首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Photocatalytic degradation of organic pollutants coupled with simultaneous photocatalytic H-2 evolution over graphene quantum dots/Mn-N-TiO2/g-C3N4 composite catalysts: Performance and mechanism
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Photocatalytic degradation of organic pollutants coupled with simultaneous photocatalytic H-2 evolution over graphene quantum dots/Mn-N-TiO2/g-C3N4 composite catalysts: Performance and mechanism

机译:有机污染物的光催化降解与石墨烯量子点/ Mn-N-TiO2 / G-C3N4复合催化剂的同时光催化H-2进化相结合:性能和机制

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Graphene quantum dots/Mn-N-TiO2/g-C3N4 (GQDs/TCN) composite photocatalysts have been designed, synthesized and characterized by XRD, SEM, TEM, Raman, BET, and XPS. The photodegradation of organic pollutants (p-nitrophenol, diethyl phthalate and ciprofloxacin, called as 4-NP, CIP and DEP, respectively) coupled with simultaneous photocatalytic production of hydrogen was successfully achieved using the GQDs/TCN catalysts. The 5%GQDs/TCN-0.4 sample shows the best photocatalytic hydrogen production and organic pollutant degradation rate under simulated solar irradiation in the simultaneous photocatalytic oxidation and reduction system. Furthermore, the photocatalytic H-2 evolution rates in the solution of 4-NP, CIP and DEP are all larger than that in pure water system over the 5%GQDs/TCN-0.4 catalyst. And the H-2 evolution rate in the solution of 4-NP is smaller than that in the solutions of CIP and DEP. Accordingly, the photodegradation rate of 4-NP is larger than that of CIP and DEP. The analyses of density functional theory and liquid chromatography mass spectrometry indicate that some photogenerated electrons were used in the photodegradation process of 4-NP but not in that of CIP and DEP. And it leads to the photocatalytic rate of H-2 evolution in the 4-NP solution smaller than that in the solution of CIP and DEP. For the first time, the present work illuminates the photocatalytic enhancement of the GQDs/TCN-0.4 catalyst and the mechanism of the effect of different organic pollutants on photocatalytic H-2 evolution.
机译:石墨烯量子点/ Mn-N-TiO2 / G-C3N4(GQDS / TCN)复合光催化剂设计,合成,其特征在于XRD,SEM,TEM,拉曼,BET和XPS。使用GQDS / TCN催化剂成功地实现了有机污染物(P-硝基苯酚,邻苯二甲酸二苯甲酸二甲酸二甲酸二甲酸二甲酸二甲酸酯,称为4-NP,CIP和DEP,分别偶联。 5%GQDS / TCN-0.4样品显示出在同时光催化氧化和还原系统中的模拟太阳辐射下最佳的光催化氢气产生和有机污染物降解率。此外,4-NP,CIP和DEP溶液中的光催化H-2进化速率大于5%GQDS / TCN-0.4催化剂的纯水系统中的溶液。在4-NP溶液中的H-2进化率小于CIP和DEP的溶液中的溶液。因此,4-NP的光降解速率大于CIP和DEP的光降解速率。密度函数理论和液相色谱质谱分析表明,在4-NP的光降解过程中使用了一些光生电子,但不在CIP和DEP的光降解过程中使用。它导致4-NP溶液中的H-2进化的光催化率小于CIP和DEP溶液中的4-NP溶液。本文首次阐明了GQDS / TCN-0.4催化剂的光催化增强以及不同有机污染物对光催化H-2进化的影响的机制。

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