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Hierarchical Ternary Sulfides as Effective Photocatalyst for Hydrogen Generation Through Water Splitting: A Review on the Performance of ZnIn2S4

期刊

CATALYSTS
卷 11, 期 2, 页码 -

出版社

MDPI
DOI: 10.3390/catal11020277

关键词

water splitting; hydrogen; photocatalyst; visible light response; ternary chalcogenides; heterostructure; doping effect

资金

  1. MOST-108-2622-E-197-003-CC3 Taiwan

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This review emphasizes the recent approaches in developing hierarchical ternary sulfide based photocatalysts, focusing on ZnIn2S4, for efficient hydrogen generation through photocatalytic water splitting. The electronic structure of ZnIn2S4 and various strategies to improve material efficiency for photocatalytic hydrogen generation are discussed. Recent progress on essential aspects such as light absorption, charge separation, and transport are also highlighted.
One of the major aspects and advantages of solar energy conversion is the photocatalytic hydrogen generation using semiconductor materials for an eco-friendly technology. Designing a low-cost efficient material to overcome limited light absorption as well as rapid recombination of photogenerated charge carriers is essential to achieve considerable hydrogen generation. In recent years, sulfide based semiconductors have attracted scientific research interest due to their excellent solar response and narrow band gap. The present review focuses on the recent approaches in the development of hierarchical ternary sulfide based photocatalysts with a special focus on ZnIn2S4. We also observe how the electronic structure of ZnIn2S4 is beneficial for water splitting and the various strategies involved for improving the material efficiency for photocatalytic hydrogen generation. The review places emphasis on the latest advancement/new insights on ZnIn2S4 being used as an efficient material for hydrogen generation through photocatalytic water splitting. Recent progress on essential aspects which govern light absorption, charge separation and transport are also discussed in detail.

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