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使用分子动力学模拟对氧化物表面附近界面水进行原子尺度表征。

Atomic scale characterization of interfacial water near an oxide surface using molecular dynamics simulations.

机构信息

Center for Nanoscale Materials Argonne National Laboratory, Argonne, IL-60439, USA.

出版信息

Phys Chem Chem Phys. 2012 Nov 28;14(44):15593-605. doi: 10.1039/c2cp42308a. Epub 2012 Oct 17.

Abstract

Atomic scale characterization of the structure and dynamics of confined water molecules located near the metal oxide-aqueous interface is carried out using molecular dynamics simulations. Proximity effects on water molecules (H(2)O) near a magnesium oxide surface (MgO(100)) at room temperature are evaluated based on various structural and dynamical correlation functions. Translational and orientational order parameters are used to quantify the extent of ordering of water molecules near the oxide surface. There is significant ordering of water molecules in the two layers close to the oxide interface and the extent of ordering decreases with increasing distance from the oxide-water interface. The characteristic structural features of proximal water molecules near oxide-aqueous interfaces are strongly correlated to their vibrational densities of states. Systematic trends in libration, bending, and stretching bands are correlated with local ordering of water molecules and the hydrogen-bonding network. We find that restricted transverse oscillations result in larger blue shifts in O-O-O bending and O-O stretching bands for water molecules having increased proximity to the interface. The O-H stretching band is red-shifted whereas the libration bands for proximal water are blue shifted with respect to bulk water; the extent of shifts are sensitive to the interface proximity, their local confinement and their hydrogen bonding status.

摘要

使用分子动力学模拟对位于金属氧化物-水界面附近的受限水分子的结构和动力学进行原子尺度的表征。基于各种结构和动力学相关函数,评估了接近室温下氧化镁表面(MgO(100))附近水分子(H₂O)的近场效应。平移和取向有序参数用于量化靠近氧化物表面的水分子的有序程度。在靠近氧化物界面的两层中,水分子有显著的有序排列,并且随着距离氧化物-水界面的增加,有序程度降低。氧化物-水界面附近近场水分子的特征结构与它们的振动态密度密切相关。摇摆、弯曲和伸缩带的系统趋势与水分子的局部有序性和氢键网络相关。我们发现,对于接近界面的水分子,受限的横向振动导致 O-O-O 弯曲和 O-O 伸缩带的蓝移更大。O-H 伸缩带红移,而近场水分子的摇摆带相对于体相水蓝移;这些位移的程度取决于界面的接近程度、它们的局部限制和氢键状态。

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