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胆甾相液晶弹性体的热响应

Thermal response of cholesteric liquid crystal elastomers.

作者信息

Nagai Hama, Urayama Kenji

机构信息

Department of Macromolecular Science and Engineering, Kyoto Institute of Technology, Matsugasaki, Kyoto 606-8585, Japan.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2015 Aug;92(2):022501. doi: 10.1103/PhysRevE.92.022501. Epub 2015 Aug 21.

Abstract

The effects of temperature variation on photonic properties of cholesteric liquid crystal elastomers (CLCEs) are investigated in mechanically unconstrained and constrained geometries. In the unconstrained geometry, cooling in the cholesteric state induces both a considerable shift of the selective reflection band to shorter wavelengths and a finite degree of macroscopic expansion in the two directions normal to the axis of the helical director configuration. The thermal deformation is driven by a change in orientational order of the underlying nematic structure S and the relation between the macroscopic strain and S is explained on the basis of the anisotropic Gaussian chain network model. The helical pitch varies with the film thickness in an affine manner under temperature variation. The CLCEs under the constrained geometry where thermal deformation is strictly prohibited show no shift of the reflection bands when subjected to temperature variation. This also reveals the strong correlation between the macroscopic dimensions and the pitch of the helical director configuration.

摘要

研究了温度变化对胆甾相液晶弹性体(CLCEs)光子特性的影响,研究采用了机械无约束和有约束的几何结构。在无约束几何结构中,在胆甾相状态下冷却会导致选择性反射带显著向较短波长移动,并且在垂直于螺旋指向矢构型轴的两个方向上出现有限程度的宏观膨胀。热变形是由底层向列相结构S的取向有序变化驱动的,宏观应变与S之间的关系基于各向异性高斯链网络模型进行了解释。在温度变化下,螺旋节距随膜厚呈仿射方式变化。在严格禁止热变形的有约束几何结构下的CLCEs,在温度变化时反射带不发生移动。这也揭示了宏观尺寸与螺旋指向矢构型节距之间的强相关性。

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