Zhang Huimin, Li Fei, Li Junqin, He Zemin, Gao Jianjing, Wen Lifen, Zhao Yuzhen, Miao Zongcheng
Technological Institute of Materials & Energy Science (TIMES), Xijing University, Xi'an 710123, P. R. China.
Xi'an Key Laboratory of Advanced Photo-electronics Materials and Energy Conversion Device, School of Electronic Information, Xijing University, Xi'an 710123, P. R. China.
Phys Chem Chem Phys. 2023 Aug 23;25(33):22325-22335. doi: 10.1039/d3cp02613b.
Bistable cholesteric liquid crystals have promising application prospects in various fields, such as smart windows and displays. However, the long-term stability of two individual states is not easy to achieve, hindering their practical use. In this research, the bistable feature was enhanced by constructing a microsphere-type polymer with a liquid-crystalline epoxy/thiol monomer in negative dielectric anisotropic cholesteric liquid crystals. Spectroscopic and optical examinations revealed that either the transparent planar state or the opaque focal conic state can be maintained without the aid of an external field. Moreover, they can be switched to each other by applying a high- or low-frequency electric field. Further, factors such as the chemical structure of thiol compounds, curing temperature and curing time were investigated to explore their influences on the micro morphology of the polymer and thereby the electro-optical properties. In addition, the frequency-dependent driving scheme was analysed. Finally, bistable switching was demonstrated using an optimized sample. This energy-efficient bistable film shines light on future applications in smart windows, photonic paper and other electro-optical devices.
双稳态胆甾相液晶在智能窗户和显示器等各个领域有着广阔的应用前景。然而,两种独立状态的长期稳定性不易实现,这阻碍了它们的实际应用。在本研究中,通过在负介电各向异性胆甾相液晶中构建一种含液晶环氧树脂/硫醇单体的微球型聚合物,增强了双稳态特性。光谱和光学检测表明,无需外部电场辅助,透明平面态或不透明焦锥态均可保持。此外,通过施加高频或低频电场,它们可以相互切换。进一步研究了硫醇化合物的化学结构、固化温度和固化时间等因素,以探讨它们对聚合物微观形态以及电光性能的影响。此外,还分析了频率依赖驱动方案。最后,使用优化后的样品展示了双稳态切换。这种节能双稳态薄膜为智能窗户、光子纸和其他电光器件的未来应用提供了思路。