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用于聚合物稳定传感系统的双组分正锥反铁电液晶混合物的静态介电常数和电光特性

Static Permittivity and Electro-Optical Properties of Bi-Component Orthoconic Antiferroelectric Liquid Crystalline Mixtures Targeted for Polymer Stabilized Sensing Systems.

作者信息

Nepal Shantiram, Das Banani, Das Malay Kumar, Sarkar Madhumita Das, Urbańska Magdalena, Czerwiński Michał

机构信息

Department of Physics, Siliguri Institute of Technology, Siliguri 734009, India.

Department of Physics, University of North Bengal, Siliguri 734013, India.

出版信息

Polymers (Basel). 2022 Feb 27;14(5):956. doi: 10.3390/polym14050956.

Abstract

The behavior of two newly formulated bi-component orthoconic antiferroelectric liquid crystalline (OAFLC) systems, i.e., the Compound A + Compound B mixture system and Compound C + Compound B mixture system has been discussed in light of temperature and concentration dependencies of helical pitch length, spontaneous polarization, relaxation time, bulk viscosity, and the anchoring energy strength coefficient, together with static dielectric permittivity (ε) and dielectric anisotropy. Compound A + Compound B mixtures possess spontaneous polarization between 190-340 nC.cm and fast relaxation times between 190-320 µs in the smectic antiferroelectric SmC* phase at room temperature. Compound C + Compound B mixtures also have a spontaneous polarization in the range of 190-280 nC.cm and relaxation times in the range of 190-230 µs at room temperature. Most of the mixtures have a helical pitch below one micrometer in the SmC* phase. These advanced mixtures show a broad temperature range of the antiferroelectric SmC* phase, fast switching of molecules under an applied electric field, negative dielectric anisotropy and a short helical pitch, confirming the advantage of designing new polymer-stabilized OAFLC that is targeted for novel application in sensing devices, utilizing the fast responsive electro-optical modulation elements.

摘要

根据螺旋节距长度、自发极化、弛豫时间、体粘度和锚定能强度系数以及静态介电常数(ε)和介电各向异性的温度和浓度依赖性,讨论了两种新配制的双组分正交锥反铁电液晶(OAFLC)体系的行为,即化合物A +化合物B混合体系和化合物C +化合物B混合体系。化合物A +化合物B混合物在室温下的近晶反铁电SmC相中具有190 - 340 nC.cm的自发极化和190 - 320 µs的快速弛豫时间。化合物C +化合物B混合物在室温下也具有190 - 280 nC.cm范围内的自发极化和190 - 230 µs范围内的弛豫时间。大多数混合物在SmC相中具有低于一微米的螺旋节距。这些先进的混合物显示出反铁电SmC*相的宽温度范围、在施加电场下分子的快速切换、负介电各向异性和短螺旋节距,证实了设计新型聚合物稳定的OAFLC的优势,该OAFLC旨在利用快速响应电光调制元件在传感装置中实现新应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef77/8912545/daa158d99573/polymers-14-00956-g001.jpg

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