Thermotropic reentrant isotropy and antiferroelectricity in the ferroelectric nematic material RM734
arXiv:2309.04935 · doi:10.1073/pnas.2424917122
Abstract
We report a transition from the ferroelectric nematic liquid crystal () phase to a lower-temperature, antiferroelectric fluid phase having reentrant isotropic symmetry (), in the liquid crystal compound RM734 doped with small concentrations of the ionic liquids BMIM or EMIM. Even a trace amount of ionic liquid dopant facilitates the kinetic pathway for the transition from the to the , enabling simple cooling to produce this isotropic fluid phase rather than resulting in crystallization. The was also obtained in the absence of specific ionic liquid doping by appropriate temperature cycling in three distinct, as-synthesized-and-purified batches of RM734, two commercial and one from our laboratory. An additional birefringent, lamellar-modulated, antiferroelectric phase with the director parallel to the layers, resembling the smectic , is found between the paraelectric and ferroelectric nematic phases in RM734/BMIM mixtures.
45 pages, including Supplementary Information
References in corpus (11)
- First-Principles Experimental Demonstration of Ferroelectricity in a Thermotropic Nematic Liquid Crystal: Spontaneous Polar Domains and Striking Electro-Optics
- Ferroelectric-ferroelastic phase transition in a nematic liquid crystal
- Development of polar nematic fluids with giant-\k{appa} dielectric properties
- Polar In-Plane Surface Orientation of a Ferroelectric Nematic Liquid Crystal: Polar Monodomains and Twisted State Electro-Optics
- Three-dimensional crystals of adaptive knots
- Antiferroelectric Smectic Ordering as a Prelude to the Ferroelectric Nematic:Introducing the Smectic Phase
- Observation of a uniaxial ferroelectric smectic A phase
- Ideal Mixing of Paraelectric and Ferroelectric Nematic Phases in Liquid Crystals of Distinct Molecular Species
- Theory of the splay nematic phase: Single vs. double splay
- Polar order in a fluid like ferroelectric with a tilted lamellar structure -- observation of a polar smectic C (SmC) phase
- 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