We present numerical simulations of a particle trapped at the isotropic-nematic liquid crystal (Iso-N) interface. We use our recent model, based on a phase-field approach [see Qiu, Phys. Rev. E 103, 022706 (2021)10.1103/PhysRevE.103.022706], to couple the capillary forces acting on the interface with the elastic stresses in the nematic phase along with topological defects. A range of floating configurations are first investigated as a function of the contact angle and various anchoring conditions at the fluid interface. The results show that the response of the system is driven by the existence of an anchoring conflict at the contact line. Substantial particle displacements and/or interfacial deformations may occur in this case even for mod...
In liquid crystal applications, boundary conditions are essential to ensuring suitable bulk molecula...
We report a clear demonstration of drag on colloidal particles by a moving nematic-isotropic interfa...
We observe novel positional control of a colloidal particle in microchannel flow of a nematic liquid...
We studied the behaviour of polymer particles in a moving interface between the nematic (N) and isot...
When captured by a flat nematic-isotropic interface, colloidal particles can be dragged by it. As a ...
We propose a phase-field model to study interfacial flows of nematic liquid crystals that couple the...
Colloidal particles trapped at the interface between two immiscible fluids usually display various b...
International audienceConfinement of colloidal particles in thin liquid films is typically accompani...
International audienceLiquid crystal (LC) colloidal dispersions have been shown to promote complex o...
We report the first clear demonstration of drag on colloidal particles by a moving nematic-isotropic...
Hypothesis Colloidal particles in a nematic liquid crystal (NLC) exhibit very different behaviour th...
We report a clear demonstration of drag on colloidal particles by a moving nematic-isotropic interfa...
Liquid crystals (LCs) have attracted enormous interest because of the variety of their phases and ri...
Liquid crystals are elongated molecules with a rich and surprising phase behavior. Nonequilibrium co...
We report a clear demonstration of drag on colloidal particles by a moving nematic-isotropic interfa...
In liquid crystal applications, boundary conditions are essential to ensuring suitable bulk molecula...
We report a clear demonstration of drag on colloidal particles by a moving nematic-isotropic interfa...
We observe novel positional control of a colloidal particle in microchannel flow of a nematic liquid...
We studied the behaviour of polymer particles in a moving interface between the nematic (N) and isot...
When captured by a flat nematic-isotropic interface, colloidal particles can be dragged by it. As a ...
We propose a phase-field model to study interfacial flows of nematic liquid crystals that couple the...
Colloidal particles trapped at the interface between two immiscible fluids usually display various b...
International audienceConfinement of colloidal particles in thin liquid films is typically accompani...
International audienceLiquid crystal (LC) colloidal dispersions have been shown to promote complex o...
We report the first clear demonstration of drag on colloidal particles by a moving nematic-isotropic...
Hypothesis Colloidal particles in a nematic liquid crystal (NLC) exhibit very different behaviour th...
We report a clear demonstration of drag on colloidal particles by a moving nematic-isotropic interfa...
Liquid crystals (LCs) have attracted enormous interest because of the variety of their phases and ri...
Liquid crystals are elongated molecules with a rich and surprising phase behavior. Nonequilibrium co...
We report a clear demonstration of drag on colloidal particles by a moving nematic-isotropic interfa...
In liquid crystal applications, boundary conditions are essential to ensuring suitable bulk molecula...
We report a clear demonstration of drag on colloidal particles by a moving nematic-isotropic interfa...
We observe novel positional control of a colloidal particle in microchannel flow of a nematic liquid...