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首页> 外文期刊>Journal of physical chemistry letters >Insights into How Fluorine-Adsorption and n-Type Doping Affect the Relative Stability of the (001) and (101) Surfaces of TiO2: Enhancing the Exposure of More Active but Thermodynamically Less Stable (001)
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Insights into How Fluorine-Adsorption and n-Type Doping Affect the Relative Stability of the (001) and (101) Surfaces of TiO2: Enhancing the Exposure of More Active but Thermodynamically Less Stable (001)

机译:氟吸附和n型掺杂如何影响TiO2(001)和(101)表面的相对稳定性的见解:增强活性更强但热力学更不稳定(001)的暴露

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摘要

The stability of both the pure and fluorine (F)-adsorbed surface of TiO2 is examined on the basis of density functional calculations. For pure surfaces, both the beneficial local geometric structures and local potential strengthen the Ti-O binding in (101), rendering it the most stable surface. For F-adsorbed surfaces, F-adsorption significantly weakens the Ti-O bonds in (101) but strengthens them in (001), so that (001) becomes more stable than (101) for the F-adsorbed surfaces. On the basis of this observation, we further show that the n-type doping in TiO2 can significantly decrease the ability of F-adsorption in switching the relative stability of the two surfaces. The present work not only provides new insights into the physical and chemical properties about both pure and F-adsorbed surfaces of TiO2 and conclusively explains related experimental results but also suggests viable ways to prepare TiO2 samples with a high percentage of (001).
机译:在密度泛函计算的基础上检查了TiO2的纯表面和氟(F)吸附表面的稳定性。对于纯表面,有益的局部几何结构和局部势均会增强(101)中的Ti-O结合,使其成为最稳定的表面。对于F吸附的表面,F吸附会显着减弱(101)中的Ti-O键,但会增强(001)中的Ti-O键,因此(001)变得比F吸附表面的(101)更稳定。根据这一观察结果,我们进一步表明,TiO2中的n型掺杂会显着降低F吸附转换两个表面的相对稳定性的能力。本工作不仅提供了有关纯和F吸附的TiO2表面的物理和化学性质的新见解,并最终解释了相关的实验结果,而且还提出了制备高比例(001)的TiO2样品的可行方法。

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