石墨氮化碳
材料科学
光催化
量子点
可见光谱
石墨烯
氮化碳
纳米复合材料
光化学
非金属
异质结
化学工程
纳米技术
光电子学
有机化学
催化作用
化学
冶金
金属
工程类
作者
Jinlun Li,Hulin Liu,Xin De Bai,Xi Rao,Yongping Zhang
出处
期刊:NANO
[World Scientific]
日期:2022-08-01
卷期号:17 (09)
标识
DOI:10.1142/s1793292022500667
摘要
Constructing heterojunction is one promising strategy to improve the transfer and separation of photoinduced charge carriers of graphitic carbon nitride (CN). Herein, nonmetal N, S-doped graphene quantum dots (N, S-GQDs)/g-C 3 N 4 nanocomposite photocatalysts were successfully synthesized by calcining N, S-GQDs (NSGs) and melamine at elevated temperature. The optimal 06NSG-CN composite effectively reduced the concentration of Escherichia coli flora under visible light irradiation by superoxide and super hydroxyl radicals. Meanwhile, the optimum photocatalytic hydrogen evolution reaches 50.9 [Formula: see text]mol/h, about 16.9 times that of pure phase CN under visible light. Graphitic carbon nitride ([Formula: see text]-C 3 N 4 ) grafted with N, S-doped GQDs could increase the specific surface area, promote the absorption and utilization of visible light, and inhibited the recombination of photoinduced electron–hole pairs, resulting in excellent photocatalytic antibacterial activity.
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