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Behavior of a polymer chain immersed in a binary mixture of solvents

机译:浸入二元溶剂混合物中的聚合物链的行为

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The behavior of a polymer chain immersed in a binary solvent mixture is investigated via a single-polymer simulation using an effective Hamiltonian,where the solvent effects are taken into account through a density-functional theory for polymer-solvent admixtures.The liquid-liquid phase separation of the binary solvent mixture is modeled as that of a Lennard-Jones binary fluid mixture with weakly attractive interactions between the different,components.Two types of energetic preferences of the polymer chain for the better solvent-(A) no preferential solvophilicity and (B) strong preferential solvophilicity-are employed as polymer-solvent interaction models.The radius of gyration and the polymer-solvent radial distribution functions are determined from the simulations of various molar fractions along an isotherm slightly above the critical temperature of the liquid-liquid phase separation.These quantities near the critical point conspicuously depend on the strength of the preferential solvophilicity.In the case where the polymer exhibits a strong preferential solvophilicity,a remarkable expansion of the polymer chain is observed near the critical point.On the other hand,in the case where the polymer has no preferential solvophilicity,no characteristic variation of the polymer conformation is observed even near the critical point.These results indicate that the expansion of a polymer chain enhances the local phase separation around it,acting as a nucleus of demixing in the vicinity of the critical point.This phenomenon in binary solvents near the liquid-liquid critical point is similar to the expansion of the polymer chain in one-component supercritical solvents near the liquid-vapor critical point,which we have reported [T.Sumi and H.Sekino J.Chem.Phys.122,194910 (2005)].
机译:使用有效的哈密顿量通过单聚合物模拟研究了浸入二元溶剂混合物中的聚合物链的行为,其中通过密度泛函理论针对聚合物-溶剂混合物考虑了溶剂效应。二元溶剂混合物的分离被建模为Lennard-Jones二元流体混合物的分离,其中不同组分之间的相互作用弱。聚合物链的两种类型的能量偏好对更好的溶剂-(A)没有优先的亲溶剂性和( B)强优先嗜溶剂性-被用作聚合物-溶剂相互作用模型。回转半径和聚合物-溶剂径向分布函数是由沿着等温线的各种摩尔分数的模拟确定的,该等温线略高于液相的临界温度这些分离在临界点附近的数量明显取决于优先权的强度亲油性。在聚合物表现出较强的优先亲溶剂性的情况下,在临界点附近观察到聚合物链的显着扩展。另一方面,在聚合物不具有优先亲溶剂性的情况下,聚合物的特性没有变化这些结果表明,即使在临界点附近,也能观察到构象。这些结果表明,聚合物链的扩展增强了其周围的局部相分离,在临界点附近充当了分离核。液体临界点类似于在液体蒸汽临界点附近的单组分超临界溶剂中聚合物链的膨胀[T.Sumi和H.Sekino J.Chem.Phys.122,194910(2005) ]。

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