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混溶性聚合物共混物中的浓度涨落:温度和链刚性的影响。

Concentration fluctuations in miscible polymer blends: influence of temperature and chain rigidity.

机构信息

The James Franck Institute and the Department of Chemistry, The University of Chicago, Chicago, Illinois 60637, USA.

出版信息

J Chem Phys. 2014 May 21;140(19):194901. doi: 10.1063/1.4875345.

Abstract

In contrast to binary mixtures of small molecule fluids, homogeneous polymer blends exhibit relatively large concentration fluctuations that can strongly affect the transport properties of these complex fluids over wide ranges of temperatures and compositions. The spatial scale and intensity of these compositional fluctuations are studied by applying Kirkwood-Buff theory to model blends of linear semiflexible polymer chains with upper critical solution temperatures. The requisite quantities for determining the Kirkwood-Buff integrals are generated from the lattice cluster theory for the thermodynamics of the blend and from the generalization of the random phase approximation to compressible polymer mixtures. We explore how the scale and intensity of composition fluctuations in binary blends vary with the reduced temperature τ ≡ (T - T(c))/T (where T(c) is the critical temperature) and with the asymmetry in the rigidities of the components. Knowledge of these variations is crucial for understanding the dynamics of materials fabricated from polymer blends, and evidence supporting these expectations is briefly discussed.

摘要

与小分子流体的二元混合物相反,均相聚合物共混物表现出相对较大的浓度涨落,这些浓度涨落会强烈影响这些复杂流体在很宽的温度和组成范围内的输运性质。通过应用 Kirkwood-Buff 理论来模拟具有上临界溶液温度的线性半柔性聚合物链的共混物,研究了这些组成波动的空间尺度和强度。为了确定 Kirkwood-Buff 积分所需的量,从混合物热力学的晶格团簇理论和可压缩聚合物混合物的随机相位近似的推广中生成。我们探讨了二元共混物中组成波动的幅度和强度如何随约化温度 τ≡(T-T(c))/T(其中 T(c)是临界温度)和组成刚性的不对称性而变化。了解这些变化对于理解由聚合物共混物制造的材料的动力学至关重要,并且简要讨论了支持这些预期的证据。

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