Ag NPs-assisted Fe3+-doped g-C3N4 composite to enhance photocatalytic performance†

IF 2.7 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY
Shiyu Wang, Jiali Yang, Xinyi Li, Yang Zhao and Huan Wang
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Abstract

The photocatalytic self-Fenton system along with the surface plasmon resonance (SPR) effect of nanometals can significantly enhance the catalytic efficiency of semiconductor photocatalysts. In this work, a novel photocatalyst (Ag/Fe–g-C3N4) composed of Fe3+ doped protonated g-C3N4 (Fe–g-C3N4) and silver nanoparticles (Ag NPs) modified on its surface was successfully prepared. Furthermore, the morphology, chemical composition, and photoelectrochemical properties of the Ag/Fe–g-C3N4 composite photocatalyst were extensively characterized. It was found that the coordination of Fe3+ with the amino groups at the edge of g-C3N4 changed the electronic structure of the catalyst and improved the photocatalytic activity. The SPR effect of Ag NPs enhanced the light absorption efficiency and charge separation ability of the Fe–g-C3N4 hybrid system. The degradation efficiency of the azo dye amaranth by 3% Ag/Fe–g-C3N4 was as high as 98.7% under simulated sunlight irradiation for 40 min. It was 1.8 times higher than that of unmodified g-C3N4 (54.7%). After 5 cycles of experiments, 3% Ag/Fe–g-C3N4 still maintained more than 80% degradation efficiency, which has good photocatalytic activity and stability. Using sacrificial agents, we found that ˙O2 is the main active substance in degradation, followed by ˙OH and h+. This research provides valuable insights into the development of effective photocatalysts and has the potential to bring new perspectives to the remediation of groundwater and deep water.

Ag nps辅助Fe3+掺杂g-C3N4复合材料增强光催化性能
光催化自fenton体系结合纳米金属的表面等离子体共振(SPR)效应可以显著提高半导体光催化剂的催化效率。本文成功制备了一种由Fe3+掺杂质子化g-C3N4 (Fe-g-C3N4)和表面修饰银纳米粒子(Ag NPs)组成的新型光催化剂Ag/ Fe-g-C3N4。进一步表征了Ag/ Fe-g-C3N4复合光催化剂的形貌、化学组成和光电化学性能。结果表明,Fe3+与g-C3N4边缘氨基的配位改变了催化剂的电子结构,提高了光催化活性。Ag纳米粒子的SPR效应增强了Fe-g-C3N4杂化体系的光吸收效率和电荷分离能力。在模拟日光照射下,3% Ag/ Fe-g-C3N4对偶氮染料苋菜红的降解效率高达98.7%,是未改性g-C3N4(54.7%)的1.8倍。经过5次循环实验,3% Ag/ Fe-g-C3N4仍保持80%以上的降解效率,具有良好的光催化活性和稳定性。利用牺牲剂,我们发现˙O2−是降解的主要活性物质,其次是˙OH和h+。该研究为开发有效的光催化剂提供了有价值的见解,并有可能为地下水和深水的修复带来新的视角。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
New Journal of Chemistry
New Journal of Chemistry 化学-化学综合
CiteScore
5.30
自引率
6.10%
发文量
1832
审稿时长
2 months
期刊介绍: A journal for new directions in chemistry
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