Antiferroelectric order in nematic liquids: Flexoelectricity vs electrostatics
arXiv:2411.06915 · doi:10.1002/advs.202414818
Abstract
The recent discovery of ferroelectric nematic liquid crystalline phases marks a major breakthrough in soft matter research. An intermediate phase, often observed between the nonpolar and the ferroelectric nematic phase, shows a distinct antiferroelectric response to electric fields. However, its structure and formation mechanisms remain debated, with flexoelectric and electrostatics effects proposed as competing mechanisms. By controlling the magnitude of electrostatic forces through ion addition in two representative ferroelectric nematic materials, we show that the primary mechanism for the emergence of antiferroelectric order is the flexoelectric coupling between electric polarization and splay deformation of the nematic director. The addition of ions significantly expands the temperature range over which the antiferroelectric phase is observed, with this range increasing with increasing ion concentration. Polarizing optical microscopy studies and second harmonic generation microscopy reveal the splayed structure modulated in two dimensions, while SHG interferometry confirms its antiferroelectric character. We extend the model previously used to describe pretransitional behaviour by incorporating the electrostatic contribution of ions. The model shows qualitative agreement with the experiments, accurately reproducing the phase diagram and temperature-dependent evolution of the modulation period of the observed structure.
21 pages, 9 figures
References in corpus (12)
- Ferroelectric-ferroelastic phase transition in a nematic liquid crystal
- Ferroelectric nematic liquid crystalline phases
- On the molecular origins of the ferroelectric splay nematic phase
- Observation of Spontaneous Helielectric Nematic Fluids: Electric Analogy to Helimagnets
- Antiferroelectric Smectic Ordering as a Prelude to the Ferroelectric Nematic:Introducing the Smectic Phase
- Tuneable entangled photon pair generation in a liquid crystal
- Polarization patterning in ferroelectric nematic liquids
- Observation of a uniaxial ferroelectric smectic A phase
- Spontaneous Symmetry Breaking in Polar Fluids
- Ideal Mixing of Paraelectric and Ferroelectric Nematic Phases in Liquid Crystals of Distinct Molecular Species
- Emergent Anti-Ferroelectric Ordering and the Coupling of Liquid Crystalline and Polar Order
- Phase transitions study of the liquid crystal DIO with a ferroelectric nematic, a nematic and an intermediate phase and of mixtures with the ferroelectric nematic compound RM734 by adiabatic scanning calorimetry
Cited by in corpus (8)
- Systematic Fluorination is a Powerful Design Strategy Towards Fluid Molecular Ferroelectrics
- Twist, splay, and uniform domains in ferroelectric nematic liquid crystals
- Reactive Fluid Ferroelectrics: A Gateway to the Next Generation of Ferroelectric Liquid Crystalline Polymer Networks
- Double Splay Nematic Order in Confined Polar Fluids
- Ferri- and Ferro-Electric Switching in Spontaneously Chiral Polar Liquid Crystals
- Spontaneous Cholesteric Phase in Ferroelectric Nematic Liquid Crystals: Preference for Integer Number of Pitches
- Deformed states in paraelectric and ferroelectric nematic liquid crystals
- Helix alignment, chevrons, and edge dislocations in twist-bend ferroelectric nematics