects associated with cluster-cluster interaction. To do this we employ aggregation-volume bias Monte Carlo simulation, making the estimation of free-energy of large pre-critical clusters of sizes 10-20 tractable. We will compare and contrast empirical potential and electronic structure (e.g. Density functional theory) based descriptions of molecular interaction associated with the nucleation of CaCO3, highlighting free-energy trends and qualitative differences in populations of pre-critical clusters as a function of supersaturation. The influence of how the precise local interaction influences the non-ideal solution behavior on the nucleation and growth processes will be highlighted. This research was supported by the US Department of Energy, Office of Science, Office of Basic Energy Sciences, Division of Chemical Sciences, Geosciences, and Biosciences.

Revised: January 28, 2019 | Published: January 3, 2018

Citation

Henzler K., E. Fetisov, M. Galib, M.D. Baer, B.A. Legg, C. Borca, and J.M. Xto, et al. 2018. Supersaturated calcium carbonate solutions are classical. Science Advances 4, no. 1:eaao6283. PNNL-SA-128147. doi:10.1126/sciadv.aao6283