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Molecular modeling of temperature dependence of solubility parameters for amorphous polymers

机译:非晶态聚合物溶解度参数随温度变化的分子模型

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摘要

A molecular modeling strategy is proposed to describe the temperature (T) dependence of solubility parameter (δ) for the amorphous polymers which exhibit glass-rubber transition behavior. The commercial forcefield “COMPASS” is used to support the atomistic simulations of the polymer. The temperature dependence behavior of δ for the polymer is modeled by running molecular dynamics (MD) simulation at temperatures ranging from 250 up to 650 K. Comparing the MD predicted δ value at 298 K and the glass transition temperature (Tg) of the polymer determined from δ–T curve with the experimental value confirm the accuracy of our method. The MD modeled relationship between δ and T agrees well with the previous theoretical works. We also observe the specific volume (v), cohesive energy (Ucoh), cohesive energy density (ECED) and δ shows a similar temperature dependence characteristics and a drastic change around the Tg. Meanwhile, the applications of δ and its temperature dependence property are addressed and discussed.
机译:提出了一种分子建模策略来描述非晶态聚合物的溶解度参数(δ)对温度(T)的依赖性,该非晶态聚合物表现出玻璃-橡胶的转变行为。商业力场“ COMPASS”用于支持聚合物的原子模拟。聚合物δ的温度依赖性行为是通过在250至650 K范围内的温度下运行分子动力学(MD)模拟来建模的。将298 K的MD预测δ值与确定的聚合物的玻璃化转变温度(Tg)进行比较从δ–T曲线与实验值的比较证实了我们方法的准确性。 δ和T之间的MD建模关系与先前的理论工作非常吻合。我们还观察到比容(v),内聚能(Ucoh),内聚能密度(ECED)和δ表现出相似的温度依赖性特征,并且在Tg附近发生剧烈变化。同时,讨论并讨论了δ的应用及其温度依赖性。

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