Transformation between elastic dipoles, quadrupoles, octupoles and hexadecapoles driven by surfactant self-assembly in nematic emulsion
arXiv:2201.02234 · doi:10.1126/sciadv.abg0377
Abstract
Emulsions comprising isotropic fluid drops within a nematic host are of interest for applications ranging from biodetection to smart windows, which rely on changes of molecular alignment structures around the drops in response to chemical, thermal, electric and other stimuli. We show that absorption or desorption of trace amounts of common surfactants can drive continuous transformations of elastic multipoles induced by the droplets within the uniformly aligned nematic host. Out-of-equilibrium dynamics of director structures emerge from a controlled self-assembly or desorption of different surfactants at the drop-nematic interfaces, with ensuing forward and reverse transformations between elastic dipoles, quadrupoles, octupoles and hexadecapoles. We characterize inter-transformations of droplet-induced surface and bulk defects, probe elastic pair interactions and discuss emergent prospects for fundamental science and applications of the reconfigurable nematic emulsions.
References in corpus (9)
- Topological colloids
- Liquid Crystal Colloids
- Shape-dependent oriented trapping and scaffolding of plasmonic nanoparticles by topological defects for self-assembly of colloidal dimers in liquid crystals
- Interplay of Structure, Elasticity and Dynamics in Actin-Based Nematic Materials
- Nematic liquid crystal boojums with handles on colloidal handlebodies
- Rotational and translational diffusion of anisotropic gold nanoparticles in liquid crystals controlled by varying surface anchoring
- Hexadecapolar colloids
- Edge pinning and transformation of defect lines induced by faceted colloidal rings in nematic liquid crystals
- Colloidal interactions and unusual crystallization versus de-mixing of elastic multipoles formed by gold mesoflowers