Spontaneous Twist of Ferroelectric Smectic Blocks in Polar Fluids.

Nishikawa, Hiroya; Okumura, Yasushi; Kwaria, Dennis; Nihonyanagi, Atsuko; Araoka, Fumito · Adv Mater · 2025

basic_science · Level V

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Abstract

In soft matter, the polar orientational order of molecules can facilitate the coexistence of structural chirality and ferroelectricity. The ferroelectric nematic (N<sub>F</sub>) state, exhibited by achiral calamitic molecules with large dipole moments, serves as an ideal model for the emergence of spontaneous structural chirality. This chiral ground state arises from a left- or right-handed twist of polarization due to depolarization effects. In contrast, the ferroelectric smectic state, characterized by a polar lamellar structure with lower symmetry, experiences significantly higher energy associated with layer-twisting deformations and the formation of domain walls, thus avoiding a continuously twisted layered structure. In this study, two types of achiral molecules (BOE-NO<sub>2</sub> and DIOLT) are reported that possess different molecular structures but exhibit a N<sub>F</sub>-ferroelectric smectic phase sequence. It is demonstrated that the chiral ground state of N<sub>F</sub> is inherited in the ferroelectric smectic phases of BOE-NO<sub>2</sub>, which features larger dipole moments and a steric hindrance moiety, thereby triggering the formation of the twisted polar smectic blocks.