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首页> 外文期刊>Applied Surface Science >Facile immobilization of Ag nanoparticles on g-C_3N_4/V_2O_5 surface for enhancement of post-illumination, catalytic, and photocatalytic activity removal of organic and inorganic pollutants
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Facile immobilization of Ag nanoparticles on g-C_3N_4/V_2O_5 surface for enhancement of post-illumination, catalytic, and photocatalytic activity removal of organic and inorganic pollutants

机译:将Ag纳米颗粒轻松固定在g-C_3N_4 / V_2O_5表面上,以增强有机和无机污染物的后照明,催化和光催化活性去除

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Multifunctional nanocatalyst that is efficient in removal of organic and inorganic contaminant under different light illumination is highly anticipated. Here, we report a ternary nanocatalyst that has catalytic, photocatalytic and a good photocatalytic memory for oxidation/reduction processes. The ternary nanocatalyst was prepared by the facile immobilization of Ag NPs on the V2O5/g-C(3)N(4 )surface by photodeposition method. The morphology of the ternary nanostructure shows the uniform distribution of V2O5 on the g-C3N4 surface decorated with 20-30 nm average diameters of Ag NPs. The prepared catalyst exhibits unique catalytic, photocatalytic and postoxidation/reduction ability for removal of organic, p-nitrophenol (NP), methylene blue (MB) and inorganic (Cr+6) water pollutants. The catalytic reduction conversion of NP was completed in 60 min was ascribed to the electron relay mechanism, while the photocatalytic hydrogenation of NP was achieved in only 8 min and assigned to the solid Z-scheme electron-hole pair generation facilitated by the good electron storage of Ag NPs. On the other hand, the electron storage memory of the photocatalyst was responsible for the post- oxidation/reduction of MB/Cr+6 respectively. Oxidation of MB increased by 27%, while the Reduction of Cr+6 to Cr+3 was enhanced by 28% after sunlight post-illumination. The proposed ternary nanocatalyst provide an efficient tool for the removal of water pollutants from different sources during the daytime: in presence of sunlight or after the sunset.
机译:高度期望能在不同的光照下有效去除有机和无机污染物的多功能纳米催化剂。在这里,我们报告具有氧化,还原过程的催化,光催化和良好的光催化记忆的三元纳米催化剂。三元纳米催化剂是通过光沉积法将Ag纳米颗粒轻松固定在V2O5 / g-C(3)N(4)表面上而制备的。三元纳米结构的形态显示V2O5在装饰有Ag NP平均直径为20-30 nm的g-C3N4表面上的均匀分布。所制备的催化剂具有独特的催化,光催化和后氧化/还原能力,可去除有机,对硝基苯酚(NP),亚甲基蓝(MB)和无机(Cr + 6)水污染物。 NP的催化还原转化是在60分钟内完成的,这归因于电子中继机理,而NP的光催化加氢仅在8 min内就实现了,并归因于良好的电子存储促进了固体Z型电子-空穴对的产生Ag NPs。另一方面,光催化剂的电子存储存储器分别负责MB / Cr + 6的后氧化/还原。在日光照射后,MB的氧化增加了27%,而Cr + 6还原为Cr + 3的增加了28%。所提出的三元纳米催化剂提供了一种有效的工具,用于在白天:存在阳光下或日落之后从不同来源去除水污染物。

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