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UV durable colour pigment doped SmA liquid crystal composites for outdoor trans-reflective bi-stable displays

机译:紫外线耐用彩色颜料掺杂SMA液晶复合材料,用于户外反射双稳态显示器

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High brightness trans-reflective bi-stable displays based on smectic A (SmA) liquid crystals (LCs) can have nearly perfect transparency in the clear state and very high reflection in the scattered state. Because the LC material in use is stable under UV radiation, this kind of displays can stand for strong day-light and therefore be ideal for outdoor applications from e-books to public signage and advertisement. However, the colour application has been limited because the traditional colourants in use are conventional dyes which are lack of UV stability and that their colours are easily photo bleached. Here we present a colour SmA display demonstrator using pigments as colourant. Mixing pigments with SmA LCs and maintain the desirable optical switching performance is not straightforward. We show here how it can be done, including how to obtain fine sized pigment nano-particles, the effects of particle size and size distribution on the display performance. Our optimized pigments/SmA compositions can be driven by a low frequency waveform (~10'Hz) to a scattered state to exhibit colour while by a high frequency waveform (~10~3Hz) to a cleared state showing no colour. Finally, we will present its excellent UV life-time (at least >7.2 years) in comparison with that of dye composition (~2.4 years). The complex interaction of pigment nano-particles with LC molecules and the resulting effects on the LC electro-optical performances are still to be fully understood. We hope this work will not only demonstrate a new and practical approach for outdoor reflective colour displays but also provide a new material system for fundamental liquid crystal colloid research work.
机译:基于偏见A(SMA)液晶(LC)的高亮度反射双稳定显示器可以在透明状态下具有几乎完美的透明性,并且在散射状态下非常高。由于使用的LC材料在紫外线辐射下稳定,因此这种显示器可以代表强烈的日光,因此是从电子书到公共标牌和广告的户外应用的理想选择。然而,颜色申请受到限制,因为使用中的传统着色剂是缺乏紫外线稳定性的常规染料,并且它们的颜色容易漂白。在这里,我们呈现使用颜料作为着色剂的彩色SMA显示演示。将颜料与SMA LCS混合并保持所需的光学开关性能并不直接。我们在这里展示了如何完成,包括如何获得精细尺寸的颜料纳米粒子,粒度和尺寸分布对显示性能的影响。我们的优化颜料/ SMA组合物可以由低频波形(〜10'Hz)驱动到散射状态,以在通过高频波形(〜10〜3Hz)上显示颜色,以显示没有颜色的清除状态。最后,与染料组合物(〜2.4岁)相比,我们将呈现出优异的UV寿命(至少> 7.2岁)。颜料纳米颗粒与LC分子的复杂相互作用及其对LC电光性能的产生影响仍然得到完全理解。我们希望这项工作不仅展示了一种新的和实用的户外反射彩色显示器,还提供了一种用于基本液晶胶体研究工作的新材料系统。

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