Fabrication of liquid-crystalline polymer films with cycloidal molecular alignment patterns by scanning wave photopolymerization

Hiro Nakamura, Y. Kobayashi, Me Ota, M. Aizawa, S. Kubo, A. Shishido
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Abstract

The control of molecular alignment patterns in liquid crystals is key to developing high-performance optical devices. In particular, two-dimensionally designed patterns have attracted much attention due to their potential application to novel optical devices such as a high efficiency polarization grating and a vortex converter. However, there remain challenges in obtaining molecular alignment patterns by a simple method. We have recently proposed a novel method for controlling the alignment of liquid crystals termed scanning wave photopolymerization (SWaP). In this method, a mass flow triggered by spatiotemporal photopolymerization causes shear stresses to anisotropic molecules, resulting in the generation of alignment patterns finely guided by the scanned light. In this study, we present the direct fabrication of polymer films with cycloidal molecular alignment patterns by SWaP.
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扫描波光聚合制备具有摆线分子排列模式的液晶聚合物薄膜
液晶分子排列模式的控制是开发高性能光学器件的关键。特别是二维设计模式由于其在新型光学器件如高效偏振光栅和涡流变换器中的潜在应用而备受关注。然而,用一种简单的方法获得分子定位模式仍然存在挑战。我们最近提出了一种控制液晶排列的新方法,称为扫描波光聚合(SWaP)。在这种方法中,由时空光聚合引发的质量流对各向异性分子产生剪切应力,从而产生由扫描光精细引导的排列模式。在这项研究中,我们提出了用SWaP直接制备具有摆线分子排列模式的聚合物薄膜。
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