首页> 外文期刊>Journal of Polymer Science, Part B. Polymer Physics >Application of free-volume theory to self diffusion of solvents in polymers below the glass transition temperature: A review
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Application of free-volume theory to self diffusion of solvents in polymers below the glass transition temperature: A review

机译:自由体积理论在玻璃化转变温度以下的聚合物中溶剂的自扩散中的应用:综述

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摘要

Theories based on free-volume concepts have been developed to characterize the self and mutual-diffusion coefficients of low molecular weight penetrants in rubbery and glassy polymer-solvent systems. These theories are applicable over wide ranges of temperature and concentration. The capability of free-volume theory to describe solvent diffusion in glassy polymers is reviewed in this article. Two alternative free-volume based approaches used to evaluate solvent self-diffusion coefficients in glassy polymer-solvent systems are compared in terms of their differences and applicability. The models can correlate/predict temperature and concentration dependencies of the solvent diffusion coefficient. With the appropriate accompanying thermodynamic factors they can be used to model concentration profiles in mutual diffusion processes that are Fickian such as drying of coatings. The free-volume methodology has been found to be consistent with molecular dynamics simulations.
机译:已经开发了基于自由体积概念的理论来表征橡胶和玻璃态聚合物-溶剂体系中低分子量渗透剂的自扩散系数和互扩散系数。这些理论适用于广泛的温度和浓度范围。本文回顾了自由体积理论描述溶剂在玻璃状聚合物中扩散的能力。比较了两种用于评估玻璃态聚合物-溶剂系统中溶剂自扩散系数的基于自由体积的方法,它们的差异和适用性均得到了验证。该模型可以关联/预测溶剂扩散系数的温度和浓度依赖性。结合适当的热力学因素,它们可以用于模拟相互扩散过程中的浓度分布,这些过程是菲克式的,例如涂层的干燥。已发现自由体积方法与分子动力学模拟是一致的。

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