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一种非手性弯曲核偶氮化合物中的铁电向列相和铁电近晶相中间相

Ferroelectric Nematic and Ferrielectric Smectic Mesophases in an Achiral Bent-Core Azo Compound.

作者信息

Kumar Jitendra, Prasad Veena

机构信息

Centre for Nano and Soft Matter Sciences , P.B. No. 1329, Jalahalli, Bengaluru - 560 013 , India.

出版信息

J Phys Chem B. 2018 Mar 22;122(11):2998-3007. doi: 10.1021/acs.jpcb.7b11733. Epub 2018 Mar 9.

Abstract

Here, we report the observation of ferroelectric nematic and ferrielectric smectic mesophases in an achiral bent-core azo compound consisting of nonsymmetrical molecules with a lateral fluoro substitution on one of the wings. These mesophases are enantiotropic in nature with fairly low transition temperatures and wide mesophase ranges. The liquid crystalline properties of this compound are investigated using polarizing optical microscope, differential scanning calorimeter, X-ray diffraction, and electro-optical studies. As revealed by X-ray diffraction measurements, the nematic mesophase is composed of skewed cybotactic clusters and, in the smectic mesophase, the molecules are tilted with respect to the layer normal. The polar order in these mesophases was confirmed by the electro-optical switching and dielectric spectroscopy measurements. The dielectric study in the nematic mesophase shows a single relaxation process at low frequency ( f < 1 kHz) measured in the range 10 Hz to 5 MHz, which is attributed to the collective motion of the molecules within cybotactic clusters. The formation of local polar order in these clusters leads to a ferroelectric-like polar switching in the nematic mesophase. Of particular interest is the fact that the smectic phase exhibits a field induced ferrielectric state, which can be exploited for designing of the potential optical devices due to multistate switching.

摘要

在此,我们报道了在一种由非对称分子组成的手性弯曲核偶氮化合物中观察到铁电向列相和铁电近晶相中间相,该化合物的一个翼上有侧向氟取代。这些中间相本质上是互变的,具有相当低的转变温度和较宽的中间相范围。使用偏光光学显微镜、差示扫描量热仪、X射线衍射和电光研究对该化合物的液晶性质进行了研究。如X射线衍射测量所示,向列相中间相由倾斜的胞状簇组成,在近晶相中间相中,分子相对于层法线倾斜。通过电光开关和介电谱测量证实了这些中间相中的极性有序。向列相中间相的介电研究表明,在10Hz至5MHz范围内测量的低频(f < 1kHz)处有一个单一的弛豫过程,这归因于胞状簇内分子的集体运动。这些簇中局部极性有序的形成导致向列相中间相中类似铁电的极性开关。特别有趣的是,近晶相表现出场诱导的铁电态,由于多态开关,可用于设计潜在的光学器件。

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