Effect of molecular diffusion on polymerization behavior induced by scanning wave photopolymerization

Takuto Ishiyama, Y. Kobayashi, S. Kubo, A. Shishido
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Abstract

Molecular alignment control in polymer films is key to the development of high-performance materials with optical, electronic and thermal functions. Among molecular alignment techniques, a photoalignment method offers the fine and remote control of two-dimensional molecular alignment by the irradiation with linearly polarized light. We have recently proposed a novel photoalignment method based on the molecular diffusion caused by the polymer concentration gradient, termed scanning wave photopolymerization. In this study, we report specific polymerization behavior occurring during the process of the scanning wave photopolymerization. We investigate the effect of molecular diffusion on the photopolymerization behavior by measuring molecular weight of the polymers obtained under various photopolymerization conditions.
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分子扩散对扫描波光聚合行为的影响
聚合物薄膜中的分子排列控制是开发具有光学、电子和热学功能的高性能材料的关键。在分子定位技术中,光定位技术通过线偏振光的照射,提供了二维分子定位的精细和远程控制。我们最近提出了一种新的基于聚合物浓度梯度引起的分子扩散的光定位方法,称为扫描波光聚合。在本研究中,我们报道了扫描波光聚合过程中发生的特定聚合行为。我们通过测量在不同光聚合条件下得到的聚合物的分子量来研究分子扩散对光聚合行为的影响。
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Front Matter: Volume 11807 Dynamic optical filters via mechanical reconfiguration of liquid crystalline materials Tunable reflective colors in holographically patterned liquid crystal gels Smart windows with nanoporous structures templated by liquid crystals Rewriting bulk photoalignment of nematic liquid crystals in a two-step exposure system
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