Bugakov Miron, Shibaev Valery, Boiko Natalia
Department of Chemistry, Moscow State University, Leninskie Gory-1, 119991, Moscow, Russian Federation.
Chemphyschem. 2025 Jan 2;26(1):e202400677. doi: 10.1002/cphc.202400677. Epub 2024 Nov 5.
Light patternable colorless liquid crystalline (LC) polymers are promising materials for functional photonic devices with broad applications in optical communication, diffractive optics, and displays. This work reports photoinduced optical anisotropy in thin films of azobenzene-containing (Azo) LC block copolymer supramolecular complexes, which can be decolorized after light patterning providing colorless patterned birefringent polymer films. The supramolecular complexes are prepared via intermolecular pyridine-phenol hydrogen bonding between a low-molecular-weight Azo phenol and host LC AB diblock and ABA triblock copolymers consisted of LC phenylbenzoate (PhM) blocks and poly(vinylpyridine) units. The molecular architecture of the host polymers and the morphological pattern formed by the complexes can affect orientational behavior of Azo groups under irradiation with linearly polarized light. Photoorientation of hydrogen-bonded Azo groups is accompanied by the cooperative orientation of non-photochromic PhM units, which form individual microphases and stabilize the orientation of Azo groups. This effect is specific for block copolymer complexes and it is absent for random copolymer complex, which is used as a reference sample. Optical anisotropy induced in films of the block copolymer complexes can be amplified by heating above the glass transition temperature and subsequent rinsing with diethyl ether allows colorless birefringent polymer films to be prepared.
光可图案化的无色液晶(LC)聚合物是用于功能性光子器件的有前途的材料,在光通信、衍射光学和显示器等领域有广泛应用。这项工作报道了含偶氮苯(Azo)的LC嵌段共聚物超分子复合物薄膜中的光致光学各向异性,该复合物在光图案化后可以脱色,从而得到无色的图案化双折射聚合物薄膜。超分子复合物是通过低分子量的偶氮苯酚与由苯甲酸苯酯(PhM)LC嵌段和聚(乙烯基吡啶)单元组成的主体LC AB二嵌段和ABA三嵌段共聚物之间的分子间吡啶 - 苯酚氢键制备而成。主体聚合物的分子结构以及复合物形成的形态图案会影响偶氮基团在线偏振光照射下的取向行为。氢键结合的偶氮基团的光取向伴随着非光致变色的PhM单元的协同取向,这些单元形成单独的微相并稳定偶氮基团的取向。这种效应是嵌段共聚物复合物特有的,用作参考样品的无规共聚物复合物则不存在这种效应。通过加热至玻璃化转变温度以上可以放大嵌段共聚物复合物薄膜中诱导的光学各向异性,随后用乙醚冲洗可以制备无色双折射聚合物薄膜。