Zu Di, Ying Yiran, Wei Qi, Xiong Pei, Ahmed Mortuza Saleque, Lin Zezhou, Li Molly Meng-Jung, Li Mingjie, Xu Zhihang, Chen Gao, Bai Liqi, She Sixuan, Tsang Yuen Hong, Huang Haitao
Department of Applied Physics and Materials Research Center, The Hong Kong Polytechnic University, Hung Hom, Kowloon, Hong Kong.
Photonics Research Institute, The Hong Kong Polytechnic University, Hung Hom, Kowloon, Hong Kong.
Angew Chem Int Ed Engl. 2024 Jul 29;63(31):e202405756. doi: 10.1002/anie.202405756. Epub 2024 Jun 25.
Although oxygen vacancies (Ovs) have been intensively studied in single semiconductor photocatalysts, exploration of intrinsic mechanisms and in-depth understanding of Ovs in S-scheme heterojunction photocatalysts are still limited. Herein, a novel S-scheme photocatalyst made from WO-Ov/InS with Ovs at the heterointerface is rationally designed. The microscopic environment and local electronic structure of the S-scheme heterointerface are well optimized by Ovs. Femtosecond transient absorption spectroscopy (fs-TAS) reveals that Ovs trigger additional charge movement routes and therefore increase charge separation efficiency. In addition, Ovs have a synergistic effect on the thermodynamic and kinetic parameters of S-scheme photocatalysts. As a result, the optimal photocatalytic performance is significantly improved, surpassing that of single component WO-Ov and InS (by 35.5 and 3.9 times, respectively), as well as WO/InS heterojunction. This work provides new insight into regulating the photogenerated carrier dynamics at the heterointerface and also helps design highly efficient S-scheme photocatalysts.
尽管氧空位(Ovs)在单一半导体光催化剂中已得到深入研究,但对于S型异质结光催化剂中氧空位的内在机制探索和深入理解仍然有限。在此,合理设计了一种新型的由WO-Ov/InS制成的S型光催化剂,其异质界面处存在氧空位。氧空位对S型异质界面的微观环境和局部电子结构进行了良好的优化。飞秒瞬态吸收光谱(fs-TAS)表明,氧空位引发了额外的电荷移动路径,从而提高了电荷分离效率。此外,氧空位对S型光催化剂的热力学和动力学参数具有协同作用。结果,最佳光催化性能得到显著提高,超过了单一组分WO-Ov和InS(分别提高了35.5倍和3.9倍)以及WO/InS异质结。这项工作为调控异质界面处的光生载流子动力学提供了新的见解,也有助于设计高效的S型光催化剂。