Visible and Near-Infrared Emission in Ba<sub>3</sub>Sc<sub>4</sub>O<sub>9</sub>:Bi Phosphor: An Investigation on Bismuth Valence Modification
Видимое и ближнее инфракрасное излучение в фосфоре Ba3Sc4O9:Bi: исследование изменения валентности висмута
2021-08-25
SCID: 54.1/b37mak3s
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Ba3Sc4O9:Bi phosphorX-ray photoelectron spectroscopy (XPS)bismuth valence modificationself-reduction of Bi3+visible and near-infrared (NIR) emission
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Abstract (AI)
Bismuth (Bi)-activated luminescence materials have attracted much attention for their tunable broad emissions ranging from a visible to near-infrared (NIR) region. However, it remains a challenge to regulate the Bi valence state and achieve NIR emission via a facile way. Here, we report the design and preparation of Ba3Sc4O9:Bi phosphors, which emit visible and NIR emissions simultaneously even prepared in the air condition. The self-reduction mechanism of Bi3+ species in Ba3Sc4O9 with a rigid crystal structure is illustrated based on the charge compensation model, and the coexistence of different Bi-active centers, Bi3+ for visible emission, while Bi+ and Bi0 for NIR emission, is confirmed by the spectroscopic data and X-ray photoelectron spectroscopy (XPS) analysis. The enhanced NIR emission was further achieved through controlled reducing treatment and the related mechanism has also been clarified. This work paves a new way to control bismuth valence and tune the emission of Bi-based luminescence materials for emerging photonics applications.
Key Findings
1
A self-reduction mechanism of Bi3+ in rigid Ba3Sc4O9 is proposed based on a charge compensation model.
2
Ba3Sc4O9:Bi phosphors prepared in air exhibit simultaneous visible and near-infrared (NIR) emission.
3
Controlled reducing treatment enhances NIR emission and the mechanism for this enhancement is clarified.
4
Demonstrates a facile route to control bismuth valence states and tune Bi-based luminescence for photonics applications.
5
Spectroscopy and XPS confirm coexistence of Bi3+ (visible emission), Bi+ and Bi0 (NIR emission) as distinct active centers.
Research Object
Ba3Sc4O9:Bi phosphor (Bi-activated Ba3Sc4O9 luminescent material)
Research Subject
Modification and control of bismuth valence states (Bi3+, Bi+, Bi0), their coexistence and self-reduction mechanism, and the resulting visible and near-infrared emission properties including enhancement via controlled reducing treatment
Publication Details
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2021-08-25
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