Phenanthroline bridging graphitic carbon nitride framework and Fe (II) ions to promote transfer of photogenerated electrons for selective photocatalytic reduction of Nitrophenols

光催化 石墨氮化碳 硝基苯 光化学 氮化碳 可见光谱 催化作用 三元运算 硝基苯酚 电子转移 化学 氮化物 材料科学 菲咯啉 无机化学 纳米技术 有机化学 光电子学 程序设计语言 计算机科学 图层(电子)
作者
Ying Liu,Yi Liu,Yingying Xu,Qingshen He,Rongyang Yin,Ping Sun,Xiaoping Dong
出处
期刊:Journal of Colloid and Interface Science [Elsevier BV]
卷期号:608: 2088-2099 被引量:34
标识
DOI:10.1016/j.jcis.2021.10.146
摘要

Nitrophenols (NPs) are widely used in industries and highly toxic to ecological environment and human health. Because aminophenols (APs) are important chemicals, catalytic reduction of NPs via efficient and environment-friendly strategies is of great importance. Herein, we developed a green photocatalysis route to efficiently convert NPs to APs using a Fe (II) modified graphitic carbon nitride (g-C3N4) photocatalyst, where phenanthroline units were employed to bridge Fe (II) and carbon nitride framework. The optimized sample P-CN-8-Fe presented significantly improved absorption of visible light, separation of photogenerated charges and carrier transportation in comparison with the pristine g-C3N4 and the modified samples of CN-Fe and P-CN-8. Accordingly, the P-CN-8-Fe showed a high conversion (97%) of p-nitrophenol (p-NP) to p-aminophenol (p-AP) under 2 h visible light irradiation, and meanwhile possessed high photocatalytic durability. Its high activity was also demonstrated through photocatalytic reduction of other NPs and nitrobenzene compounds. Finally, a possible mechanism was proposed for the photocatalytic reduction of p-NP by P-CN-8-Fe. This work provides an effective approach to prepare Fe (II) modified g-C3N4 through the bridging effect of phenanthroline group, which is a potential visible light driven photocatalyst for reduction of nitrobenzene derivatives.
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