Thermotropic reentrant isotropy and antiferroelectricity in the ferroelectric nematic material RM734

Fuente: arXiv
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Main Authors: Chen, Xi, Shuai, Min, Zhong, Bingchen, Martinez, Vikina, Korblova, Eva, Glaser, Matthew A., Maclennan, Joseph E., Walba, David M., Clark, Noel A.
Format: Preprint
Published: 2023
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author Chen, Xi
Shuai, Min
Zhong, Bingchen
Martinez, Vikina
Korblova, Eva
Glaser, Matthew A.
Maclennan, Joseph E.
Walba, David M.
Clark, Noel A.
author_facet Chen, Xi
Shuai, Min
Zhong, Bingchen
Martinez, Vikina
Korblova, Eva
Glaser, Matthew A.
Maclennan, Joseph E.
Walba, David M.
Clark, Noel A.
contents We report a transition from the ferroelectric nematic liquid crystal ($N_F$) phase to a lower-temperature, antiferroelectric fluid phase having reentrant isotropic symmetry ($I_A$), 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 $N_F$ to the $I_A$, enabling simple cooling to produce this isotropic fluid phase rather than resulting in crystallization. The $I_A$ 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 $Z_A$, is found between the paraelectric and ferroelectric nematic phases in RM734/BMIM mixtures.
format Preprint
id arxiv_https___arxiv_org_abs_2309_04935
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Thermotropic reentrant isotropy and antiferroelectricity in the ferroelectric nematic material RM734
Chen, Xi
Shuai, Min
Zhong, Bingchen
Martinez, Vikina
Korblova, Eva
Glaser, Matthew A.
Maclennan, Joseph E.
Walba, David M.
Clark, Noel A.
Soft Condensed Matter
We report a transition from the ferroelectric nematic liquid crystal ($N_F$) phase to a lower-temperature, antiferroelectric fluid phase having reentrant isotropic symmetry ($I_A$), 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 $N_F$ to the $I_A$, enabling simple cooling to produce this isotropic fluid phase rather than resulting in crystallization. The $I_A$ 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 $Z_A$, is found between the paraelectric and ferroelectric nematic phases in RM734/BMIM mixtures.
title Thermotropic reentrant isotropy and antiferroelectricity in the ferroelectric nematic material RM734
topic Soft Condensed Matter
url https://arxiv.org/abs/2309.04935