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德弗里斯近晶型液晶中弱层收缩的起源。

Origin of weak layer contraction in de Vries smectic liquid crystals.

作者信息

Agra-Kooijman Dena M, Yoon HyungGuen, Dey Sonal, Kumar Satyendra

机构信息

Department of Physics, Kent State University, Kent, Ohio 44242, USA.

TV Development Team, LCD Business, Samsung Display, Chungcheongnam-Do 336-741, Korea.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2014 Mar;89(3):032506. doi: 10.1103/PhysRevE.89.032506. Epub 2014 Mar 21.

Abstract

Structural investigations of the de Vries smectic-A (SmA) and smectic-C (SmC) phases of four mesogens containing a trisiloxane end segment reveal a linear molecular conformation in the SmA phase and a bent conformation resembling a hockey stick in the SmC phase. The siloxane and the hydrocarbon parts of the molecule tilt at different angles relative to the smectic layer normal and are oriented along different directions. For the compounds investigated, the shape of orientational distribution function (ODF) is found to be sugarloaf shaped and not the widely expected volcano like with positive orientational order parameters: ⟨P2⟩ = 0.53-0.78, ⟨P4⟩ = 0.14-0.45, and ⟨P6⟩∼0.10. The increase in the effective molecular length, and consequently in the smectic layer spacing caused by reduced fluctuations and the corresponding narrowing of the ODF, counteracts the effect of molecular tilt and significantly reduces the SmC layer contraction. Maximum tilt of the hydrocarbon part of the molecule lies between approximately 18° and 25° and between 6° and 12° for the siloxane part. The critical exponent of the tilt order parameter, β∼0.25, is in agreement with tricritical behavior at the SmA-SmC transition for two compounds and has lower value for first-order transition in the other compounds with finite enthalpy of transition.

摘要

对四种含有三硅氧烷末端链段的介晶的德弗里斯近晶 - A(SmA)相和近晶 - C(SmC)相的结构研究表明,在SmA相中分子呈线性构象,而在SmC相中呈类似曲棍球棒的弯曲构象。分子的硅氧烷部分和烃部分相对于近晶层法线以不同角度倾斜,并沿不同方向取向。对于所研究的化合物,发现取向分布函数(ODF)的形状为糖面包形,而不是具有正取向序参量时广泛预期的火山形:⟨P2⟩ = 0.53 - 0.78,⟨P4⟩ = 0.14 - 0.45,且⟨P6⟩∼0.10。有效分子长度的增加,以及因此由波动减小导致的近晶层间距增加和ODF相应变窄,抵消了分子倾斜的影响,并显著减小了SmC层的收缩。分子烃部分的最大倾斜角度在约18°至25°之间,硅氧烷部分在6°至12°之间。倾斜序参量的临界指数β∼0.25,对于两种化合物与SmA - SmC转变处的三临界行为一致,而对于具有有限转变焓的其他化合物在一级转变时具有较低值。

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