首页> 外文期刊>Liquid Crystals: An International Journal in the Field of Anisotropic Fluids >Mesomorphic and structural properties of liquid crystalline side-chain polymethacrylates: from smectic C* to columnar phases
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Mesomorphic and structural properties of liquid crystalline side-chain polymethacrylates: from smectic C* to columnar phases

机译:液晶侧链聚甲基丙烯酸酯的偏心和结构性质:从椎体晶态到柱状相

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摘要

The chiral methacrylate monomers with photosensitive azobenzene group possessing the orthogonal smectic A* and tilted smectic C* (Sm-C*) phases have been synthesised and characterised. The monomers have been used as functional side chains for the design of corresponding polymethacrylates. X-ray diffraction has been applied to elucidate the structure and phase behaviour of liquid-crystalline side-chain polymethacrylates with azobenzene-containing central core, chiral fragments and aliphatic spacers and tails of different length. X-ray patterns of polymethacrylates oriented fibres impose the tilted Sm-C* order as a basic structure of these materials. This is complemented by a regular pattern of small-angle diffuse spots, which implies complex positional order on the local scale and serves as a precursor for the formation of a columnar phase. The increase of the total length of the aliphatic tail and spacer of the side-chain fragments leads to formation of the tilted columnar phase (Col(tilt)*) with two-dimensional monoclinic lattice. For the polymer containing 10 methylene units in both, spacer and aliphatic tail, the Col(tilt)* precedes the formation of the Sm-C* phase. The observed structural changes are explained as due to coupling between the smectic ordering of the mesogenic side groups and the polymer backbone conformation.
机译:已经合成并表征了具有正交偏晶A *和倾斜的偏晶C *(SM-C *)相的光敏偶氮苯基的手性甲基丙烯酸酯单体。单体已被用作相应的聚甲基丙烯酸酯的设计的功能侧链。已经应用X射线衍射以阐明含有含偶氮苯的中央核心,手性碎片和脂族间隔物和不同长度的尾部的液晶侧链聚甲基丙烯酸酯的结构和相行为。定向甲基丙烯酸酯的X射线图案施加倾斜的SM-C *作为这些材料的基本结构。这是由小角漫射斑点的规则模式互补,这在局部尺度上暗示复杂的位置顺序,并用作形成柱状阶段的前体。侧链片段的脂族尾和间隔物的总长度的增加导致倾斜柱状相(Col(倾斜)*)与二维单斜晶格形成。对于含有10个亚甲基单元的聚合物,间隔物和脂族尾部,COL(倾斜)*之前形成SM-C *相的形成。所观察到的结构变化是由于介于脱晶侧基团和聚合物骨架构象的近晶序列之间的偶联。

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