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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Predicting the anchoring of liquid crystals at a solid surface: 5-cyanobiphenyl on cristobalite and glassy silica surfaces of increasing roughness
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Predicting the anchoring of liquid crystals at a solid surface: 5-cyanobiphenyl on cristobalite and glassy silica surfaces of increasing roughness

机译:预测液晶在固体表面上的锚固:方晶石上的5-氰基联苯和粗糙度增加的玻璃状二氧化硅表面

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摘要

We employ atomistic molecular dynamics simulations to predict the alignment and anchoring strength of a typical nematic liquid crystal, 4-n-pentyl-4′-cyano biphenyl (5CB), on different forms of silica. In particular, we study a thin (~20 nm) film of 5CB supported on surfaces of crystalline (cristobalite) and amorphous silica of different roughness. We find that the orientational order at the surface and the anchoring strength depend on the morphology of the silica surface and its roughness. Cristobalite yields a uniform planar orientation and increases the order at the surface with respect to the bulk whereas amorphous glass has a disordering effect. Despite the low order at the amorphous surfaces, a planar orientation is established with a persistence length into the film higher than the one obtained for cristobalite.
机译:我们使用原子分子动力学模拟来预测典型的向列型液晶4-n-戊基-4'-氰基联苯(5CB)在不同形式的二氧化硅上的排列和锚固强度。特别是,我们研究了5CB薄膜(〜20 nm),该薄膜负载在具有不同粗糙度的晶体(方石英)和无定形二氧化硅的表面上。我们发现,表面的取向顺序和锚固强度取决于二氧化硅表面的形态及其粗糙度。方石英产生均匀的平面取向并相对于整体增加表面的次序,而非晶玻璃具有无序效应。尽管在无定形表面上的阶数较低,但仍建立了一种平面取向,其在薄膜中的持久长度高于对方石英的持久长度。

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