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Phase behavior of flowerlike micelles in a SCF cell model

机译:花状胶束在SCF细胞模型中的相行为

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We study the interactions between flowerlike micelles, self-assembled from telechelic associative polymers, using a molecular self-consistent field (SCF) theory and discuss the corresponding phase behavior. In these calculations we do not impose properties such as aggregation number, micellar structure and number of bridging chains. Adopting a SCF cell model, we calculate the free energy of interaction between a central micelle surrounded by others. Based on these results, we predict the binodal for coexistence of dilute and dense liquid phases, as a function of the length of the hydrophobic and hydrophilic blocks. In the same cell model we compute the number of bridges between micelles, allowing us to predict the network transition. Several quantitative trends obtained from the numerical results can be rationalized in terms of transparent scaling arguments.
机译:我们使用分子自洽场(SCF)理论研究了从遥螯缔合聚合物自组装而成的花状胶束之间的相互作用,并讨论了相应的相行为。在这些计算中,我们不施加诸如聚集数,胶束结构和桥接链数之类的属性。采用SCF细胞模型,我们计算了被其他分子包围的中央胶束之间相互作用的自由能。根据这些结果,我们预测稀液和致密液相共存的二倍体随疏水性和亲水性嵌段长度的变化而变化。在同一个细胞模型中,我们计算胶束之间的桥数,从而可以预测网络过渡。从数值结果中获得的一些定量趋势可以根据透明的比例论证进行合理化处理。

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