Hsiang En-Lin, Li Yannanqi, He Ziqian, Zhan Tao, Zhang Caicai, Lan Yi-Fen, Dong Yajie, Wu Shin-Tson
College of Optics and Photonics, University of Central Florida, Orlando, FL 32816, USA.
Department of Materials Science & Engineering, University of Central Florida, Orlando, FL 32816, USA.
Nanomaterials (Basel). 2020 Dec 5;10(12):2430. doi: 10.3390/nano10122430.
Color-converted micro-light-emitting diode (micro-LED) displays with wide color gamut, high ambient contrast ratio, and fast response time are emerging as a potentially disruptive technology. However, due to limited optical density and thickness of the color-conversion film, the blue light leakage and low color-conversion efficiency still hinder their widespread applications. In this paper, we demonstrate a patterned cholesteric liquid crystal (CLC) polymer film with two special optical functionalities. On the green and red sub-pixels, the corresponding planar CLC texture acts as a distributed Bragg reflector for the blue light, which in turn improves the color conversion efficiency and expands the color gamut. On the blue sub-pixels, the corresponding focal-conic CLC texture acts as light scattering medium, which helps to reduce the angular color shift. Further analysis reveals that the patterned CLC film can alleviate the crosstalk between green and blue color filters. Therefore, compared to the display system without such a CLC film, our proposed device structure increases the color conversion efficiency by 143% (at ~90% Rec. 2020) and reduces average angular color shift Δu'v' from 0.03 to 0.018 at the viewing angle with the most severe color shift. Such a patterned CLC film is applicable to all kinds of color-conversion display systems, including organic and inorganic phosphors.
具有广色域、高环境对比度和快速响应时间的色彩转换微发光二极管(micro-LED)显示器正成为一种具有潜在颠覆性的技术。然而,由于色彩转换膜的光学密度和厚度有限,蓝光泄漏和低色彩转换效率仍然阻碍着它们的广泛应用。在本文中,我们展示了一种具有两种特殊光学功能的图案化胆甾相液晶(CLC)聚合物膜。在绿色和红色子像素上,相应的平面CLC纹理充当蓝光的分布式布拉格反射器,这反过来提高了色彩转换效率并扩大了色域。在蓝色子像素上,相应的焦锥CLC纹理充当光散射介质,有助于减少角向色移。进一步分析表明,图案化的CLC膜可以减轻绿色和蓝色滤色器之间的串扰。因此,与没有这种CLC膜的显示系统相比,我们提出的器件结构在~90% Rec. 2020时将色彩转换效率提高了143%,并在色移最严重的视角下将平均角向色移Δu'v'从0.03降低到0.018。这种图案化的CLC膜适用于各种色彩转换显示系统,包括有机和无机磷光体。