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用于柔性显示器的可涂布补偿器:通过涂布、自组装和主客体反应性液晶元聚合制备的单层负色散延迟器

Coatable Compensator for Flexible Display: Single-Layered Negative Dispersion Retarder Fabricated by Coating, Self-Assembling, and Polymerizing Host-Guest Reactive Mesogens.

作者信息

Choi Yu-Jin, Yoon Won-Jin, Bang Geukcheon, Jeong Jinyoung, Lee Ji-Hoon, Kim Namil, Jeong Kwang-Un

机构信息

Environmental Materials R&D Center , Korea Automotive Technology Institute , Cheonan 330-912 , Republic of Korea.

出版信息

ACS Appl Mater Interfaces. 2019 May 15;11(19):17766-17773. doi: 10.1021/acsami.9b02571. Epub 2019 May 1.

DOI:10.1021/acsami.9b02571
PMID:31007007
Abstract

Antireflective films for flexible display devices should be made by a coating process rather than a stretching process. Additionally, the compensator, which is the core of the antireflective film, must exhibit a wavelength-independent phase retardation in the visible-light region to act as an ideal retarder. To satisfy all of these requirements, we intend to make a single-layered negative dispersion retarder (SNDR) with a single coating process followed by polymer stabilization. To achieve this goal, X-shaped reactive mesogen (X2RM) is newly synthesized as a guest RM and mixed into a host RM that exhibits a smectic A mesophase. Based on the thermal, spectroscopic, microscopic, and scattering analyses combined with computer simulation, the content of X2RM in the HCM026 molecule is optimized to be 40 wt %. The SNDR thin film is fabricated by coating the optimized H-G mixture on the rubbed alignment substrate and subsequent heat treatment. The trans-to-cis photoisomerization of imine bond can help X2RM to be located in the smectic interlayer of the HCM026. The molecular long axis of HCM026 is parallel to the rubbing direction of the alignment layer and the conjugated benzene rings of X2RM aligned perpendicular to the molecular long axis of smectic RM, which is the ideal molecular arrangement of negative dispersion retarder. Additionally, polarized UV polymerization improves the mechanical and chemical stability as well as the molecular orientation of SNDR.

摘要

用于柔性显示设备的抗反射膜应通过涂覆工艺而非拉伸工艺来制备。此外,作为抗反射膜核心的补偿器,在可见光区域必须表现出与波长无关的相位延迟,以充当理想的延迟器。为满足所有这些要求,我们打算通过单次涂覆工艺制备单层负色散延迟器(SNDR),然后进行聚合物稳定化处理。为实现这一目标,新合成了X形反应性液晶基元(X2RM)作为客体液晶基元,并将其混入呈现近晶A中间相的主体液晶基元中。基于热分析、光谱分析、显微镜分析和散射分析,并结合计算机模拟,将HCM026分子中X2RM的含量优化为40 wt%。通过将优化后的H-G混合物涂覆在经摩擦取向的基板上并随后进行热处理来制备SNDR薄膜。亚胺键的反式-顺式光异构化有助于X2RM位于HCM026的近晶层间。HCM026的分子长轴与取向层的摩擦方向平行,而X2RM的共轭苯环垂直于近晶液晶基元的分子长轴排列,这是负色散延迟器的理想分子排列。此外,偏振紫外光聚合提高了SNDR的机械稳定性、化学稳定性以及分子取向。

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