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Feasibility study on the use of liquid crystal/dye cells for digital signage

机译:使用液晶/染料盒进行数字标牌的可行性研究

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Elongated dye molecules orient themselves with surrounding liquid crystal molecules. We propose to incorporate such a guest-host cell in a screen of a projection display. This configuration might be applied for digital signage to be installed on building walls. Dual-mode operation is realized by the bias applied to the cell. In display-mode, the dye molecules are oriented in parallel to the substrate of the cell. When excited by ultra-violet light, photoluminescence (PL) is generated. Because it is mostly perpendicular to the long axis of the molecule, it exits the cell efficiently. In power-harvesting mode, they are oriented vertically. The PL generated by ambient light is directed to edge surfaces where solar cells are mounted. In experiment, we fabricated a cell with commonly-available materials (coumarin 6 and a nematic liquid crystal). Anti-parallel alignment condition was adopted. We recorded PL spectra from the cell for the two excitation conditions. First, the center of the cell was irradiated by a 1.69mW blue laser beam. Second, the whole cell was uniformly exposed to the light from a fluorescent lamp at illuminance of 8001x. From the measured spectra for these cases, the contrast of luminance is calculated to be 3.2×10~5. This factor is improved to 7.5×10~5 by attaching a polarizer sheet on the cell surface. The optical power reaching its edge surfaces is measured and it roughly agrees with the prediction by a simple model neglecting self-absorption. Development of phosphor materials with a large Stokes shift is desired to boost performance of the proposed system.
机译:伸长的染料分子使自身与周围的液晶分子定向。我们建议在投影显示器的屏幕中合并这样的来宾-宿主单元。此配置可能适用于将数字标牌安装在建筑物墙壁上的情况。双模式操作是通过施加到单元的偏置来实现的。在显示模式下,染料分子平行于细胞的底物取向。当被紫外线激发时,会产生光致发光(PL)。因为它基本上垂直于分子的长轴,所以它有效地离开了细胞。在功率收集模式下,它们是垂直定向的。由环境光产生的PL指向安装了太阳能电池的边缘表面。在实验中,我们用常用材料(香豆素6和向列液晶)制造了一个单元。采用反平行对准条件。我们记录了两种激发条件下电池的PL光谱。首先,用1.69mW的蓝色激光束照射细胞的中心。其次,将整个电池均匀地暴露在8001x照度的荧光灯照射下。根据这些情况下的实测光谱,亮度的对比度被计算为3.2×10〜5。通过将偏振片粘贴在单元表面上,该系数提高到7.5×10〜5。测量到达其边缘表面的光功率,并通过忽略自吸收的简单模型大致上与预测相符。期望开发具有大斯托克斯位移的磷光体材料以提高所提出系统的性能。

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