When a liquid crystal forming particles are confined to a spatial volume with dimensions comparable to that of their own size, they face a complex trade-off between their global tendency to align and the local constraints imposed by the boundary conditions. This interplay may lead to a non-trivial orientational patterns that strongly depend on the geometry of the confining volume. This novel regime of liquid crystalline behavior can be probed with colloidal particles that are macro-aggregates of biomolecules. Here we study director fields of filamentous fd-viruses in quasi-2D lens-shaped chambers that mimic the shape of tactoids, the nematic droplets that form during isotropic-nematic phase separation. By varying the size and aspect ratio o...
Liquid crystalline tactoids are discrete anisotropic microdroplets coexisting with continuous disord...
We theoretically and experimentally study nematic liquid crystal equilibria within shallow rectangul...
We theoretically and experimentally study nematic liquid crystal equilibria within shallow rectangul...
When a liquid crystal forming particles are confined to a spatial volume with dimensions comparable ...
International audienceDispersions of rod-like colloidal particles exhibit a plethora of liquid cryst...
Dispersions of rodlike colloidal particles exhibit a plethora of liquid crystalline states, includin...
The director field configuration of a colloidal chiral nematic liquid crystal confined in droplets i...
The behavior of colloidal liquid crystals in confinement is addressed on the single particle level u...
When liquid crystals are confined to finite volumes, the competition between the surface anchoring i...
Facile geometric-structural response of liquid crystalline colloids to external fields enables many ...
This dissertation describes experiments which explore assembly and self-shaping behavior of liquid c...
The free diffusion of rod-like particles is strongly frustrated by the presence of other rods. This ...
We theoretically investigate the director field inside spindle-shaped nematic droplets, known as tac...
We report on the confinement of colloidal liquid crystals in three dimensional chambers with a squar...
Liquid crystalline tactoids are discrete anisotropic microdroplets coexisting with continuous disord...
We theoretically and experimentally study nematic liquid crystal equilibria within shallow rectangul...
We theoretically and experimentally study nematic liquid crystal equilibria within shallow rectangul...
When a liquid crystal forming particles are confined to a spatial volume with dimensions comparable ...
International audienceDispersions of rod-like colloidal particles exhibit a plethora of liquid cryst...
Dispersions of rodlike colloidal particles exhibit a plethora of liquid crystalline states, includin...
The director field configuration of a colloidal chiral nematic liquid crystal confined in droplets i...
The behavior of colloidal liquid crystals in confinement is addressed on the single particle level u...
When liquid crystals are confined to finite volumes, the competition between the surface anchoring i...
Facile geometric-structural response of liquid crystalline colloids to external fields enables many ...
This dissertation describes experiments which explore assembly and self-shaping behavior of liquid c...
The free diffusion of rod-like particles is strongly frustrated by the presence of other rods. This ...
We theoretically investigate the director field inside spindle-shaped nematic droplets, known as tac...
We report on the confinement of colloidal liquid crystals in three dimensional chambers with a squar...
Liquid crystalline tactoids are discrete anisotropic microdroplets coexisting with continuous disord...
We theoretically and experimentally study nematic liquid crystal equilibria within shallow rectangul...
We theoretically and experimentally study nematic liquid crystal equilibria within shallow rectangul...