异质结
光催化
材料科学
分解水
制氢
析氧
氧气
氢
化学工程
氧化还原
电子转移
光化学
电子
纳米技术
空位缺陷
磷
可见光谱
催化作用
无机化学
科技与社会
作者
Wenjie Yan,Zipu Wang,Xuan Dong,Hongwen Zhang,Ivan Shanenkov,Junzhi Li,Hao Tan,Lijie Zhang,Hua Tang,Yukun Zhu
出处
期刊:Small
[Wiley]
日期:2026-08-12
卷期号:: e75131-e75131
摘要
ABSTRACT Solar‐driven photocatalytic hydrogen production utilizing S‐scheme heterojunctions holds great potential due to their capacity for spatial carrier separation and maintaining a high redox potential. In this work, an S‐scheme heterojunction consisting of oxygen vacancy (V O )‐enriched BiVO 4 @Type II red phosphorus (BiVO 4 @RP) was synthesized by a facile ball‐milling approach, resulting in Type II RP nanosheets enwrapping the surface of decahedral BiVO 4 . The introduction of V O in BiVO 4 induces defect electronic states that serve as effective trapping sites for photogenerated electrons at the heterojunction interface. Consequently, the synergistic effect of V O in BiVO 4 and intimate interfacial contact between BiVO 4 and RP facilitate the migration of photo‐electrons through an S‐scheme transfer route, thereby enhancing the hydrogen production activity from pure water splitting. Remarkably, the optimized BiVO 4 @RP composite achieves a hydrogen evolution rate of 518.5 µmol·h −1 ·g −1 under simulated solar light irradiation. This study may provide valuable insights into the design of defect‐modulated S‐scheme heterojunction photocatalysts for efficient artificial photosynthesis.
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