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Micro-emulsion approach for the fabrication of La1−xGdxCr1−yFeyO3: Magnetic, dielectric and photocatalytic activity evaluation under visible light irradiation
•Series of La1−xGdxCr1−yFeyO3 was prepared using micro-emulsion approach.•Fe and Gd doping effect was evaluated based on magnetic, dielectric and photocatalytic performance.•Methylene blue dye was degraded up to 68% under visible light exposure within 45 min.•LaCrO3 properties tuned significantly wi...
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Published in: | Results in physics 2021-04, Vol.23, p.104023, Article 104023 |
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Main Authors: | , , , , , , , , , |
Format: | Article |
Language: | English |
Subjects: | |
Citations: | Items that this one cites Items that cite this one |
Online Access: | Get full text |
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Summary: | •Series of La1−xGdxCr1−yFeyO3 was prepared using micro-emulsion approach.•Fe and Gd doping effect was evaluated based on magnetic, dielectric and photocatalytic performance.•Methylene blue dye was degraded up to 68% under visible light exposure within 45 min.•LaCrO3 properties tuned significantly with Fe and Gd doping to prepare catalyst active under visible light.
In the present investigation, La1−xGdxCr1−yFeyO3 nanoparticles were synthesized using facile micro-emulsion technique and monitored by XRD (X-ray diffraction), VSM (vibrating sample magnetometer), SEM (scanning electron microscopy), EDS (energy dispersive spectroscopy) and dielectric measurements. XRD analysis revealed the effective exchange of Fe and Gd ions into the regular structure of LaCrO3 and La1−xGdxCr1−yFeyO3 have orthorhombic crystal structure and crystallite size was in 30.20–34.1 nm range. The particles were of flakes morphology and EDX analysis revealed the purity and Fe and Gd ions incorporation into the structure of LaCrO3 and La1−xGdxCr1−yFeyO3. The magnetic hysteresis loop showed the paramagnetic behavior at room temperature and dielectric properties of La1−xGdxCr1−yFeyO3 were significantly affected with Fe and Gd contents. The PCA (photocatalytic activity) was performed against MB (methylene blue) dye under visible light exposure and up to 68% MB dye destruction was observed within 45 min of exposure. Results revealed the LaCrO3 properties are tunable with Fe and Gd doping to prepare catalyst active under solar light exposure. |
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ISSN: | 2211-3797 2211-3797 |
DOI: | 10.1016/j.rinp.2021.104023 |