Hsiao Yu-Cheng, Lee Wei
Opt Lett. 2015 Apr 1;40(7):1201-3. doi: 10.1364/OL.40.001201.
Cholesteric liquid-crystalline materials are abundant in nature such as condensed phases of DNA, plant cell walls, and chiral biopolymers. These self-organized helical structures produce unique optical properties, giving rise to the selective Bragg reflection of colorful light. In this Letter, we focus on the focal conic state of cholesteric liquid crystals and report on stable, tunable, and reversible color switching among red, green, and blue in polymer-stabilized cholesteric films. The experimental results indicate that, with appropriate voltage pulses, the electrically induced color switching of all six routes can be realized in a single cell reflecting green light. The scattered transmissive color persists at zero voltage due to the polymer stabilization.
胆甾相液晶材料在自然界中广泛存在,如DNA的凝聚相、植物细胞壁和手性生物聚合物。这些自组装的螺旋结构产生独特的光学性质,导致彩色光的选择性布拉格反射。在本信函中,我们聚焦于胆甾相液晶的焦锥态,并报道了聚合物稳定胆甾相薄膜中红、绿、蓝之间稳定、可调且可逆的颜色切换。实验结果表明,通过施加适当的电压脉冲,在反射绿光的单个单元中可以实现所有六种路径的电致颜色切换。由于聚合物的稳定作用,散射的透射颜色在零电压下持续存在。