光催化
制氢
联轴节(管道)
有机合成
材料科学
生产(经济)
纳米技术
光化学
氢
化学
催化作用
有机化学
宏观经济学
经济
冶金
作者
Pengfei Cheng,Yilong Yang,Kan Zhang
标识
DOI:10.1002/cplu.202500382
摘要
The coupling of photocatalytic organic oxidation and hydrogen production is an efficient strategy for converting solar energy into chemical energy, enabling simultaneous targeted conversion of organic matter and clean energy production. Cadmium sulfide (CdS), as a typical semiconductor-based photocatalyst, has attracted much attention in various coupled reactions of organic oxidation and hydrogen production due to their suitable band gap (~2.4 eV) and well-matched energy band edge positions. This review summarizes the fundamental principles of CdS-based catalysts in light-driven organic oxidation coupled with hydrogen production. On this basis, the review provides a detailed discussion of the key advancements in CdS-based photocatalysts in coupling reactions for hydrogen production and organic conversion, including organic conversion, organic coupling, and organic degradation. Through the synergistic effect of photoexcited electrons driving proton reduction to produce hydrogen and holes leading the directed oxidation of organic substrates, the solar energy utilization efficiency is significantly enhanced. Finally, the challenges and future prospects of CdS-based catalysts for coupling light-driven organic synthesis with hydrogen production are also presented.
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