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羟基化二氧化硅表面水的动力学与振动光谱

Dynamics and vibrational spectroscopy of water at hydroxylated silica surfaces.

作者信息

Gupta Prashant Kumar, Meuwly Markus

出版信息

Faraday Discuss. 2013;167:329-46. doi: 10.1039/c3fd00096f.

DOI:10.1039/c3fd00096f
PMID:24640499
Abstract

In the present study, the structural and dynamical properties of water at hydroxylated silica surfaces are investigated with classical molecular dynamics simulations. Depending on the nature of the interface, water molecules are observed to have well defined ordering and slower dynamics compared to bulk water. These properties include the orientation of water near the surface, reorientational relaxation times, translational diffusion coefficients, planar density distribution and vibrational spectroscopic features. The dynamical and structural features are affected up to approximately equal 6-10 A away from the surface, depending on the properties considered (lateral diffusion coefficient, charge density profile, rotational orientational time). Water molecules at the silica surface show a marked decrease in the diffusion coefficient and an increase in rotational correlation times. The presence of the polar -OH group on the hydroxylated silica surface provides adsorption sites for water with preferred orientations. In addition to the known broadening of the water spectrum in the bonded OH-stretch region for first-layer water molecules, the present simulations find a characteristic band at 1150 cm(-1), which is assigned to the HO(water)-H(SiOH) bending vibration. Because this signal only occurs for water molecules in the first layer, it should be experimentally accessible through surface sensitive techniques such as vibrational sum frequency generation spectroscopy (VSFG).

摘要

在本研究中,利用经典分子动力学模拟研究了羟基化二氧化硅表面水的结构和动力学性质。根据界面的性质,观察到与体相水相比,水分子具有明确的有序排列且动力学较慢。这些性质包括表面附近水的取向、重新取向弛豫时间、平移扩散系数、平面密度分布和振动光谱特征。动力学和结构特征在距表面约6 - 10埃的范围内受到影响,具体取决于所考虑的性质(横向扩散系数、电荷密度分布、旋转取向时间)。二氧化硅表面的水分子扩散系数显著降低,旋转相关时间增加。羟基化二氧化硅表面上极性 -OH 基团的存在为具有优选取向的水提供了吸附位点。除了已知的第一层水分子在键合的 OH 伸缩区域中水光谱的展宽外,本模拟还在1150 cm(-1)处发现了一个特征带,该带被指定为 HO(水)-H(SiOH)弯曲振动。因为这个信号仅在第一层水分子中出现,所以应该可以通过诸如振动和频产生光谱(VSFG)等表面敏感技术进行实验检测。

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