Criticality Controlling Mechanisms in Nematic Liquid Crystals

Nanomaterials (Basel). 2024 Feb 5;14(3):320. doi: 10.3390/nano14030320.

Abstract

We theoretically study the generic mechanisms that could establish critical behavior in nematic liquid crystals (NLCs). The corresponding free energy density terms should exhibit linear coupling with the nematic order parameter and, via this coupling, enhance the nematic order. We consider both temperature- and pressure-driven, order-disorder phase transitions. We derive a scaled effective free energy expression that describes how qualitatively different mechanisms enforce critical behavior. Our main focus is on the impact of nanoparticles (NPs) in homogeneous NP-NLC mixtures. We illustrate that in the case of pressure-driven phase changes, lower concentrations are needed to impose critical point conditions in comparison with pure temperature variations.

Keywords: critical behavior; critical point; nematic liquid crystals; phase transition.

Grants and funding

M.Z. acknowledges the financial support of Project PR-12878, G.C. and Z.K acknowledge the financial support of Project P1-0125, and S.K. acknowledges the financial support of Project P1-0099, J1-2457, and J2-4447 from the Slovene Research Agency.