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来自弯曲核液晶的蓝相III:揭示热稳定性和独特特性——全面综述

Blue Phase III from Bent-Core Liquid Crystals: Unveiling Thermal Stability & Unique Traits - A Comprehensive Review.

作者信息

Khan Raj Kumar

机构信息

Department of Physics and Materials Science, Thapar Institute of Engineering and Technology, Patiala, Punjab, 147 004, India.

出版信息

Chemphyschem. 2024 Dec 16;25(24):e202400779. doi: 10.1002/cphc.202400779. Epub 2024 Oct 28.

Abstract

This review article mainly delves into the comprehensive development, thermal stabilization, characteristics, and applications of Blue Phase III (BPIII) derived from non-calamitic, mainly T-shaped and bent-core liquid crystals (BCLC). The discussion begins with discovering and characterizing various liquid crystal (LC) phases of BCLCs, emphasizing the significance of the nematic (N) phase in three and four-ring BCLCs. Following this, the focus shifts to the stabilization, properties, and potential applications of BPIII, particularly those derived from non-conventional (T-shaped and BCLCs) liquid crystals. The review highlights the exceptional electro-optical (E-O) properties of BPIII, including high Kerr constants and distinct phase transitions. Studies reveal the impact of chirality on thermal behavior, microscopic observations, and the influence of molecular structures on mesophase formation. Investigations into asymmetrical chiral liquid crystal diads and hydrogen-bonded complexes underscore the importance of molecular design in expanding BPIII ranges. Furthermore, achiral unsymmetrical BCLC designs reveal significant insights into the interplay between molecular structure, phase transitions, and E-O behavior. Experimental data propose that BPIII operates as a topologically protected liquid featuring skyrmion filaments, highlighting its potential in technological applications. Additionally, the structural transformation and E-O properties of highly polar BCLCs are examined to stabilize BPIII at room temperature, achieving notable Kerr constants and low voltage requirements. These collective studies provide a thorough understanding of BPIII and its promising applications in materials science and technology.

摘要

这篇综述文章主要深入探讨了源自非盘状(主要是T形和弯曲核)液晶(BCLC)的蓝相III(BPIII)的全面发展、热稳定性、特性及应用。讨论从发现和表征BCLC的各种液晶(LC)相开始,强调向列相(N)在三环和四环BCLC中的重要性。在此之后,重点转向BPIII的稳定性、性质及潜在应用,特别是那些源自非常规(T形和BCLC)液晶的BPIII。该综述突出了BPIII卓越的电光(E-O)特性,包括高克尔常数和明显的相变。研究揭示了手性对热行为、微观观察的影响以及分子结构对中间相形成的影响。对不对称手性液晶二元组和氢键复合物的研究强调了分子设计在扩展BPIII范围方面的重要性。此外,非手性不对称BCLC设计揭示了分子结构、相变和E-O行为之间相互作用的重要见解。实验数据表明,BPIII作为一种具有斯格明子细丝的拓扑保护液体发挥作用,突出了其在技术应用中的潜力。此外,还研究了高极性BCLC的结构转变和E-O特性,以在室温下稳定BPIII,实现显著的克尔常数和低电压要求。这些综合研究为BPIII及其在材料科学与技术中的应用前景提供了全面的理解。

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