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胆甾相液晶中手性掺杂剂被忽视的离子贡献。

Overlooked Ionic Contribution of a Chiral Dopant in Cholesteric Liquid Crystals.

作者信息

Shaban Hassanein, Wu Po-Chang, Jia Yi-Fei, Lee Wei

机构信息

Department of Basic Science, Faculty of Engineering, The British University in Egypt, El Sherouk City 11837, Cairo, Egypt.

Institute of Imaging and Biomedical Photonics, College of Photonics, National Yang Ming Chiao Tung University, Guiren District, Tainan 711010, Taiwan.

出版信息

Materials (Basel). 2024 Oct 18;17(20):5080. doi: 10.3390/ma17205080.

Abstract

This study focuses on the ionic contribution by a chiral dopant added into a nematic host for preparing cholesteric liquid crystals (CLCs). Chiral structures were designated by individually incorporating two enantiomers, R5011 and S5011, into the nematic E44 to construct right- and left-handed CLCs, respectively. Characterized by the space-charge polarization, the dielectric spectra of the CLCs were investigated in the low-frequency regime, where   ≤  1 kHz. The role of the individual chiral dopant, R5011 or S5011, at concentrations of 0-4.0 wt.% in altering the ionic properties of the CLC material was analyzed by deducing the electrical conductivity, ion density, and ion diffusivity. Regardless of the cell structure to be antiparallel or twisted by 90°, a significant ionic response was observed in the right-handed CLCs in comparison with the left-handed counterparts, suggesting that excess ions originating from our R5011 were introduced into the mesogenic mixtures. This work alarms the potential contribution of notorious impurity ions by a chiral dopant, which is often ignored in fabricating CLCs for electro-optical applications.

摘要

本研究聚焦于向向列型主体中添加手性掺杂剂以制备胆甾相液晶(CLC)时的离子贡献。通过分别将两种对映体R5011和S5011掺入向列型E44中,构建右手性和左手性CLC,从而确定手性结构。以空间电荷极化作为特征,在低频范围(≤1 kHz)内研究了CLC的介电谱。通过推导电导率、离子密度和离子扩散率,分析了浓度为0 - 4.0 wt.%的单一手性掺杂剂R5011或S5011在改变CLC材料离子特性方面的作用。无论液晶盒结构是反平行还是扭曲90°,与左手性CLC相比,右手性CLC中都观察到了显著的离子响应,这表明源自R5011的过量离子被引入到了介晶混合物中。这项工作警示了手性掺杂剂中臭名昭著的杂质离子的潜在贡献,而在制造用于电光应用的CLC时,这一点常常被忽视。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ad5/11509098/edf8051b56b9/materials-17-05080-g001.jpg

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