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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Molecular dynamics study of water diffusivity at low concentrations in non-swollen and swollen polyurethanes
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Molecular dynamics study of water diffusivity at low concentrations in non-swollen and swollen polyurethanes

机译:在未溶胀和溶胀的聚氨酯中低浓度水扩散性的分子动力学研究

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Molecular dynamics simulation was used to study the diffusivity of water at low concentrations in two types of amorphous polyurethanes PU1 and PU2. PU1 was made up of castor oil and 4,4′-diphenylmethano-diisocyanate (MDI), a polyurethane that is not swollen by water, and PU2 was made up of polyethylene glycol (PEG) with MDI, a polyurethane exhibiting a high degree of swelling by water. PU2 also has the ability to form a considerable amount of hydrogen bonds with water molecules. To mimic the non-swollen and swollen behavior, canonical (i.e., NVT) and isothermal-isobaric (i.e., NPT) ensembles were used for PU1 and PU2, respectively. Simulation results showed that the diffusivity of water in PU1 was insensitive to its concentration at low concentrations but decreased with increasing concentration for PU2. Further data analysis revealed that in the case of PU1, both the mean number of hops of water molecules from one free volume hole to another and the mean hopping distance did not vary with water concentration. In other words, at low concentrations, hopping of water molecules is not affected by the presence of other water molecules, suggesting that there is no blocking effect. In the case of PU2, the mean number of hops did decrease drastically in the concentration range of 0-2 wt% and leveled off at higher concentrations while the mean hopping distance exhibited a slight decrease. It was found that the observed behavior is mainly attributed to the hydrogen bonds formed between PU2 and water molecules. However, it is the swelling behavior (i.e., high K/c below 2 wt% but almost constant K/c above 2 wt%) leads to the concentration dependence profile of diffusion coefficient. Compared with the theory of Barrie and Platt, the computed diffusivity is much lower than that is predicted by the theory. This is because the theory does not include effects from the hydrogen bonds formed between PU2 and water molecules and the swelling behavior of PU2.
机译:分子动力学模拟用于研究低浓度水在两种类型的无定形聚氨酯PU1和PU2中的扩散性。 PU1由蓖麻油和不会被水溶胀的聚氨酯4,4'-二苯基甲烷二异氰酸酯(MDI)组成,PU2由具有MDI的聚乙二醇(PEG)和MDI组成,MDI具有较高的水溶胀。 PU2还具有与水分子形成大量氢键的能力。为了模拟非溶胀和溶胀的行为,分别对PU1和PU2使用规范(即NVT)和等温等压(即NPT)合奏。模拟结果表明,PU1中水的扩散率对低浓度下的浓度不敏感,但随着PU2浓度的增加而降低。进一步的数据分析表明,在PU1的情况下,水分子从一个自由体积孔到另一个自由孔的平均跳跃数和平均跳跃距离都不随水浓度而变化。换句话说,在低浓度下,水分子的跳跃不受其他水分子的存在的影响,表明没有阻断作用。在PU2的情况下,平均跳数在0-2 wt%的浓度范围内确实急剧下降,并在较高的浓度下趋于平稳,而平均跳数距离则略有下降。发现观察到的行为主要归因于PU 2和水分子之间形成的氢键。然而,这是溶胀行为(即,低于2wt%的高K / c,但是高于2w​​t%的几乎恒定的K / c)导致扩散系数的浓度依赖性曲线。与Barrie和Platt的理论相比,计算得出的扩散率比该理论所预测的要低得多。这是因为该理论不包括来自PU2和水分子之间形成的氢键以及PU2的溶胀行为的影响。

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