Control of molecular-level mechano-optical response of chiral liquid-crystalline elastomers

Kyosun Ku, Seiya Kimura, Kyoko Yuasa, K. Hisano, O. Tsutsumi
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引用次数: 2

Abstract

In chiral-liquid-crystal (LC*) phased, LC molecules are aligned helically; hence, the refractive indices of the LC* materials are altered periodically along the helical axis. The LC* materials have unique optical properties, such as selective reflection, that arise from the periodic structure of the refractive index. The wavelength of the selective reflection depends on the helical pitch as it is a Bragg reflection; therefore, we can control the reflective wavelength by controlling the helical pitch. In this study, we observed the mechano-optical behaviors of LC* elastomers, and discussed the relationship between the chemical structures of elastomers and mechano-responsive optical properties. When tensile strain was applied to the films, reversible hypsochromic shift in the reflection wavelength was induced. The results of the mechano-optical behavior observed for the LC* elastomers suggest that LC* materials have potential for application in mechanical sensors for soft robots.
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手性液晶弹性体的分子级机械光学响应控制
在手性液晶(LC*)相中,LC分子呈螺旋排列;因此,LC*材料的折射率沿螺旋轴周期性变化。LC*材料具有独特的光学特性,如选择性反射,这是由折射率的周期性结构引起的。选择性反射的波长取决于螺旋节距,因为它是布拉格反射;因此,我们可以通过控制螺旋节距来控制反射波长。在本研究中,我们观察了LC*弹性体的力学光学行为,并讨论了弹性体的化学结构与力学响应光学性能之间的关系。当拉伸应变作用于薄膜时,反射波长发生可逆的次色移。LC*弹性体的机械光学行为表明,LC*材料在软机器人的机械传感器中具有应用潜力。
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