首页> 外文期刊>The Journal of Chemical Physics >THEORY FOR THE PHASE BEHAVIOR OF A MIXTURE OF A RODLIKE COLLOID AND A RODLIKE POLYMER
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THEORY FOR THE PHASE BEHAVIOR OF A MIXTURE OF A RODLIKE COLLOID AND A RODLIKE POLYMER

机译:罗德里克胶体与罗德里克聚合物混合相行为的理论。

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摘要

A suspension of rodlike colloidal particles and rodlike liquid crystalline polymers is modeled as a mixture of thick (colloidal) and thin (polymeric) rods. The model mixture is studied by means of an Onsager type, theory, the colloidal particles are represented by hard rods and the polymer by hard rods with zero diameter. Extensive immiscibility is observed for the colloid plus polymer model mixture and if the polymer is more than 3 times as long as the colloid coexistence between two isotropic phases is observed. For all polymer lengths phase separation into an almost pure ideal gas df polymer and a dense nematic phase of colloid is observed at high polymer fugacity. The phase separation is driven by excluded volume effects; the volume available to the polymer is maximized by separating from the colloid. (C) 1995 American Institute of Physics. [References: 28]
机译:棒状胶体颗粒和棒状液晶聚合物的悬浮液被建模为粗(胶体)棒和细(聚合物)棒的混合物。通过Onsager类型的理论对模型混合物进行研究,胶体颗粒用硬棒表示,聚合物用零直径的硬棒表示。对于胶体加聚合物模型混合物,观察到广泛的不混溶性,并且如果聚合物的长度是观察到的两个各向同性相之间的胶体共存的时间的3倍以上,则可以观察到。对于所有长度的聚合物,在高逸度下都可以观察到相分离成几乎纯净的理想气体df聚合物和致密的向列相胶体。相分离是由排除的体积效应驱动的。通过与胶体分离,可最大化聚合物的可用体积。 (C)1995年美国物理研究所。 [参考:28]

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