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A molecular dynamics simulations study on ethylene glycol-water mixtures in mesoporous silica

机译:介孔二氧化硅中乙二醇-水混合物的分子动力学模拟研究

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We perform molecular dynamics simulations to investigate structural and dynamical properties of ethylene glycol-water (EG-WA) mixtures in mesoporous silica. To obtain comprehensive insights into the dependence of liquid behaviors on the confinement features, we exploit that straightforward modification of the force field parameters allows us to vary the properties of the hydrogen-bond network of the confined liquid, we alter the polarity of the silica surface, and we consider amorphous as well as crystalline matrices. It is observed that the confinement induces a micro-phase separation in the liquid, which qualitatively depends on the properties of both liquid and matrix so that EG or WA molecules may be preferentially adsorbed at the silica surface. Furthermore, it is found that the confinement strongly affects the liquid dynamics. Largely independent of the polarity and structure of the matrix, structural relaxation is about a factor of 104 slower at the pore wall than in the pore center. Moreover, the non-Arrhenius temperature dependence of the bulk mixture turns into an Arrhenius behavior of the confined mixture so that the spatial restriction can slow down or speed up the structural relaxation, depending on temperature. Published by AIP Publishing.
机译:我们进行分子动力学模拟,以研究介孔二氧化硅中乙二醇-水(EG-WA)混合物的结构和动力学性质。为了获得对液体行为对限制特征的依赖性的全面了解,我们利用对力场参数的直接修改允许我们改变被限制液体的氢键网络的性质,我们改变了二氧化硅表面的极性,我们同时考虑了非晶和结晶基质。观察到,该限制在液体中引起微相分离,这在质量上取决于液体和基质的性质,使得EG或WA分子可以优先吸附在二氧化硅表面。此外,发现该限制强烈影响液体动力学。在很大程度上,与基质的极性和结构无关,在孔壁处的结构弛豫比在孔中心处慢约104倍。此外,本体混合物的非阿伦尼乌斯温度依赖性变成受限混合物的阿伦尼乌斯行为,使得空间限制可以根据温度而减慢或加速结构松弛。由AIP Publishing发布。

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