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首页> 外文期刊>The Journal of Chemical Physics >Local structural ordering in surface-confined liquid crystals
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Local structural ordering in surface-confined liquid crystals

机译:表面限制液晶局部结构排序

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The effect of the interplay between attractive nonlocal surface interactions and attractive pair long-range intermolecular couplings on molecular structures of liquid crystals confined in thin cells with flat solid surfaces has been studied. Extending the McMillan mean field theory to include finite systems, it has been shown that confining surfaces can induce complex orientational and translational ordering of molecules. Typically, local smectic A, nematic, and isotropic phases have been shown to coexist in certain temperature ranges, provided that confining cells are sufficiently thick, albeit finite. Due to the nonlocality of surface interactions, the spatial arrangement of these local phases can display, in general, an unexpected complexity along the surface normal direction. In particular, molecules located in the vicinity of surfaces can still be organized in smectic layers, even though nematic and/or isotropic order can simultaneously appear in the interior of cells. The resulting surface freezing of smectic layers has been confirmed to occur even for rather weak surface interactions. The surface interactions cannot, however, prevent smectic layers from melting relatively close to system boundaries, even when molecules are still arranged in layers within the central region of the system. The internal interfaces, separating individual liquid-crystal phases, are demonstrated here to form fronts of local finite-size transitions that move across cells under temperature changes. Although the complex molecular ordering in surface confined liquid-crystal systems can essentially be controlled by temperature variations, specific thermal properties of these systems, especially the nature of the local transitions, are argued to be strongly conditioned to the degree of molecular packing. Published by AIP Publishing.
机译:有吸引力的非局部表面相互作用和有吸引力的一对之间的相互作用的效果远距离对薄细胞与平坦固体表面限制液晶的分子结构的分子间联接器进行了研究。延伸的麦克米兰平均场理论,包括有限的系统中,已经表明,限制面可诱导分子复合物取向和平移排序。典型地,本地近晶A,向列型,和各向同性相已被证明在某些温度范围内共存,条件是限制细胞是足够厚的,尽管有限。由于表面相互作用的非定域,这些局部相位的空间排列可以显示,通常,沿表面法线方向的意外的复杂性。特别是,位于表面附近的分子仍然可以在近晶层组织,尽管向列型和/或各向同性的顺序可以同时出现在细胞的内部。冷冻近晶层的所得的表面已被证实发生即使是相当弱的表面相互作用。表面相互作用可以没有,但是,防止近晶层从熔融相对接近系统边界,甚至当分子仍在系统的中心区域内布置在层中。内部接口,分离各个液晶相,在此证明了,以形成本地有限尺寸转变的方面,根据温度变化跨越细胞移动。虽然在表面上的复合物分子排序局限于液晶系统基本上可以由温度变化,这些系统中,特别是当地的转变的性质的特定的热特性来控制,被认为是强调节成分子堆积的程度。通过AIP发布发布。

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