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Towards tunable defect arrangements in smectic liquid crystal shells utilizing the nematic-smectic transition in hybrid-aligned geometries

机译:利用混合对齐几何中的向列 - 近晶过渡,在近晶液晶壳中形成可调谐缺陷排列

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摘要

We produce and investigate liquid crystal shells with hybrid alignment—planar at one boundary, homeotropic at the other—undergoing a transition between the nematic (N) and smectic-A (SmA) phases. The shells display a dynamic sequence of patterns, the details depending on the alignment agents and on the diameter and thickness of the shell. In shells of sufficient diameter we typically find a transient striped texture near the N–SmA transition, stabilising into a pattern of tiled, more or less regularly spaced focal conic domains in the SmA phase. The domain size and spacing decrease with reduced shell thickness. In case of strong homeotropic anchoring at one boundary and small shell size, however, the increased curvature favors homeotropic against planar alignment in the smectic phase, and the shell then tends to adapt to complete homeotropic alignment at the final stage of the transition. This is the first study of hybrid-aligned smectic shells and the results constitute a beautiful demonstration of the capacity for dynamic structure formation and reformation via self-assembly in soft matter. The new patterns extend the range of arrays of topological defects that can be realised with liquid crystals in spherical morphology and the correlation between the feature arrangements and the variable parameters of the shell and its environment opens a route towards tunability. However, the observed strong impact from increasing curvature, even for these rather large shells, indicates that the choice of alignment agents inducing planar or homeotropic alignment with varying strength will become critical when targeting the most attractive colloidal size scale of about a micron or smaller.
机译:我们生产和研究具有混合排列的液晶壳-在一个边界处为平面,在另一个边界处为同质-经历向列相(N)和近晶A(SmA)相之间的过渡。壳显示出动态的图案序列,其细节取决于定向剂以及壳的直径和厚度。在具有足够直径的壳中,我们通常会在N–SmA过渡附近发现一个短暂的条纹纹理,并在SmA相中稳定为平铺的,或多或少规则间隔的焦点圆锥区域。畴尺寸和间距随着壳厚度的减小而减小。但是,如果在一个边界处有很强的垂直方向锚固并且外壳尺寸较小,则增加的曲率有利于垂直方向在近晶相中的平面排列,然后外壳在过渡的最后阶段倾向于适应完整的垂直方向排列。这是对混杂排列的近晶壳的首次研究,其结果很好地证明了通过软物质中的自组装形成动态结构和重塑的能力。新的图案扩展了可以用球形球形液晶实现的拓扑缺陷阵列的范围,并且特征排列与外壳及其环境的可变参数之间的相关性开辟了通往可调性的途径。然而,即使对于这些相当大的壳,从增加的曲率观察到的强烈影响也表明,当靶向最有吸引力的胶体尺寸范围约为微米或更小时,选择诱导剂以不同强度诱导平面取向或垂直取向将变得至关重要。

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