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Charge Carriers Cascade in a Ternary TiO2/TiO2/ZnS Heterojunction: A DFT Study

机译:电荷载流子在三元TiO2 / TiO2 / Zns异质结中级联:DFT研究

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摘要

Composite materials whose band alignment induces a favorable separation of photogenerated electrons and holes often reveal a stronger photocatalytic activity compared to their separate components. As shown by experiments, titania composites display a heterojunction between the anatase (101)-(001) surfaces, where the former stabilizes electrons and the latter the holes. In principle, an even more efficient carriers separation is achieved if a third component with high hole-stabilizing capability, ZnS(110), is growth on anatase (001). However, even though this ternary TiO2/TiO2/ZnS composite material displays good photoactivity, it does not overperform the TiO2/TiO2 one. In this paper an explanation of this evidence is provided by means of periodic hybrid DFT calculations, showing how Coulomb forces play a role against the separation of charge carriers predicted based on the relative energy of the band edges. This highlights the necessity to explicitly account for structural and electronic junction's effects, as well as charge carriers' localization.
机译:与它们的单独组分相比,频带对准引起良好分离的复合材料诱导光致电子和孔的良好分离通常揭示了更强的光催化活性。如实验所示,二氧化钛复合材料在锐钛矿(101) - (001)表面之间显示异质结,其中前者稳定电子和后者孔。原则上,如果具有高空穴稳定能力ZnS(110)的第三组分在锐钛矿(001)上,则实现更有效的载体分离。然而,即使这种三元TiO2 / TiO2 / Zns复合材料显示出良好的光拍摄,它也不会过度地表达TiO2 / TiO2。在本文中,通过定期的混合DFT计算提供了该证据的说明,示出了库仑力如何在基于带状边缘的相对能量预测的电荷载体的分离中发挥作用。这突出了明确地解释结构和电子交叉路口的影响,以及电荷运营商的本地化的必要性。

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