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Force between unlike star-polymers versus the solvent quality

机译:不同星形聚合物之间的作用力与溶剂质量的关系

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We re-examine here the computation of the effective force between two star-polymers A and B of different chemical nature, which are immersed in a common solvent. This force originates from the excluded-volume interactions and chemical segregation. We assume that the solvent quality may be different for the two unlike star-polymers, that is the solvent can be 1) a good solvent for A and B, 2) a good solvent for A and a Θ-solvent for B, or 3) a Θ-solvent for the two polymers. The purpose is a quantitative study of the effect of the solvent quality on the effective force, which is a function of the center-to-center distance. Calculations are achieved using the renormalization theory applied to the Edwards continuous model. We first show that, when the mutual interactions are present, the effective force decays as the inverse of distance, but with a universal amplitude depending on the solvent quality. Second, we demonstrate the existence of three kinds of forces related to situations 1), 2) and 3) described above, and give the third-order ε-expansions (ε = 4-d, 4 is the critical dimension) of the corresponding amplitudes. These series can be resummed using the Borel-Leroy techniques to obtain the best three-dimensional values for the expected force amplitudes. Finally, this work must be regarded as a natural extension of a published one which dealt with the same problem, but where the solvent was assumed to be good for the two unlike star-polymers.
机译:我们在这里重新检查两种化学性质不同的星型聚合物A和B之间的有效力的计算,这些星型聚合物A和B浸入普通溶剂中。该力源于排除体积的相互作用和化学偏析。我们假设两种星型聚合物的溶剂质量可能有所不同,即溶剂可以是1)A和B的良好溶剂,2)A的良好溶剂和B的Θ溶剂,或3 )两种聚合物的Θ溶剂。目的是对溶剂质量对有效力的影响进行定量研究,这是中心到中心距离的函数。使用应用于Edwards连续模型的重归一化理论可以实现计算。我们首先表明,当存在相互作用时,有效力随距离的倒数而衰减,但取决于溶剂的质量,其有效振幅是通用的。其次,我们证明存在与上述情况1),2)和3)相关的三种力,并给出了对应的三阶ε展开式(ε= 4-d,4是临界尺寸)振幅。可以使用Borel-Leroy技术恢复这些序列,以获得预期力幅值的最佳三维值。最后,这项工作必须被认为是已出版的涉及同一问题的自然延伸,但假定溶剂对两种不同的星形聚合物都有利。

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