摘要
The advancement of a Z-scheme photoelectrochemical (PEC) system for hydrogen production and water splitting holds significant promise in addressing the escalating global energy crisis. In this study, a ternary Co-ZnCdS-BiFeO3 Z-scheme composite photocatalyst was used. By optimizing the ratio of BiFeO3/ZnCdS, the photocatalytic activity of the material is enhanced, while enhancing the electron transfer efficiency and strengthening the stability of the photoelectric cathode. The Co(dmgBF2)2(H2O)2 was selected as the co-catalyst to further improve the electron-hole separation efficiency and photocorrosion resistance. Under visible light irradiation, the hydrogen production rate of the PEC system can reach 4.03 mmol g−1 h−1. Under optimal conditions, applying a bias voltage of −0.1 V vs. RHE can produce −38.5 µA cm−2. The photocatalytic current density of is as high as 13 times that of pure ZnCdS, greatly improving the hydrogen production efficiency and stability of the photocatalyst. The study offers a novel benchmark for the development of a high efficiency Z-scheme photocatalyst designed for water splitting and provides new insights into intrinsic resistance through PEC analyses. (Figure presented.)
投稿的翻译标题 | ZnCdS-BiFeO3异质结负载钴催化剂促进光电催化产 氢 |
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源语言 | 英语 |
页(从-至) | 483-492 |
页数 | 10 |
期刊 | Science China Materials |
卷 | 68 |
期 | 2 |
DOI | |
出版状态 | 已出版 - 2月 2025 |