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Polymer-stabilized cholesteric liquid crystals as switchable photonic broad bandgaps

机译:聚合物稳定的胆甾型液晶作为可切换光子宽带隙

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A cholesteric liquid crystal can be considered as a one-dimensional photonic crystal with a refractive index that is regularly modulated along the helix axis because of the particular arrangement of the molecules. The result is that the propagation of light is suppressed for a particular range of wavelengths (bandgap). A polymer-stabilized cholesteric liquid crystal (PSCLC), which is obtained by in situ photopolymerization of reactive liquid-crystal molecules in the presence of non-reactive liquid-crystal molecules in an oriented Bragg planar texture, is elaborated by combining the UV-curing with a thermally induced pitch variation. As a consequence, it is shown here that memory effects are introduced into the characteristics of the reflection band of the material at room temperature. In the visible spectrum, the reflection bandwidth can be tuned in agreement with the thermal ramp and broadened. In addition, the bandgap filters can be switched between broadband reflective, scattering and transparent states by subjecting them to an electric field. Related application fields of these functional materials are switchable smart windows for the control of the solar-light spectrum and white-or-black polarizer-free reflective displays.
机译:胆甾型液晶可以被认为是一维光子晶体,由于分子的特定排列,其折射率沿着螺旋轴规则地被调制。结果是对于特定波长范围(带隙),光的传播受到抑制。通过结合紫外光固化工艺,对聚合物稳定的胆甾型液晶(PSCLC)进行了精细化处理,该聚合物是通过在无反应性液晶分子存在下以定向布拉格平面织构进行反应性液晶分子的原位光聚合而制得的具有热引起的音高变化。结果,这里示出了在室温下将记忆效应引入到材料的反射带的特性中。在可见光谱中,反射带宽可以根据热斜率进行调整并扩大。另外,通过使带隙滤波器经受电场,可以在宽带反射,散射和透明状态之间切换。这些功能材料的相关应用领域是可切换的智能窗口,用于控制太阳光谱和无白色或黑色偏光镜的反射式显示器。

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