Solid-Like Director Reorientation in Sheared Hexagonal Lyotropic Liquid Crystals as Studied by Nuclear Maginetic Resonance

S. Müller, P. Fischer, C. Schmidt
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引用次数: 14

Abstract

The shear-induced reorientation of the hexagonal surfactant mesophase is investigated by deuterium nuclear magnetic resonance spectroscopy. The NMR spectra of the sheared samples, measured in situ with two different shear geometries, either cone and plate or coaxial cylinders, prove that the hexagonal axis (the director) aligns parallel to the flow. Shear experiments starting from a monodomain sample, with the director initially aligned along the velocity gradient, exhibit an increasing tilt of the director as the shear strain γ grows. The tilt angle is given by arctan γ. This makes evident that the hexagonal lyomesophase behaves like a solid. The analysis of nuclear magnetic resonance spectra and textures observed by polarizing microscopy shows an undulation of the columns in both the quiescent and the sheared state. The amplitude of the undulations decreases with increasing shear strain.
核磁共振研究剪切六方溶致液晶的类固体导向重定向
用氘核磁共振波谱法研究了六方表面活性剂中间相的剪切诱导重定向。剪切样品的核磁共振光谱,在原位测量两种不同的剪切几何形状,无论是圆锥和板或同轴圆柱体,证明六角形轴(导演)对齐平行于流动。剪切实验从单畴试样开始,初始方向沿速度梯度排列,随着剪切应变γ的增加,方向的倾斜度增加。倾斜角由arctan γ给出。这表明六角形赖质相表现得像固体。核磁共振谱分析和偏光显微镜观察到的结构分析表明,柱在静态和剪切状态下都有波动。随着剪切应变的增大,波动幅度减小。
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