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液晶二聚体的介电研究:探测向列相和扭曲向列相中分子的取向有序性和分子间相互作用

Dielectric Study of Liquid Crystal Dimers: Probing the Orientational Order and Molecular Interactions in Nematic and Twist-Bend Nematic Phases.

作者信息

Kocot Antoni, Czarnecka Małgorzata, Arakawa Yuki, Merkel Katarzyna

机构信息

Institute of Materials Engineering, Faculty of Science and Technology, University of Silesia, 75 Pułku Piechoty 1a, Chorzów 41-500, Poland.

Faculty of Electrical Engineering, Automatics, Computer Science and Biomedical Engineering, AGH University of Science and Technology, al. Adama Mickiewicza 30, Cracow 30-059, Poland.

出版信息

J Phys Chem B. 2023 Aug 10;127(31):7082-7090. doi: 10.1021/acs.jpcb.3c03496. Epub 2023 Aug 1.

Abstract

Dielectric spectroscopy in frequencies that range from 10 Hz to 1 GHz has been used to study the molecular orientational dynamics of the two types of dimers that form the twist-bend nematic phase over a wide range of temperatures for both nematic and twist-bend nematic phases. The symmetrical and asymmetrical liquid crystal dimers with the cyanobiphenyl mesogenic groups were investigated. The results were analyzed within the framework of the molecular theory of dielectric permittivity for nematogens. The two molecular processes can be assigned to the reorientation of the monomeric unit: the high frequency one to the precessional rotation of the longitudinal components of the cyanobiphenyl groups (CN) and the second (low frequency) to the end-over-end rotation of the CN dipole around the short molecular axis. The precession mode, which is determined by the local order and is almost unaffected by the phase transition from the nematic to the twist-bend phase, while the end-over-end rotation clearly slowed down at the transition, as it is affected by the growth of the intermolecular interactions. The latter corresponds well to the fact revealed by IR spectroscopy about the longitudinal correlation of the molecular dipoles.

摘要

介电谱在10 Hz至1 GHz的频率范围内,已被用于研究在较宽温度范围内形成扭曲向列相的两类二聚体的分子取向动力学,包括向列相和扭曲向列相。研究了带有氰基联苯介晶基团的对称和不对称液晶二聚体。结果在向列型介电常数分子理论的框架内进行了分析。这两个分子过程可归因于单体单元的重取向:高频过程是氰基联苯基团(CN)纵向分量的进动旋转,第二个(低频)过程是CN偶极围绕短分子轴的端对端旋转。进动模式由局部有序决定,几乎不受从向列相到扭曲向列相的相变影响,而端对端旋转在相变时明显减慢,因为它受到分子间相互作用增强的影响。后者与红外光谱揭示的分子偶极纵向相关性事实相符。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8653/10424235/d81596cd81e1/jp3c03496_0002.jpg

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