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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Defect Evolution Enhanced Visible-Light Photocatalytic Activity in Nitrogen-Doped Anatase TiO2 Thin Films
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Defect Evolution Enhanced Visible-Light Photocatalytic Activity in Nitrogen-Doped Anatase TiO2 Thin Films

机译:缺陷进化增强氮掺杂锐钛矿TiO2薄膜中的可见光光催化活性

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摘要

Doping nitrogen (N) into TiO2 is one of the promising ways to extend the photocatalytic activity into the visible-light range, enabling to harvest more solar energy. In this study, we realize a high concentration of N incorporated into the anatase TiO2 films on indium tin oxide substrates. The band gap of TiO2 with a high N substitutional doping is reduced to 1.91 eV, showing a much improved photocatalytic reactivity, as supported by the degrading methyl orange solution radiated with visible light. First-principles calculations further suggest that the form of dominant defects evolves from the substitution of N (NO) to the coexistence of NO and oxygen vacancies (OV) when the N-doping concentration is increased, which leads to the reduction of band gap in the visible-light range and more delocalized charge distribution. Our results demonstrate a novel synthesis route that can realize a high concentration of N substitutional doping in TiO(2 )films and provide an improved understanding of enhanced visible-light photocatalytic performance of N-doped TiO2.
机译:掺杂氮(N)进入TiO 2是将光催化活性延伸到可见光范围内的有希望的方法之一,使得能够收获更多的太阳能。在该研究中,我们将高浓度的N掺入氧化铟锡基材上的锐钛矿TiO2薄膜中。具有高N个子取代掺杂的TiO 2的带隙降低至1.91eV,显示出大大改善的光催化反应性,通过用可见光辐射的降解甲基橙溶液支持。第一原理的计算进一步表明,当N掺杂浓度增加时,显性缺陷的形式从N(NO)的取代与NO和氧空位(OV)的共存,这导致带隙的减少可见光范围和更多的分层电荷分布。我们的结果表明了一种新的合成途径,可以在TiO(2)膜上能够实现高浓度的N个替代掺杂,并提供了改善了对N掺杂TiO2的增强的可见光光催化性能的了解。

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