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Phase-Dependent Photocatalytic Ability of TiO2: A First-Principles Study

机译:TiO2的相变光催化能力:第一性原理研究

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The electronic properties of defected TiO2 were investigated using the first-principles calculations based on density functional theory and generalized gradient approximation. Three typical defects, oxygen vacancy, titanium interstitial, and titanium vacancy, were considered in three TiO2 polymorphs, anatase, rutile, and brookite, respectively. Our calculations demonstrated that the defect band is formed by removing an oxygen atom from or inserting an interstitial Ti atom into the TiO2 lattice, which is responsible for the improvement of photocatalytic ability due to the enhanced visible-light absorption. Our calculations further revealed that the defect formation energy increases as following brookite, anatase, and rutile, indicating that defects are easy to be created in brookite TiO2. The relatively high defect density and wide defect band contribute to the better photocatalytic performance of brookite TiO2 in visible light.
机译:使用基于密度泛函理论和广义梯度近似的第一性原理计算方法研究了缺陷型TiO2的电子性能。在三种TiO2多晶型物中分别考虑了三种典型的缺陷:氧空位,钛间隙和钛空位,分别为锐钛矿,金红石和板钛矿。我们的计算表明,缺陷带是通过从TiO2晶格中除去一个氧原子或向TiO2晶格中插入一个间隙Ti原子而形成的,这归因于可见光吸收的增强,从而提高了光催化能力。我们的计算进一步揭示,缺陷形成能随着板钛矿,锐钛矿和金红石的增加而增加,表明在板钛矿TiO2中容易产生缺陷。较高的缺陷密度和较宽的缺陷带有助于板钛矿TiO2在可见光下具有更好的光催化性能。

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