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Prediction of mutual-diffusion coefficients in polymer solutions using a simple activity coefficient model

机译:使用简单活度系数模型预测聚合物溶液中的相互扩散系数

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Using a simple activity coefficient model in conjunction with the Vrentas-Duda free-volume (FV) theory, the diffusion behavior of small molecular solvents between and amongst polymer chains is then predicted for several polymer/solvent systems over a wide range of concentrations. The estimations are comparable with experimental data for some systems. For diffusion over- and under-predicted systems, a pre-exponential factor D_0 can be adjusted to improve the predictions. It is found that the entropic-FV model is a suitable alternative to the Flory-Huggins equation for predicting mutual-diffusion coefficients in polymeric solutions. To understand the impact of the model on the prediction thoroughly a sensitivity analysis is done for free-volume. The influence of the free-volume of solvent is the opposite of that of the polymer.
机译:使用简单的活度系数模型并结合Vrentas-Duda自由体积(FV)理论,然后预测了多种聚合物/溶剂体系在宽浓度范围内小分子溶剂在聚合物链之间的扩散行为。该估计值与某些系统的实验数据相当。对于扩散过度预测和预测不足的系统,可以调整指数前因子D_0以改善预测。发现熵FV模型是Flory-Huggins方程的合适替代物,用于预测聚合物溶液中的相互扩散系数。为了全面了解模型对预测的影响,对自由体积进行了敏感性分析。溶剂的自由体积的影响与聚合物相反。

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