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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Molecular Dynamics Study of Water Interacting with Siloxane Surface Modified by Poly(ethylene oxide) Chains
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Molecular Dynamics Study of Water Interacting with Siloxane Surface Modified by Poly(ethylene oxide) Chains

机译:水与聚环氧乙烷改性的硅氧烷表面相互作用的分子动力学研究

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摘要

In this work, static and dynamic properties of interfacial water molecules on the amorphous siloxane surface covered by poly(ethylene oxide) (PEO) chains grafted at different coverage densities σ were studied using atomistic molecular dynamics simulations. It is shown that water molecules compete with the ethylene oxide (EO) monomers for interaction sites on the siloxane surface and for the space above it. Two types of orientations of the water molecules are identified as the most populated: one with the dipole moment vector pointing toward the siloxane surface and another with the dipole moment vector pointing about 5° away from the surface. In both the hydrogen pair is amenable to rotate around the dipolar axis. The higher the coverage density the larger the disorder of water molecules, but the dipole moment-down orientation still dominates. The number of water-water hydrogen bonds monotonically decreases with σ, whereas the number of water-PEO hydrogen bonds displays a maximum around thecrossover to the brush regime (stretched chains). The interfacial water molecules seem to be anchored to the siloxane surface by the water oxygen atom rather than by hydrogen bonding. The confinement due to the solid substrate does not affect the first solvation layer of PEO chains. The mobility of water molecules is attenuated by the siloxane surface and also by the PEO chains more considerably in the direction perpendicular to the siloxane substrate.
机译:在这项工作中,使用原子分子动力学模拟研究了在不同覆盖密度σ下接枝的聚环氧乙烷(PEO)链覆盖的非晶硅氧烷表面上界面水分子的静态和动态特性。结果表明,水分子与环氧乙烷(EO)单体竞争硅氧烷表面上的相互作用位点及其上方的空间。水分子的两种取向被认为是人口最多的:一种偶极矩矢量指向硅氧烷表面,另一种偶极矩矢量指向距表面约5°的方向。在两个氢对中,氢对都可以绕偶极轴旋转。覆盖密度越高,水分子的无序性越大,但是偶极矩下降方向仍然占主导地位。水-水氢键的数量随σ单调减少,而水-PEO氢键的数量在与刷区的交叉处(拉伸链)显示出最大值。界面水分子似乎是通过水的氧原子而不是通过氢键固定在硅氧烷表面的。由于固体底物的限制不影响PEO链的第一溶剂化层。水分子的迁移率在垂直于硅氧烷基材的方向上被硅氧烷表面以及PEO链减弱了。

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