Thermotropic reentrant isotropic symmetry and induced smectic antiferroelectricity in the ferroelectric nematic material RM734
Abstract
We report a transition from the ferroelectric nematic liquid crystal (N F ) phase to a lower-temperature, apolar fluid phase having reentrant isotropic symmetry (I R ), in the liquid crystal compound RM734 doped with small concentrations of the ionic liquids 1-Butyl-3-methylimidazolium hexafluorophosphate (BMIM-PF 6 ) or 1-Ethyl-3-methylimidazolium bis(trifluoromethylsulfonyl)imide (EMIM-TFSI). Even a trace amount of ionic liquid dopant facilitates the kinetic pathway for the transition from the N F to the I R , enabling simple cooling to produce this isotropic fluid phase rather than resulting in immediate crystallization. The I R 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. Ionic liquid doping also stabilizes the smectic Z A , an additional birefringent antiferroelectric phase having the director parallel to fluid smectic layers, significantly increasing its temperature range between the paraelectric and ferroelectric nematic phases with increasing BMIM concentration.
Article Details
Journal Info
Proceedings of the National Academy of Sciences
National Academy of Sciences
Authors (9)
Xi Chen
Min Shuai
Department of Physics and Soft Materials Research Center, University of Colorado
Bingchen Zhong
Department of Physics and Soft Materials Research Center, University of Colorado
Vikina Martinez
Department of Physics and Soft Materials Research Center, University of Colorado
Eva Korblova
Department of Chemistry and Soft Materials Research Center, University of Colorado
Matthew A. Glaser
Department of Physics and Soft Materials Research Center, University of Colorado
Joseph E. Maclennan
Department of Physics and Soft Materials Research Center, University of Colorado
David M. Walba
Department of Chemistry and Soft Materials Research Center, University of Colorado
Noel A. Clark
Department of Physics, University of Colorado Boulder