Evaporation-triggered microdroplet nucleation and the four life phases of an evaporating Ouzo drop
arXiv:1706.01395 · doi:10.1073/pnas.1602260113
Abstract
Evaporating liquid droplets are omnipresent in nature and technology, such as in inkjet printing, coating, deposition of materials, medical diagnostics, agriculture, food industry, cosmetics, or spills of liquids. While the evaporation of pure liquids, liquids with dispersed particles, or even liquid mixtures has intensively been studied over the last two decades, the evaporation of ternary mixtures of liquids with different volatilities and mutual solubilities has not yet been explored. Here we show that the evaporation of such ternary mixtures can trigger a phase transition and the nucleation of microdroplets of one of the components of the mixture. As model system we pick a sessile Ouzo droplet (as known from daily life - a transparent mixture of water, ethanol, and anise oil) and reveal and theoretically explain its four life phases: In phase I, the spherical cap-shaped droplet remains transparent, while the more volatile ethanol is evaporating, preferentially at the rim of the drop due to the singularity there. This leads to a local ethanol concentration reduction and correspondingly to oil droplet nucleation there. This is the beginning of phase II, in which oil microdroplets quickly nucleate in the whole drop, leading to its milky color which typifies the so-called 'Ouzo-effect'. Once all ethanol has evaporated, the drop, which now has a characteristic non-spherical-cap shape, has become clear again, with a water drop sitting on an oil-ring (phase III), finalizing the phase inversion. Finally, in phase IV, also all water has evaporated, leaving behind a tiny spherical cap-shaped oil drop.
40 pages, 12 figures
Cited by in corpus (15)
- Evaporating pure, binary and ternary droplets: thermal effects and axial symmetry breaking
- Solid-Liquid Composites for Soft Multifunctional Materials
- Gravitational effect in evaporating binary microdroplets
- Diffusive interaction of multiple surface nanobubbles and nanodroplets: shrinkage, growth, and coarsening
- Self-wrapping of an ouzo drop induced by evaporation on a superamphiphobic surface
- On explosive boiling of a multicomponent Leidenfrost drop
- Evaporation of a sessile colloidal water-glycerol droplet: Marangoni ring formation
- Rayleigh-Taylor instability by segregation in an evaporating multi-component microdroplet
- Surface Properties of Colloidal Particles Affect Colloidal Self-Assembly in Evaporating Self-Lubricating Ternary Droplets
- Marangoni instability triggered by selective evaporation of a binary liquid inside a Hele-Shaw cell
- Ultrasensitive Surface-Enhanced Raman Spectroscopy Detection by Porous Silver Supraparticles from Self-Lubricating Drop Evaporation
- Physiochemical hydrodynamics of the phase segregation in an evaporating binary microdroplet
- Droplet plume emission during plasmonic bubble growth in ternary liquids
- Universality in microdroplet nucleation during solvent exchange in Hele-Shaw like channels
- Physicochemical Hydrodynamics of Droplets out of Equilibrium: A Perspective Review