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Dissociation of Water on Anatase TiO2 Nanoparticles: the Role of Undercoordinated Ti Atoms at Edges

机译:水在锐钛矿型TiO2纳米粒子上的解离:边缘处钛原子配位不足的作用

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摘要

We show with DFT calculations that hydroxyl formation on anatase TiO2 from dissociation of water molecules is strongly enhanced by a nanostructured state of the oxide, involving the occurrence of complexes consisting-of undercoordinated 4-fold Ti-2-fold O pairs. Our study of ridges delimited by anatase TiO2 (101) surfaces of different orientations shows that hydroxyl formation is significantly increased by the high acidity/basicity combination of these Ti_(4c)-O_(2c) pairs located on the ridges and by a stabilization effect associated with chemical bonds of the hydrogen atoms. This is at variance with the cases of the ideal (101) surface and of a ridge with 5-fold coordinated Ti atoms, where water adsorption is molecular. We demonstrate that these pairs of undercoordinated atoms on ridge edges have a particularly strong reactivity, and we propose that they play a major role in the observed high chemical activity of TiO2 nanosystems.
机译:我们用DFT计算表明,通过水分子的解离,锐钛矿TiO2上的羟基形成被水的纳米结构状态强烈增强,这涉及络合物的发生,该络合物由配位不足的4倍Ti-2倍O对组成。我们对由不同方向的锐钛矿型TiO2(101)表面定界的山脊的研究表明,通过位于这些山脊上的这些Ti_(4c)-O_(2c)对的高酸度/碱性组合,羟基形成显着增加与氢原子的化学键结合。这与理想的(101)表面以及具有5倍配位Ti原子的脊的情况不同,在这种情况下,水吸附是分子。我们证明这对脊边缘的配位不足的原子对具有特别强的反应性,并且我们建议它们在观察到的TiO2纳米系统的高化学活性中起主要作用。

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