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管状二氧化硅纳米通道中液晶的连续近晶向向列有序转变。

Continuous paranematic-to-nematic ordering transitions of liquid crystals in tubular silica nanochannels.

作者信息

Kityk Andriy V, Wolff Matthias, Knorr Klaus, Morineau Denis, Lefort Ronan, Huber Patrick

机构信息

Institute for Computer Science, Czestochowa University of Technology, Aleja Armii Krajowej 17, P-42200 Czestochowa, Poland.

出版信息

Phys Rev Lett. 2008 Oct 31;101(18):187801. doi: 10.1103/PhysRevLett.101.187801. Epub 2008 Oct 28.

Abstract

The optical birefringence of rodlike nematogens (7CB, 8CB), imbibed in parallel silica channels with 10 nm diameter and 300 microm length, is measured and compared to the thermotropic bulk behavior. The orientational order of the confined liquid crystals, quantified by the uniaxial nematic ordering parameter, evolves continuously between paranematic and nematic states, in contrast to the discontinuous isotropic-to-nematic bulk phase transitions. A Landau-de Gennes model reveals that the strength of the orientational ordering fields, imposed by the silica walls, is beyond a critical threshold, that separates discontinuous from continuous paranematic-to-nematic behavior. Quenched disorder effects, attributable to wall irregularities, leave the transition temperatures affected only marginally, despite the strong ordering fields in the channels.

摘要

测量了浸入直径为10纳米、长度为300微米的平行二氧化硅通道中的棒状向列型液晶(7CB、8CB)的光学双折射,并将其与热致本体行为进行了比较。通过单轴向列有序参数量化的受限液晶的取向序在顺排相和向列相之间连续演变,这与本体中从各向同性到向列相的不连续相变形成对比。朗道-德热纳模型表明,由二氧化硅壁施加的取向有序场的强度超过了一个临界阈值,该阈值将不连续的和顺排相到向列相的连续行为区分开来。尽管通道中存在强有序场,但由于壁面不规则性导致的淬火无序效应仅对转变温度产生轻微影响。

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