Inclusions in Thin Smectic Filns

P. Sens, M. S. Turner
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引用次数: 14

Abstract

We study theoretically the behaviour of inclusions in thin films of smectic-A liquid crystal consisting of a stack of regularly spaced membranes. Such membranes are frequently formed in thin diblock copolymer films or in solutions of amphiphilic surfactants. Inclusions, such as colloidal particles or large proteins, couple locally to the smectic and may deform the membranes over a large length scale. Using the Landau-de Gennes description of smectic liquid crystals we obtain the deformation field of the membranes for the two cases of a freely suspended film and a film on a rigid substrate. In the first case we compare and contrast with earlier work on inclusions confined between two membranes and in a lamellar phase of infinite thickness. We show that the existence of an overshoot in the deformation of the layers is intrinsically related to the finite size of the sample. This leads to qualitative differences in the interaction potential between two inclusions for finite and infinite systems. The interaction, monotonically attractive for infinite systems, becomes repulsive at large distance is the sample is finite. We show that the equilibrium position of the particle depends on the surface tension at the film boundary and give quantitative predictions for the particle-induced deformation of the membranes.
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薄膜中的夹杂物
我们从理论上研究了smic - a液晶薄膜中夹杂物的行为。这种膜通常在薄的二嵌段共聚物薄膜或两亲性表面活性剂的溶液中形成。包裹体,如胶体颗粒或大的蛋白质,在局部偶联到近晶上,并可能使膜在很大的长度范围内变形。利用近晶液晶的朗道-德-热讷描述,我们得到了自由悬浮薄膜和刚性衬底上薄膜两种情况下薄膜的变形场。在第一种情况下,我们比较和对比与早期工作的包裹体限制在两个膜之间,并在无限厚度的片层相。我们证明了层的变形中超调的存在本质上与样品的有限尺寸有关。这导致了有限系统和无限系统中两个内含物之间相互作用势的质的差异。在无限系统中单调吸引的相互作用,在样本有限的大距离上变为排斥。我们证明了粒子的平衡位置取决于膜边界的表面张力,并给出了粒子引起的膜变形的定量预测。
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Inclusions in Thin Smectic Filns From Semi-Flexible Polymers to Membranes: Anomalous Diffusion and Reptation A Small-Angle Scattering Study of the Bulk Structure of a Symmetric Diblock Copolymer System Tack of a polymer melt : Adhesion measurements and fracture profile observations Influence of matrix molecular weight on a brush : Like surface layer formed by a polymer functionalised at both ends
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