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Honeycombs in Honeycombs: Complex Liquid Crystal Alumina Composite Mesostructures

机译:蜂窝中的蜂窝:复杂的液晶氧化铝复合介观结构

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Small-angle X-ray scattering (SAXS) and atomic force microscopy (AFM) were used to study orientation patterns of two polyphilic liquid crystals (LC) confined to cylindrical pores of anodic aluminum oxide (AAO). The hierarchical hybrid systems had the LC honeycomb (lattice parameter 3.5-4 nm) inside the pores of the AAO honeycomb (diameters 60 and 400 nm). By conducting complete reciprocal space mapping using SAXS, we conclude that the columns of both compounds align in planes normal to the AAO pore axis, with a specific crystallographic direction of the LC lattice aligning strictly parallel to the pore axis. AFM of LC-containing AAO fracture surfaces further revealed that the columns of the planar anchoring LC (compound 1) formed concentric circles in the plane normal to the pore axis near the AAO wall. Toward the pore center, the circles become anisometric “racetrack” loops consisting of two straight segments and two semicircles. This mode compensates for slight ellipticity of the pore cross section. Indications are, however, that for perfectly circular pores, circular shape is maintained right to the center of the pore, the radius coming down to the size of a molecule. For the homeotropically anchoring compound 2, the columns are to the most part straight and parallel to each other, arranged in layers normal to the AAO pore axis, like logs in an ordered pile. Only near the pore wall the columns splay somewhat. In both cases, columns are confined to layers strictly perpendicular to the AAO pore axis, and there is no sign of escape to the third dimension or of axial orientation, the latter having been reported previously for some discotic LCs. The main cause of the two new LC configurations, the “racetrack” and the “logpile”, and of their difference from those of confined nematic LC, is the very high splay energy and low bend energy of columnar phases.
机译:小角X射线散射(SAXS)和原子力显微镜(AFM)用于研究两种多相液晶(LC)的方向图,这些液晶局限于阳极氧化铝(AAO)的圆柱孔中。分层混合系统在AAO蜂窝(直径60和400 nm)的孔内部具有LC蜂窝(晶格参数3.5-4 nm)。通过使用SAXS进行完整的相互空间映射,我们得出结论,两种化合物的列均在垂直于AAO孔轴的平面上对齐,LC晶格的特定结晶方向严格平行于孔轴。含LC的AAO断裂表面的AFM进一步表明,平面锚固LC(化合物1)的柱在垂直于AAO壁附近的孔隙轴的平面中形成了同心圆。朝着孔中心,圆变成由两个直线段和两个半圆组成的等距“跑道”回路。该模式补偿了孔横截面的轻微椭圆度。但是,有迹象表明,对于完全圆形的孔,圆形形状恰好保持在孔的中心,半径减小到分子的大小。对于各向同性锚固化合物2,这些柱在很大程度上垂直且彼此平行,排列成垂直于AAO孔隙轴的层,就像有序桩中的原木一样。仅在孔壁附近,柱子才稍微张开。在这两种情况下,柱子都被限制在严格垂直于AAO孔轴的层中,并且没有逃逸到三维或轴向取向的迹象,后者在先前已被报道用于一些盘状LC。两种新的液相色谱配置(“轨迹”和“对数”)的主要原因是其与局限向列液相色谱的差异,其原因是柱状相具有很高的扩展能和较低的弯曲能。

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