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Effect of doping by enantiomers with the different absolute configuration and phase sequence on mesomorphic, helical and electro-optical properties of highly tilted chiral anticlinic mixture

机译:对映异构体具有不同绝对构型和相序的掺杂对高倾斜手性抗临临性混合物的旋光性,螺旋和电光特性的影响

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摘要

The main objective of the present work is to contribute to better understanding of the effect of the absolute configuration and phase sequences of dopants on the self-assembling and physicochemical properties as well as on the electro-optical parameters of a specific liquid crystalline mixture with a broad temperature range of the antiferroelectric phase. In order to establish this effect, the mesomorphic behaviour, helical pitch length and its handedness, spontaneous polarization and tilt angle, as well as electro-optical performance for all design mixture, are determined. The results show a broad temperature range of the antiferroelectric phase and very low melting points in all mixtures. Mixtures doped with (R) enantiomers exhibit longer helical pitch lengths, lower values of spontaneous polarization and rotational viscosity, comparable values of a tilt angle but also longer switch off times in comparison to similar mixtures doped with (S) enantiomers. The doping by the enantiomers exhibiting isotropic-ferroelectric-antiferroelectric phase sequence reveals the most significant impact on properties of the base mixture. The knowledge gained will very advantageous while designing new multicomponent liquid crystalline mixtures exhibiting the chiral tilted smectic mesophases for application in surface stabilized modes with passive and active matrix drive for utilization in photonics and optoelectronics. (C) 2020 The Authors. Published by Elsevier B.V.
机译:本作工作的主要目的是有助于更好地理解掺杂剂对自组装和物理化学特性的绝对配置和相位序列的影响以及特定液晶混合物的电光参数与a宽温度范围的防废料相。为了建立这种效果,确定了与所有设计混合物的中间形行为,螺旋间距和其手,自发极化和倾斜角度以及电光性能。结果显示出所有混合物中的抗废料相和极低熔点的宽温度范围。掺杂有(R)对映体的混合物表现出更长的螺旋间距,自发极化和旋转粘度的值较低,倾斜角度的相当值,而且与掺杂有(S)对映体的类似混合物相比,关闭时间更长。对映异构体的掺杂表现出各向同性 - 铁电 - 次电相序列,揭示了对基础混合物性质的最显着影响。在设计具有用于在具有无源和有源基质驱动的表面稳定模式下,在具有用于利用光子学和光电子的表面稳定模式下应用的新型多组分液晶混合物的知识将非常有利的。 (c)2020作者。由elsevier b.v出版。

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