Tuning of graphitic carbon nitride (g-C3N4) for photocatalysis: A critical review

石墨氮化碳 化学 光催化 可见光谱 氮化碳 载流子 异质结 吸收(声学) 分解水 兴奋剂 带隙 半导体 纳米技术 制氢 光电子学 有机化学 催化作用 复合材料 材料科学 生物化学
作者
Y.S. Wudil,U.F. Ahmad,M.A. Gondal,Mohammed A. Al‐Osta,Abdullah Almohammedi,R.S. Sa'id,Fawaz Hrahsheh,K. Haruna,Mohamed Jaffer Sadiq Mohamed
出处
期刊:Arabian Journal of Chemistry [Elsevier BV]
卷期号:16 (3): 104542-104542 被引量:244
标识
DOI:10.1016/j.arabjc.2023.104542
摘要

Graphitic carbon nitride (g-C3N4) is a remarkable semiconductor catalyst that has attracted widespread attention as a visible light photo-responsive, metal-free, low-cost photocatalytic material. Pristine g-C3N4 suffers fast recombination of photogenerated electron-hole pairs, low surface area, and insufficient visible light absorption, resulting in low photocatalytic efficiency. This review presents the recent progress, perspectives, and persistent challenges in the development of g-C3N4-based photocatalytic materials. Several approaches employed to improve the visible light absorption of the materials including metal and non-metal doping, co-doping, and heterojunction engineering have been extensively discussed. These approaches, in general, were found to decrease the material’s bandgap, increase the surface area, reduce charge carrier recombination, and promote visible light absorption, thereby enhancing the overall photocatalytic performance. The material has been widely used for different applications such as photocatalytic hydrogen production, water splitting, CO2 conversion, and water purification. The work has also identified various limitations and weaknesses associated with the material that hinders its maximum utilization under visible illumination and presented state-of-the-art solutions that have been reported recently. The summary presented in this review would add an invaluable contribution to photocatalysis research and facilitate the development of efficient visible light-responsive semiconducting materials.
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