Abstract
Herein, a strategy for the construction of defect-adjustable heterojunction photocatalysts with well-matched energy levels and tight binding is proposed. And defect-adjustable Bi2WO6/WO3 heterojunction is prepared in situ by solvothermal method to improve the N2 reduction performance. The results show that compared with the defect-free Bi2WO6/WO3 heterojunction grown in water, the defective Bi2WO6 ultra-small nanosheets grown in glycol are tightly bound to WO3 nanorods, increasing the contact area between the two and promoting the separation of photogenerated carriers. EPR results show that glycol has reducibility and effectively construct oxygen vacancy, which facilitates N2 adsorption and activation. Meanwhile, the results show that S-scheme defective Bi2WO6/WO3 heterostructure is formed, which results in higher NH3 yield. The NH3 yield of optimized Bi2WO6/WO3 heterojunction is 73.4 μmol g−1 h−1, which is significantly higher than that of pure Bi2WO6 and WO3. This work provides a new idea for the design of tightly bonded heterojunction photocatalyst.
| Original language | English |
|---|---|
| Article number | 122801 |
| Journal | Chemical Engineering Science |
| Volume | 321 |
| DOIs | |
| State | Published - 1 Feb 2026 |
Keywords
- BiWO/WO heterojunction
- Defect-adjustable
- N reduction
- NH
- S-scheme
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