A droplet placed in a liquid-liquid solution is expected to grow, or shrink, in time as t^1/2. In this Letter, we report experimental evidence that when the composition in the interface is far from thermodynamic equilibrium due to the nonideality of the mixture, a droplet shrinks as t. This scaling is due to the coupling between mass and momentum transfer known as Korteweg forces as a result of which the droplet self-propels around. The consequent hydrodynamic convection greatly enhances the mass transfer between the droplet and the bulk phase. Thus, the combined effect of nonideality and nonequilibrium modifies the dynamical behavior of the dissolving droplet
The dissolution of a multicomponent nanodrop in a sparingly miscible liquid is studied by molecular ...
The dissolution of a multicomponent nanodrop in a sparingly miscible liquid is studied by molecular ...
The dissolution of a multicomponent nanodrop in a sparingly miscible liquid is studied by molecular ...
A droplet placed in a liquid-liquid solution is expected to grow, or shrink, in time as ∼t[superscri...
The Epstein–Plesset equation has recently been shown to predict accurately the dissolution of a pure...
The dissolution of a buoyant drop rising or falling through a viscous environment is a fundamental m...
We simulate the diffusion-driven dissolution or growth of a single-component liquid drop embedded in...
We simulate the diffusion-driven dissolution or growth of a single-component liquid drop embedded in...
“A basic and basically unsolved problem in fluid dynamics is to determine the evolution of rising bu...
The lifetime r of an isothermal and purely diffusively dissolving droplet in a host liquid scales as...
The effect of neighboring droplets on the dissolution of a sessile droplet, i.e. collective effects,...
The thermodynamic non-equilibrium (TNE) effects and the relationships between various TNE effects an...
After quenching a partially miscible, initially homogeneous, critical liquid mixture to a temperatur...
We simulate the diffusion-driven dissolution or growth of a single-component (resp. two-component) d...
<p>This thesis addresses mass transfer in multi-phase single particle systems. By using a novel tec...
The dissolution of a multicomponent nanodrop in a sparingly miscible liquid is studied by molecular ...
The dissolution of a multicomponent nanodrop in a sparingly miscible liquid is studied by molecular ...
The dissolution of a multicomponent nanodrop in a sparingly miscible liquid is studied by molecular ...
A droplet placed in a liquid-liquid solution is expected to grow, or shrink, in time as ∼t[superscri...
The Epstein–Plesset equation has recently been shown to predict accurately the dissolution of a pure...
The dissolution of a buoyant drop rising or falling through a viscous environment is a fundamental m...
We simulate the diffusion-driven dissolution or growth of a single-component liquid drop embedded in...
We simulate the diffusion-driven dissolution or growth of a single-component liquid drop embedded in...
“A basic and basically unsolved problem in fluid dynamics is to determine the evolution of rising bu...
The lifetime r of an isothermal and purely diffusively dissolving droplet in a host liquid scales as...
The effect of neighboring droplets on the dissolution of a sessile droplet, i.e. collective effects,...
The thermodynamic non-equilibrium (TNE) effects and the relationships between various TNE effects an...
After quenching a partially miscible, initially homogeneous, critical liquid mixture to a temperatur...
We simulate the diffusion-driven dissolution or growth of a single-component (resp. two-component) d...
<p>This thesis addresses mass transfer in multi-phase single particle systems. By using a novel tec...
The dissolution of a multicomponent nanodrop in a sparingly miscible liquid is studied by molecular ...
The dissolution of a multicomponent nanodrop in a sparingly miscible liquid is studied by molecular ...
The dissolution of a multicomponent nanodrop in a sparingly miscible liquid is studied by molecular ...