Influence of different surfactants on morphological, structural, optical, and magnetic properties of α-Fe2O3 nanoparticles synthesized via co-precipitation method

被引:0
作者
Pratishtha Kushwaha
Pratima Chauhan
机构
[1] University of Allahabad,Department of Physics
来源
Applied Physics A | 2022年 / 128卷
关键词
X-ray diffraction (XRD); Infrared (IR) spectroscopy; Magnetic properties; Optical properties; Morphology; -Fe; O; nanoparticles;
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摘要
α-Fe2O3 nanoparticles were synthesized using ferric chloride (FeCl3·9H2O), ferrous chloride (FeCl2·6H2O), and sodium hydroxide (NaOH) via simple co-precipitation method in the absence and presence of four separate and commonly used surfactants such as cetyltrimethylammonium bromide (CTAB,) polyvinylpyrrolidone K25, polyvinyl alcohol, and ethylenediaminetetraacetic acid. The aim of this study is to see whether different surfactants have an effect on the morphological, structural, optical, and magnetic properties of iron oxide nanoparticles. The X-ray diffraction data confirmed rhombohedral crystallographic structure for α-Fe2O3 sample. The average crystallite size for synthesized nanoparticles using the co-precipitation method with (and without) surfactant was calculated to be ∼ 15 ± 4.7 nm to 20 ± 1.2 nm. The transmission electron microscopy studies revealed spherical and some rod-like morphology of nanoparticles prepared with (and without) surfactant. Surfactant-assisted α-Fe2O3 nanoparticles showed a blue shift in optical absorption spectra due to the quantum confinement effect. The functional properties of nanoparticles are unaffected by the surfactant. At room temperature, all samples had a magnetization curve that was typical of ferromagnetic behavior, with the exception of α-Fe2O3 nanoparticles prepared with CTAB surfactant, which had almost superparamagnetic behavior.
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  • [1] Teja AS(2009)Synthesis, properties, and applications of magnetic iron oxide nanoparticles Prog. Cryst. Growth Charact. Mater. 55 22-45
  • [2] Koh PY(2016)Detection of hazardous volatile organic compounds (VOCs) by metal oxide Ceram. Int. 42 15119-15141
  • [3] Mirzaei A(2020)Perceptive review on properties of iron oxide nanoparticles and their antimicrobial and anticancer activity Sys. Rev. Pharm. 11 418-431
  • [4] Leonardi S(2021)Rhombohedron and plate-like hematite (α-Fe Mater. Res. Bull. 133 111055-3413
  • [5] Neri G(2020)O Nanomaterials 10 1551-282
  • [6] Abu-Huwaij R(2020)) nanoparticles: synthesis, structure, morphology, magnetic properties and potential biomedical applications for MRI Heliyon 6 e04603-15721
  • [7] Al-Assaf SF(2018)Synthesis and characterization of amorphous iron oxide nanoparticles by the sonochemical method and their application for the remediation of heavy metals from wastewater J. Supercond. Nov. Magn. 31 3397-12720
  • [8] Mousli F(2002)Green synthesis of iron oxide nanoparticle using Carica papaya leaf extract: application for photocatalytic degradation of remazol yellow RR dye and antibacterial activity Sens. Actuators B. 81 277-335
  • [9] Kutkut MS(2006)A review on iron oxide nanoparticles and their biomedical applications J. Am. Chem. Soc. 128 15714-2435
  • [10] Al-Bashtawi A(2003)Gas and humidity sensors based on iron oxide–polypyrrole nanocomposites J. Phys. Chem. B 107 12713-415