Novel zone formation due to interplay between sedimentation and phase ordering
arXiv:1402.0315 · doi:10.1209/0295-5075/89/38006
Abstract
Usually, we expect large particles to sediment faster than small of the same material. Contrary to this intuition, we report a dynamical competition between sedimentation and phase ordering which leads to smaller particles settling faster than larger ones. We access this phenomenon using suspensions of polymers and two colloidal species which we image with confocal microscopy. Polymers mediate attractions between colloids, leading to phase separation and crystallisation. We find that the dynamical interplay between sedimentation, phase separation and crystal nucleation underlie this phenomenon. Furthermore, under certain conditions we find a kinetic pathway leading to an apparent coexistence between a one component crystal and binary fluid of equal buoyancy. These findings may be relevant to the basic understanding of sedimentation-induced zone formation in nature and industrial applications.
Cited by in corpus (8)
- Crystallization kinetics of colloidal model suspensions: recent achievements and new perspectives
- A novel particle tracking method with individual particle size measurement and its application to ordering in glassy hard sphere colloids
- Sedimentation stacking diagram of binary colloidal mixtures and bulk phases in the plane of chemical potentials
- Composition inversion in mixtures of binary colloids and polymer
- To make a glass - avoid the crystal
- From Nuclei to Micro-Structure in Colloidal Crystallization: Investigating Intermediate Length Scales by Small Angle Laser Light Scattering
- Long-Lived Non-Equilibrium Interstitial-Solid-Solutions in Binary Mixtures
- Microstructural diversity, nucleation paths and phase behaviour in binary mixtures of charged colloidal spheres