Fast charge transfer kinetics in Sv-ZnIn2S4/Sb2S3 S-scheme heterojunction photocatalyst for enhanced photocatalytic hydrogen evolution

RARE METALS(2024)

引用 0|浏览2
暂无评分
摘要
Constructing a S-scheme heterojunction with tight interface contact and fast charge transfer is beneficial to improving the photocatalytic hydrogen evolution performance. Herein, a unique one-dimensional (1D)/two-dimensional (2D) S-scheme heterojunction containing 1D Sb2S3 nanorods and 2D ZnIn2S4 with affluent sulfur vacancies (denoted as Sv-ZnIn2S4@Sb2S4) was designed. The introduced sulfur vacancy can promote the effective adsorption of H+ for the following interfacial hydrogen-evolution reaction. Furthermore, the larger contact area and stronger electron interaction between Sb(2)S(3 )and ZnIn2S4 effectively inhibits the recombination of photo-generated electron-hole pairs and abridges the migration distance of charges. As a result, the optimal Sv-ZnIn2S4 @Sb2S3 sample achieves H-2 evolution activity of 2741.3 mol center dot h(-1)center dot g(-1), which is 8.6 times that of pristine ZnIn2S4 and 3.0 times that of the Sv-ZnIn2S4 samples. Based on the experimental result, the photo-reactivity S-scheme mechanism of hydrogen evolution from water splitting with Sv-ZnIn2S4@Sb2S3 is proposed. This work provides an effective method for developing S-scheme heterojunction composites of transition metal sulfide with high hydrogen evolution performance.
更多
查看译文
关键词
ZnIn2S4 nanosheets,S-scheme heterojunction,Sulfur vacancy,Charge transfer and separation,Photocatalytic H-2 evolution
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要