We study the spreading of a liquid 2D dipolar droplet in a Langmuir monolayer. Interfacial tensions (line tensions) and microscopic contact angles depend on the scale on which they are probed and obey a scaling law. Assuming rapid equilibration of the microscopic contact angle and ideal slippage of the 2D solid/liquid and solid/gas boundary, the driving force of spreading is merely expressed by the shape-dependent long-range interaction integrals. We obtain good agreement between experiment and numerical simulations using this theory
We experimentally investigated the dynamic polygonal spreading of droplets on lyophilic pillar-array...
We consider the spreading of a thin droplet of viscous liquid on a plane surface driven by capillari...
Abstract. Some fatty acids, lipids, polymers and mesogenic molecules which are amphiphilic in nature...
The motion of a contact line is examined, and comparisons drawn, for a variety of models proposed in...
Molecular dynamics simulations have been performed for two immiscible fluids confined in a slit pore...
AbstractMolecular dynamics simulations have been performed for two immiscible fluids confined in a s...
Consider the spreading dynamics of a two-dimensional droplet over chemically heterogeneous substrate...
Isolated domains in Langmuir monolayers exhibit shape instabilities leading to branched structures a...
The phenomenon of a precursor spreading in front of an advancing droplet is still not fully understo...
The gas-liquid expanded phase transition of a Langmuir monolayer happens at very low surface concent...
The kinetics of spreading of a liquid supporting a surfactant monolayer is studied in a steady state...
We propose a hydrodynamic mechanism, based on the Marangoni flow, to describe growth instabilities ...
A pure lattice model for Langmuir monolayers is presented where only nearest neighbor interactions a...
One of the manifestations of thin-film spreading is the phenomenon of a precursor spreading in front...
In this paper, a multiscale moving contact line (MMCL) theory is presented and employed to simulate ...
We experimentally investigated the dynamic polygonal spreading of droplets on lyophilic pillar-array...
We consider the spreading of a thin droplet of viscous liquid on a plane surface driven by capillari...
Abstract. Some fatty acids, lipids, polymers and mesogenic molecules which are amphiphilic in nature...
The motion of a contact line is examined, and comparisons drawn, for a variety of models proposed in...
Molecular dynamics simulations have been performed for two immiscible fluids confined in a slit pore...
AbstractMolecular dynamics simulations have been performed for two immiscible fluids confined in a s...
Consider the spreading dynamics of a two-dimensional droplet over chemically heterogeneous substrate...
Isolated domains in Langmuir monolayers exhibit shape instabilities leading to branched structures a...
The phenomenon of a precursor spreading in front of an advancing droplet is still not fully understo...
The gas-liquid expanded phase transition of a Langmuir monolayer happens at very low surface concent...
The kinetics of spreading of a liquid supporting a surfactant monolayer is studied in a steady state...
We propose a hydrodynamic mechanism, based on the Marangoni flow, to describe growth instabilities ...
A pure lattice model for Langmuir monolayers is presented where only nearest neighbor interactions a...
One of the manifestations of thin-film spreading is the phenomenon of a precursor spreading in front...
In this paper, a multiscale moving contact line (MMCL) theory is presented and employed to simulate ...
We experimentally investigated the dynamic polygonal spreading of droplets on lyophilic pillar-array...
We consider the spreading of a thin droplet of viscous liquid on a plane surface driven by capillari...
Abstract. Some fatty acids, lipids, polymers and mesogenic molecules which are amphiphilic in nature...