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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Capillary Rise of an Isotropic-Nematic Fluid Interface: Surface Tension and Anchoring versus Elasticity
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Capillary Rise of an Isotropic-Nematic Fluid Interface: Surface Tension and Anchoring versus Elasticity

机译:各向同性向列流体界面的毛细管上升:表面张力和锚固与弹性

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摘要

A theoretical Study is presented on the shape of the interface between coexisting isotropic and nematic phases in contact with a solid vertical wall. The interface profile is determined by a competition between three surface tensions, two anchoring strengths, gravity, and the Frank elastic constants of the director field. In the weak-anchoring limit, the director field is rigid and uniform, and we find the capillary rise height to depend nontrivially on the orientation of the director field relative to the solid-fluid interface. For strong surface anchoring, the director field adjusts to the preferred homeotropic or planar anchoring at the solid-liquid and liquid-liquid interfaces. The shape of die interfacial profile is now a function of the balance between the surface energy and the splay and bend elastic deformation energies. Interestingly, for both weak and strong anchoring the profile decays nonmonotonically albeit only very weakly so. We compare our theory with recent capillary rise experiments on coexisting isotropic and nematic phases of colloidal platelets [van der Beek et al. Phys. Rev. Lett. 2006, 97, 087801] and are able to extract from the experimental data the surface tension and the anchoring strength.
机译:对与固态垂直壁接触的各向同性相和向列相之间的界面形状进行了理论研究。界面轮廓由三个表面张力,两个锚固强度,重力和指向矢场的弗兰克弹性常数之间的竞争确定。在弱锚固极限中,指向矢场是刚性且均匀的,并且我们发现毛细管的上升高度不重要地取决于指向矢场相对于固体-流体界面的方向。对于牢固的表面锚固,导向器字段将调整为在固-液和液-液界面处的首选垂直或平面锚固。模具界面轮廓的形状现在是表面能与张开和弯曲弹性变形能之间平衡的函数。有趣的是,对于弱锚和强锚,轮廓都非单调衰减,尽管衰减很小。我们将我们的理论与胶体血小板同时存在的各向同性和向列相的毛细管上升实验进行了比较[van der Beek等。物理牧师2006,97,087801],并且能够从实验数据中提取表面张力和锚固强度。

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