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Ab Initio Simulations of the Structure of Thin Water Layers on Defective Anatase TiO2(101) Surfaces

机译:锐钛矿型TiO2(101)缺陷表面上薄水层结构的从头算模拟

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Titania-water interfaces are important in various fields of science, from geophysics to photocatalysis and biochemistry. Here, we use ab initio molecular dynamics simulations to investigate the structure of thin water overlayers on the (101) surface of TiO2 anatase in the presence of oxidizing defects. For comparison, results of our previous studies of water layers on defect-free and reduced anatase (101) are also reviewed. On the stoichiometric defect-free surface-ordered structures are formed at one and two monolayer coverage, and the order in the first bilayer is largely maintained when a third water layer is adsorbed. By contrast, the vertical and in-plane ordering of the water layers is strongly perturbed in the presence of both oxidizing and reducing defects. As a result, the structure of the water layer is much more diffuse under these conditions, and frequent exchanges of water molecules between different layers are observed. (C) 2015 Wiley Periodicals, Inc.
机译:从地球物理学到光催化和生物化学,二氧化钛与水的界面在各个科学领域都很重要。在这里,我们使用从头算分子动力学模拟来研究存在氧化缺陷的TiO2锐钛矿(101)表面上薄水覆盖层的结构。为了进行比较,我们还回顾了我们先前对无缺陷和还原锐钛矿的水层的研究结果(101)。在一个化学计量上无缺陷的表面有序结构形成在一个和两个单层覆盖上,并且当吸附第三水层时,第一双层中的顺序被很大程度上保持。相反,在存在氧化缺陷和还原缺陷的情况下,水层的垂直和平面内排列受到强烈干扰。结果,在这些条件下水层的结构更加分散,并且观察到不同层之间水分子的频繁交换。 (C)2015威利期刊公司

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