ZnIn2S4-based S-scheme heterojunction photocatalyst
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Abstract
Photocatalytic technologies have been universally applied in the domains of hydrogen production, environmental purification, CO2 reduction, catalytic organic synthesis, and other major fields owing to their environmental friendliness, convenient operation, and absorbing sunlight as the driving force. The core of photocatalytic technology is photocatalyst. Hence, it is greatly essential to fabricate stable, high-efficiency, and visible-light response photocatalysts. Among various visible-light-response photocatalysts, ZnIn2S4, a ternary metal sulfide, has attracted extensive attention due to its prominent advantages of simple synthesis, excellent stability, and appropriate band structure. However, the low…
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5Topics & keywords
Topics
Keywords
- Photocatalysis
- Heterojunction
- Materials science
- Hydrogen production
- Nanotechnology
- Semiconductor
- Ternary operation
- Visible spectrum
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