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表面极性对水/金红石TiO₂(110)界面水动力学的影响。

Influence of surface polarity on water dynamics at the water/rutile TiO₂(110) interface.

作者信息

Ohto Tatsuhiko, Mishra Ankur, Yoshimune Seiji, Nakamura Hisao, Bonn Mischa, Nagata Yuki

机构信息

Max-Planck Institute for Polymer Research, Ackermannweg 10, D-55128, Mainz, Germany.

出版信息

J Phys Condens Matter. 2014 Jun 18;26(24):244102. doi: 10.1088/0953-8984/26/24/244102. Epub 2014 May 27.

Abstract

We report molecular dynamics (MD) simulations of the water/clean rutile TiO2 (110) interface using polarizable and non-surface polarity force field models. The effect of surface polarity on the water dynamics near the TiO2(110) surface is addressed, specifically by calculating the water hydrogen bond and reorientational dynamics. The hydrogen bond lifetime of interfacial water molecules is several times longer than that of bulk water due to the strong water-TiO2 interactions. A comparison of the dynamics simulated with the polarizable and non-surface polarity models shows that, while the hydrogen bond lifetime between the interfacial water and TiO2 surface is insensitive to the surface polarity, the reorientational dynamics around this hydrogen bond axis is significantly influenced by the surface polarity; the surface polarity of the TiO2 increases the water-TiO2 interactions, stabilizing the local structure of the interfacial water molecules and restricting their rotational motion. This reorientation occurs predominantly by rotation around the O-H group hydrogen bonded to the TiO2 surface. Furthermore, we correlate the dynamics of the induced charge on the TiO2 surface with the interfacial water dynamics. Our results show that the timescale of correlations of the atom charges induced by the local electric field in bulk water is influenced by the rotational motion, hydrogen bond rearrangement and translational motion, while the induced charge dynamics of the TiO2 surface is governed primarily by the rotational dynamics of the interfacial water molecules. This study demonstrates that the solid surface polarity has a significant impact on the dynamics of water molecules near TiO2 surfaces.

摘要

我们报告了使用可极化和非表面极性力场模型对水/清洁金红石型TiO₂(110)界面进行的分子动力学(MD)模拟。研究了表面极性对TiO₂(110)表面附近水动力学的影响,具体通过计算水的氢键和重排动力学来实现。由于水与TiO₂之间的强相互作用,界面水分子的氢键寿命比体相水的氢键寿命长几倍。对使用可极化模型和非表面极性模型模拟的动力学进行比较表明,虽然界面水与TiO₂表面之间的氢键寿命对表面极性不敏感,但围绕该氢键轴的重排动力学受表面极性的影响显著;TiO₂的表面极性增加了水与TiO₂之间的相互作用,稳定了界面水分子的局部结构并限制了它们的旋转运动。这种重排主要通过围绕与TiO₂表面氢键合的O-H基团的旋转发生。此外,我们将TiO₂表面感应电荷的动力学与界面水动力学相关联。我们的结果表明,体相水中局部电场感应的原子电荷的相关时间尺度受旋转运动、氢键重排和平移运动的影响,而TiO₂表面的感应电荷动力学主要由界面水分子的旋转动力学控制。这项研究表明,固体表面极性对TiO₂表面附近水分子的动力学有重大影响。

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