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Alignment of Self-Assembled Hierarchical Microstructure in Liquid Crystalline Diblock Copolymers Using High Magnetic Fields

机译:高磁场作用下液晶双嵌段共聚物中自组装层级微观结构的排列

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摘要

Large area microdomain alignment in a ferroelectric liquid crystalline diblock copolymer(LCBCP)poly(styrene)-block-poly(isoprene-LC),(PS-PILC),incorporating a biphenyl 3-nitro-4-alkoxy-benzoate LC mesogenic group and a non-LC block hexagonally packed cylinder microstructure,was successfully accomplished by application of a magnetic field at elevated temperatures.Small-and medium-angle X-ray scattering demonstrated that the PS cylinders in the LC matrix orient over large areas with their long axes perpendicular to the applied magnetic field.Correspondingly,the smectic layers of the LC mesophase in the matrix are also perpendicular to the field as the anchoring of the mesogens at the intermaterial dividing surface(IMDS)between the cylindrical microdomains and the matrix is planar(homogeneous)in this material.A negative diamagnetic anisotropy for the LC mesogens is inferred from the data.A lamellar sample was also studied and found to exhibit no preferred microstructural orientation when subjected to the magnetic field.This result is consistent with the orientational state degeneracy of planar anchoring of mesogens at the flat lamellar IMDS and closely parallels our prior results obtained by orientation of nonferroelectric LCBCPs using oscillatory shear.
机译:铁电液晶二嵌段共聚物(LCBCP),聚(苯乙烯)-嵌段-聚(异戊二烯-LC),(PS-PILC)中的大面积微区取向,并结合了联苯3-硝基-4-烷氧基-苯甲酸酯LC介晶基团和通过在高温下施加磁场成功地完成了非LC块六角形填充圆柱体的微结构。小和中角X射线散射表明,LC矩阵中的PS圆柱体在长轴的大区域上取向相应地,基质中LC中间相的近晶层也垂直于磁场,这是因为液晶元在圆柱状微区与基质之间的材料间分割表面(IMDS)上的锚固是平面的(均匀的)从数据推断LC介晶的负反磁各向异性。还研究了层状样品,发现当此结果与介晶在平面层状IMDS上的平面锚固的取向状态简并相一致,并且与我们先前使用振荡剪切法对非铁电LCBCP进行取向所获得的结果非常相似。

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