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Preparation of Mn2O3/MIL-100(Fe) composite and its mechanism for enhancing the photocatalytic removal of rhodamine B in water

Dung, N.T. and Hue, T.T. and Thao, V.D. and Huy, N.N. (2021) Preparation of Mn2O3/MIL-100(Fe) composite and its mechanism for enhancing the photocatalytic removal of rhodamine B in water. RSC Advances, 11 (46). pp. 28496-28507. ISSN 20462069

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Abstract

In this study, Mn2O3/MIL-100(Fe) composite was successfully synthesized by the hydrothermal method and applied for photocatalytic removal of rhodamine B (RhB) in water. The physical and chemical properties of the synthesized materials were characterized by XRD, FTIR, SEM, UV-visible, and BET analyses. Experimental results showed a great enhancement in the photocatalytic ability of the Mn2O3/MIL-100(Fe) composite as compared to individual Mn2O3or MIL-100(Fe) under visible light and persulfate activation. The affecting factors such as pH, photocatalyst dose, RhB concentration, and Na2S2O8concentration were investigated to find out the best conditions for efficient photocatalysis. By conducting a radical quenching test, all radicals of HO˙, SO4˙−1O2, and O2˙−were found to be important in photocatalytic decomposition. The mechanism was proposed for the enhancement of photocatalytic RhB removalviaband potential calculation, charge separation, surface redox reaction, and key reactive oxidation species. With its durability, reusability, and high efficiency, the Mn2O3/MIL-100(Fe) composite emerges as a potential photocatalyst working under visible light for application in wastewater treatment. © The Royal Society of Chemistry 2021.

Item Type: Article
Divisions: Faculties > Faculty of Physical and Chemical Engineering
Identification Number: 10.1039/d1ra03496k
Uncontrolled Keywords: Chemical analysis; Light; Manganese oxide; Photocatalytic activity; Redox reactions; Reusability; Rhodium compounds; Sodium compounds; Surface reactions; Wastewater treatment; Affecting factors; Charge separations; Hydrothermal methods; Persulfate activations; Photo-catalytic removal; Photocatalytic decomposition; Physical and chemical properties; Synthesized materials; Rhodamine B
Additional Information: Language of original document: English. All Open Access, Gold.
URI: http://eprints.lqdtu.edu.vn/id/eprint/8596

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