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Multilayer water adsorption on rutile TiO_2(110): A first-principles study

机译:金红石型TiO_2(110)的多层水吸附:第一性原理研究

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The adsorption of water on the TiO_2(110) surface has become the model process in efforts to understand metal oxide-aqueous solution interfaces. considerable progress has been made in understanding low-coverage situations where first-principle calculations have been employed to good effect. However, current theory is less well developed for coverage above on monolayer. Here we present results of calculations on the adsorption process in forming the second water layer, that is, the adsorption of water on the fully hydrated surface. We show that there are many competitive adsorption sites owing to the numerous hydrogen-bonding possibilities. The presence of the second layer water molecules facilitates proton transfer among the adsorbates within chainlike configurations, and we present some illustration of these processes. We sow how the adsorption energetics computed here along with recent calculations on defective surface and lo-coverage adsorption may be used to provide a satisfactory interpretation of the temperature programmed adsorption data for this system. Finally, we compute the vibrational spectrum for H and compare with the high-resolution electron-energy-loss spectroscopy measurements.
机译:TiO_2(110)表面的水吸附已成为理解金属氧化物-水溶液界面的模型过程。在了解低覆盖率情况下已经取得了相当大的进步,在这些情况下,采用第一性原理计算取得了很好的效果。但是,当前的理论对于单层以上的覆盖还不够完善。在这里,我们介绍形成第二水层时的吸附过程的计算结果,即水在完全水合的表面上的吸附。我们表明由于众多的氢键可能性,存在许多竞争性吸附位点。第二层水分子的存在促进了质子在链状构型内的被吸附物之间转移,我们对这些过程进行了一些说明。我们介绍了如何使用此处计算的吸附能学以及最近对有缺陷的表面和低覆盖率吸附的计算来为该系统的程序升温吸附数据提供令人满意的解释。最后,我们计算出H的振动谱,并与高分辨率电子能量损失谱测量结果进行比较。

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