异质结
纤锌矿晶体结构
材料科学
带隙
半导体
锐钛矿
光催化
电子结构
电子能带结构
光电子学
纳米结构
纳米技术
原子轨道
化学物理
凝聚态物理
电子
化学
锌
物理
催化作用
冶金
量子力学
生物化学
作者
Slimane Haffad,Kiptiemoi Korir Kiprono
标识
DOI:10.1016/j.susc.2019.03.006
摘要
Understanding interface properties of heterojunction is an important step towards controllable and tunable interfaces for photocatalytic and photovoltaic based devices. To this aim, we propose a thorough study of a double heterostructure system consisting of two semiconductors with large band gap, namely, wurtzite ZnO and anatase TiO2. We demonstrate via first-principle calculations two stable configurations of ZnO/TiO2 interfaces. Our structural analysis provides a key information on the nature of the complex interface and lattice distortions occurring when combining these materials. The study of the electronic properties of the sandwich nanostructure TiO2/ZnO/TiO2 reveals that conduction band arises mainly from Ti3d orbitals, while valence band is maintained by O2p of ZnO, and that the trapped states within the gap region frequent in single heterostructure are substantially reduced in the double interface system. Moreover, our work explains the origin of certain optical transitions observed in the experimental studies. Unexpectedly, as a consequence of different bond distortions, the results on the band alignments expect different electron accumulation between the two interfaces. Such behavior provides more choice for the sensitization and functionalization of TiO2 surfaces.
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