Equilibrium Fluid-Crystal Interfacial Free Energy of Bcc-Crystallizing Aqueous Suspensions of Polydisperse Charged Spheres
arXiv:1511.04746 · doi:10.1103/PhysRevE.93.022601
Abstract
The interfacial free energy is a central quantity in crystallization from the meta-stable melt. In suspensions of charged colloidal spheres, nucleation and growth kinetics can be accurately measured from optical experiments. In previous work, from this data effective non-equilibrium values for the interfacial free energy between the emerging bcc-nuclei and the adjacent melt in dependence on the chemical potential difference between melt phase and crystal phase were derived using classical nucleation theory. A strictly linear increase of the interfacial free energy was observed as a function of increased meta-stability. Here, we further analyze this data for five aqueous suspensions of charged spheres and one binary mixture. We utilize a simple extrapolation scheme and interpret our findings in view of Turnbull's empirical rule. Our first estimates for the reduced interfacial free energy, , between coexisting equilibrium uid and bcc-crystal phases are on the order of a few . Their values are not correlated to any of the electrostatic interaction parameters but rather show a systematic decrease with increasing size polydispersity and a lower value for the mixture as compared to the pure components. At the same time, also shows an approximately linear correlation to the entropy of freezing. The equilibrium interfacial free energy of strictly monodisperse charged spheres may therefore be still greater.
main paper 11 pages, 4 appendices, 13 figures, 2 tables, revised version submitted to PRE, 2nd Revision
References in corpus (10)
- Visualizing kinetic pathways of homogeneous nucleation in colloidal crystallization
- In Search of Colloidal Hard Spheres
- Equilibrium phase behavior of polydisperse hard spheres
- Tension and stiffness of the hard sphere crystal-fluid interface
- Crystallization kinetics of colloidal model suspensions: recent achievements and new perspectives
- Fractionation effects in phase equilibria of polydisperse hard sphere colloids
- The equilibrium intrinsic crystal-liquid interface of colloids
- Crystal-liquid interfacial free energy via thermodynamic integration
- Nonlinear effects in charge stabilized colloidal suspensions
- Melting and Freezing Lines for a Mixture of Charged Colloidal Spheres with Spindle-Type Phase Diagram
Cited by in corpus (5)
- Crystal nucleation as the ordering of multiple order parameters
- Experimental studies of crystal nucleation: metals and colloids
- Triple junction at the triple point resolved on the individual particle level
- To make a glass - avoid the crystal
- Jellium and Cell Model for Titratable Colloids with Continuous Size Distribution