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不同聚合物浓度的聚合物稳定胆甾相液晶的电光响应

Electro-Optic Response of Polymer-Stabilized Cholesteric Liquid Crystals with Different Polymer Concentrations.

作者信息

Saadaoui Lotfi, Yang Donghao, Hassan Faheem, Qiu Ziyang, Wang Yu, Fan Yujie, Drevensek-Olenik Irena, Li Yigang, Zhang Xinzheng, Xu Jingjun

机构信息

The MOE Key Laboratory of Weak-Light Nonlinear Photonics and International Sino-Slovenian Join Research Center on Liquid Crystal Photonics, TEDA Institute of Applied Physics and School of Physics, Nankai University, Tianjin 300457, China.

Physics Laboratory of Soft Matter and Electromagnetic Modelling, Faculty of Sciences of Tunis, University of Tunis El Manar, El Manar Tunis 2092, Tunisia.

出版信息

Polymers (Basel). 2024 Aug 28;16(17):2436. doi: 10.3390/polym16172436.

Abstract

Polymer-stabilized cholesteric liquid crystals (PSCLCs) have emerged as promising candidates for one-dimensional photonic lattices that enable precise tuning of the photonic band gap (PBG). This work systematically investigates the effect of polymer concentrations on the AC electric field-induced tuning of the PBG in PSCLCs, in so doing it explores a range of concentrations and provides new insights into how polymer concentration affects both the stabilization of cholesteric textures and the electro-optic response. We demonstrate that low polymer concentrations (≈3 wt. %) cause a blue shift in the short wavelength band edge, while high concentrations (≈10 wt. %) lead to a contraction and deterioration of the reflection band. Polarization optical microscopy was conducted to confirm the phase transition induced by the application of an electric field. The observations confirm that increased polymer concentration stabilizes the cholesteric texture. Particularly, the highly desired fingerprint texture was stabilized in a sample with 10 wt. % of the polymer, whereas it was unstable for lower polymer concentrations. Additionally, higher polymer concentrations also improved the dissymmetry factor and stability of the lasing emission, with the dissymmetry factor reaching the value of around 2 for samples with 10 wt. % of polymer additive. Our results provide valuable comprehension into the design of advanced PSCLC structures with tunable optical properties, enhancing device performance and paving the way for innovative photonic applications.

摘要

聚合物稳定的胆甾相液晶(PSCLC)已成为一维光子晶格的有前途的候选材料,能够精确调节光子带隙(PBG)。这项工作系统地研究了聚合物浓度对PSCLC中交流电场诱导的PBG调谐的影响,在此过程中探索了一系列浓度,并就聚合物浓度如何影响胆甾相织构的稳定性和电光响应提供了新的见解。我们证明,低聚合物浓度(≈3 wt.%)会导致短波长带边缘发生蓝移,而高浓度(≈10 wt.%)会导致反射带收缩和劣化。进行了偏振光学显微镜观察以确认电场施加引起的相变。观察结果证实,增加聚合物浓度可稳定胆甾相织构。特别是,在含有10 wt.%聚合物的样品中,高度期望的指纹织构得以稳定,而对于较低聚合物浓度则不稳定。此外,较高的聚合物浓度还提高了激光发射的不对称因子和稳定性,对于含有10 wt.%聚合物添加剂的样品,不对称因子达到约2的值。我们的结果为设计具有可调光学特性的先进PSCLC结构提供了有价值的理解,提高了器件性能,并为创新的光子应用铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dcbd/11398086/856a55a4503e/polymers-16-02436-g001.jpg

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