Study of the Structure, Electronic and Optical Properties of BiOI/Rutile-TiO 2 Heterojunction by the First-Principle Calculation

Using the first-principle calculation that is based on the density functional theory (DFT), our group gains some insights of the structural, electronic and optical properties of two brand new types of BiOI/TiO heterojunctions: 1I-terminated BiOI {001} surface/TiO (1I-BiOI/TiO ) and BiO-terminated Bi...

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Veröffentlicht in:Materials 2020-01, Vol.13 (2)
Hauptverfasser: Qu, Zhan, Su, Yali, Sun, Li, Liang, Feng, Zhang, Guohe
Format: Artikel
Sprache:eng
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Zusammenfassung:Using the first-principle calculation that is based on the density functional theory (DFT), our group gains some insights of the structural, electronic and optical properties of two brand new types of BiOI/TiO heterojunctions: 1I-terminated BiOI {001} surface/TiO (1I-BiOI/TiO ) and BiO-terminated BiOI {001} surface/TiO (BiO-BiOI/TiO ). The calculation illustrates that BiOI/TiO heterojunction has excellent mechanical stability, and it shows that there is a great possibility for the BiOI/TiO heterojunction to be used in visible-light range, hence the photocatalytic ability can be enhanced dramatically. Especially, from the calculation, we discovered that there are two specific properties: the band-gap of 1I-BiOI/TiO heterojunction reduces to 0.28 eV, and the BiO-BiOI/TiO semiconductor material changes to n-type. The calculated band offset (BOs) for 1I-BiOI/TiO heterojunction indicates that the interfacial structure contributes a lot to a suitable band alignment which can disperse the photo-generated carriers into the opposite sides of the interface, so this could effectively weaken the electron-hole recombination. Meanwhile, the built-in potential around the interface accelerates the movement of the photo-generated electron-hole pairs. We believe this is the reason that the BiOI/TiO material shows perfect photocatalytic performance. This paper can provide theoretical support for the related research, especially the further research of the BiOI-based material.
ISSN:1996-1944
1996-1944