Manganese ferrite (MnFe2O4) nanoparticles were synthesized through a coprecipitation method using manganese (II) chloride tetrahydrate (MnCl2·4H2O) and ferric chloride hexahydrate (FeCl3·6H2O) as precursors. The scanning electron microscopy images showed that the as-synthesized particles were granular and about 20 nm. The X-ray diffraction patterns revealed that the manganese ferrite phase was completely decomposed into ferric oxide (Fe2O3) and manganese (III) oxide (Mn2O3) after annealing above 800°C in air. In contrast, its crystalline quality significantly improved when it was annealed in argon. By using the vibrating-sample magnetometry technique, it was demonstrated that the saturation magnetization (M s) of the as-prepared sample (~36.6 emu/g) decreased sharply up to ~5 emu/g after annealing at 1000°C in air and significantly increased to ~77.6 emu/g when it was annealed at 1000°C in argon. Under sunlight radiation, a higher efficiency was observed for manganese ferrite particles annealed in argon in the presence of hydrogen peroxide (H2O2), mainly due to the Fenton reaction between manganese ferrite and hydrogen peroxide. The authors suggest that the presence of hydrogen peroxide and the enhancement of the crystalline quality of the manganese ferrite phase are the two leading factors in improving methylene blue degradation efficiency.
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13 September 2021
Research Article|
October 06 2020
Effects of synthesis conditions on structure and magnetic properties of MnFe2O4 particles Available to Purchase
Nguyen Van Quang, PhD;
Nguyen Van Quang, PhD
Research Scientist
Department of Chemistry, Hanoi Pedagogical University 2, Phuc Yen, Vietnam
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Pham Thi Lan Huong, PhD;
Faculty of Biotechnology, Chemistry and Environmental Engineering, Phenikaa University, Hanoi, Vietnam; Phenikaa Institute for Advanced Study, Phenikaa University, Hanoi, Vietnam; Phenikaa Research and Technology Institute, A&A Green Phoenix Group, Hanoi, Vietnam
(corresponding author: huong.phamthilan@phenikaa-uni.edu.vn)
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Nguyen Tu, PhD;
Nguyen Tu, PhD
Research Scientist
Phenikaa Institute for Advanced Study, Phenikaa University, Hanoi, Vietnam; Phenikaa Research and Technology Institute, A&A Green Phoenix Group, Hanoi, Vietnam
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Nguyen Thi Huyen, MSc;
Nguyen Thi Huyen, MSc
Research Scientist
Department of Chemistry, Hanoi Pedagogical University 2, Phuc Yen, Vietnam
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Nguyen Tri Tuan, PhD;
Nguyen Tri Tuan, PhD
Asscociate Professor
College of Science, Can Tho University, Can Tho, Vietnam
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Manh Trung Tran, PhD;
Manh Trung Tran, PhD
Research Scientist
Phenikaa Institute for Advanced Study, Phenikaa University, Hanoi, Vietnam; Phenikaa Research and Technology Institute, A&A Green Phoenix Group, Hanoi, Vietnam; Faculty of Materials Science and Engineering, Phenikaa University, Hanoi, Vietnam
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Anh-Tuan Le, PhD
Anh-Tuan Le, PhD
Professor
Phenikaa University Nano Institute, Phenikaa University, Hanoi, Vietnam; Faculty of Materials Science and Engineering, Phenikaa University, Hanoi, Vietnam
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(corresponding author: huong.phamthilan@phenikaa-uni.edu.vn)
Publisher: Emerald Publishing
Received:
February 11 2020
Accepted:
September 08 2020
Online ISSN: 2049-1239
Print ISSN: 2049-1220
ICE Publishing: All rights reserved
2021
Green Materials (2021) 9 (3): 108–119.
Article history
Received:
February 11 2020
Accepted:
September 08 2020
Citation
Quang NV, Huong PTL, Tu N, Huyen NT, Tuan NT, Tran MT, Le A (2021), "Effects of synthesis conditions on structure and magnetic properties of MnFe2O4 particles". Green Materials, Vol. 9 No. 3 pp. 108–119, doi: https://doi.org/10.1680/jgrma.20.00010
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