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MICROSCOPIC APPROACH TO INHOMOGENEOUS POLYMERIC LIQUIDS

机译:非均相聚合物液体的微观方法

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We discuss a liquid-state theory for the equilibrium structure of inhomogeneous polymeric liquids. The theory consists of an equation for the;density profile of a liquid in an external potential, which has been derived previously by density functional methods. In general, this equation must be solved by sim;lation techniques. However, if the chains are modeled as random walks-which is a reasonable approximation for flexible polymers,at mel densities-we show that the theory reduces to a set of coupled integral equations which can be solved;numerically. We present results for a single component liquid near a hard wall. Last, we show that, in the Gaussian thread limit, the theory reduces to a form that is very similar to Edwards-Helfand-Tagami ''self-consistent field'' theory. However, there are important differences between the two theories for multicomponent liquids (a blend for example) if the types of polymers are structurally dissimilar. (C) 1995 American Institute of Physics. [References: 56]
机译:我们讨论了非均质聚合物液体平衡结构的液态理论。该理论由用于外部势中液体密度分布的方程组成,该方程先前已通过密度泛函方法得出。通常,该方程必须通过模拟技术求解。但是,如果将链建模为随机游走(这是对柔性聚合物的合理近似值,以mel密度计算),我们将证明该理论简化为一组可以通过数值求解的耦合积分方程。我们介绍了硬壁附近的单组分液体的结果。最后,我们证明,在高斯线程极限下,该理论简化为与Edwards-Helfand-Tagami“自洽场”理论非常相似的形式。但是,如果聚合物的类型在结构上不同,则对于多组分液体(例如,共混物),这两种理论之间存在重要差异。 (C)1995年美国物理研究所。 [参考:56]

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