4.7 Article Proceedings Paper

Enhanced photocatalytic performance and degradation pathway of Rhodamine B over hierarchical double-shelled zinc nickel oxide hollow sphere heterojunction

期刊

APPLIED SURFACE SCIENCE
卷 430, 期 -, 页码 549-560

出版社

ELSEVIER
DOI: 10.1016/j.apsusc.2017.06.325

关键词

Metal-organic frameworks; ZnO-NiO p-n heterostructures; Hollow spheres; Formation mechanism; Hydroxyl radicals; Photocatalysis; Degradation pathways

资金

  1. National Natural Science Foundation of China [21277108, 21476179]

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In this study, hierarchical double-shelled NiO/ZnO hollow spheres heterojunction were prepared by calcination of the metallic organic frameworks (MOFs) as a sacrificial template in air via a one-step solvothermal method. Additionally, the photocatalytic activity of the as-prepared samples for the degradation of Rhodamine B (RhB) under UV-vis light irradiation were also investigated. NiO/ZnO microsphere comprised a core and a shell with unique hierarchically porous structure. The photocatalytic results showed that NiO/ZnO hollow spheres exhibited excellent catalytic activity for RhB degradation, causing complete decomposition of RhB (200 mL of 10 g/L) under UV-vis light irradiation within 3 h. Furthermore, the degradation pathway was proposed on the basis of the intermediates during the photodegradation process using liquid chromatography analysis coupled with mass spectroscopy (LC-MS). The improvement in photocatalytic performance could be attributed to the p-n heterojunction in the NiO/ZnO hollow spheres with hierarchically porous structure and the strong double-shell binding interaction, which enhances adsorption of the dye molecules on the catalyst surface and facilitates the electron/ hole transfer within the framework. The degradation mechanism of pollutant is ascribed to the hydroxyl radicals (center dot OH), which is the main oxidative species for the photocatalytic degradation of RhB. This work provides a facile and effective approach for the fabrication of porous metal oxides heterojunction with high photocatalytic activity and thus can be potentially used in the environmental purification. (C) 2017 Elsevier B.V. All rights reserved.

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