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Vibrational spectroscopy of hydroxylated alpha-Al2O3(0001) surfaces with and without water: An ab initio molecular dynamics study

机译:羟基α-Al2O3(0001)表面的振动光谱与无水的表面:AB Initio分子动力学研究

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摘要

Using gradient- and dispersion-corrected density functional theory in connection with ab initio molecular dynamics and efficient, parametrized Velocity-Velocity Autocorrelation Function (VVAF) methodology, we study the vibrational spectra (Vibrational Sum Frequency, VSF, and infrared, IR) of hydroxylated alpha-Al2O3(0001) surfaces with and without additional water. Specifically, by considering a naked hydroxylated surface and the same surface with a particularly stable, "ice-like" hexagonal water later allows us to identify and disentangle main spectroscopic bands of OH bonds, their orientation and dynamics, and the role of water adsorption. In particular, we assign spectroscopic signals around 3700 cm(-1) as being dominated by perpendicularly oriented non-hydrogen bonded aluminol groups, with and without additional water. Furthermore, the thin water layer gives spectroscopic signals which are already comparable to previous theoretical and experimental findings for the solid/(bulk) liquid interface, showing that water molecules closest to the surface play a decisive role in the vibrational response of these systems. From a methodological point of view, the effects of temperature, anharmonicity, hydrogen-bonding, and structural dynamics are taken into account and analyzed, allowing us to compare the calculated IR and VSF spectra with the ones based on normal mode analysis and vibrational density of states. The VVAF approach employed in this work appears to be a computationally accurate yet feasible method to address the vibrational fingerprints and dynamical properties of water/metal oxide interfaces. Published by AIP Publishing.
机译:使用梯度和色散校正的密度泛函理论与AB Initio分子动力学和高效,参数化速度 - 速度自相关函数(VVAF)方法研究,我们研究羟基化的振动谱(振动和频率,VSF和红外线,IR) Alpha-Al2O3(0001)表面,无需额外的水。具体地,通过考虑裸羟基化表面和具有特别稳定的“冰状”六边形的相同表面,以后允许我们识别和解开OH键,其取向和动力学的主光谱条带,以及水吸附的作用。特别地,我们分配约3700cm(-1)的光谱信号,以垂直取向的非氢键铝醇,具有和无需额外的水。此外,薄的水层提供了与先前固体/(散装)液体界面的理论和实验结果相当的光谱信号,表明最接近表面的水分子在这些系统的振动响应中起着决定性作用。从方法的角度来看,考虑温度,anharmonicity,氢键和结构动力学的影响,并分析,允许我们将计算的IR和VSF光谱与基于正常模式分析和振动密度的振动密度进行比较状态。本作作品中使用的VVAF方法似乎是一种计算准确的然而,以解决水/金属氧化物界面的振动指纹和动态特性。通过AIP发布发布。

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