Structures and topological defects in pressure-driven lyotropic chromonic liquid crystals

Author:

Zhang QingORCID,Zhang Rui,Ge Baoliang,Yaqoob ZahidORCID,So Peter T. C.ORCID,Bischofberger IrmgardORCID

Abstract

Lyotropic chromonic liquid crystals are water-based materials composed of self-assembled cylindrical aggregates. Their behavior under flow is poorly understood, and quantitatively resolving the optical retardance of the flowing liquid crystal has so far been limited by the imaging speed of current polarization-resolved imaging techniques. Here, we employ a single-shot quantitative polarization imaging method, termed polarized shearing interference microscopy, to quantify the spatial distribution and the dynamics of the structures emerging in nematic disodium cromoglycate solutions in a microfluidic channel. We show that pure-twist disclination loops nucleate in the bulk flow over a range of shear rates. These loops are elongated in the flow direction and exhibit a constant aspect ratio that is governed by the nonnegligible splay-bend anisotropy at the loop boundary. The size of the loops is set by the balance between nucleation forces and annihilation forces acting on the disclination. The fluctuations of the pure-twist disclination loops reflect the tumbling character of nematic disodium cromoglycate. Our study, including experiment, simulation, and scaling analysis, provides a comprehensive understanding of the structure and dynamics of pressure-driven lyotropic chromonic liquid crystals and might open new routes for using these materials to control assembly and flow of biological systems or particles in microfluidic devices.

Funder

HHS | National Institutes of Health

Research Grants Council, University Grants Committee

Massachusetts Institute of Technology

Singapore-MIT Alliance for Research and Technology Centre

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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1. Flow-induced periodic chiral structures in an achiral nematic liquid crystal;Nature Communications;2024-01-08

2. Spatio-temporal programming of lyotropic phase transition in nanoporous microfluidic confinements;Journal of Colloid and Interface Science;2023-11

3. Kinematics and dynamics of disclination lines in three-dimensional nematics;Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences;2023-05

4. Emergence of transient reverse fingers during radial displacement of a shear-thickening fluid;Colloids and Surfaces A: Physicochemical and Engineering Aspects;2023-04

5. Dendritic patterns from shear-enhanced anisotropy in nematic liquid crystals;Science Advances;2023-01-13

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