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通过铁离子沉淀法微波合成磁铁矿纳米颗粒及镁掺杂磁铁矿纳米颗粒

Microwave Synthesis of Magnetite Nanoparticles and Mg-Doped Magnetite Nanoparticles by Precipitation of Fe Ions.

作者信息

Ochmann Martin, Machala Libor, Kašlík Josef

机构信息

Department of Experimental Physics, Faculty of Science, Palacký University, 17. Listopadu 1192/12, 771 46 Olomouc, Czech Republic.

Regional Centre of Advanced Technologies and Materials, Faculty of Science, Palacký University, Šlechtitelů 27, 783 71 Olomouc, Czech Republic.

出版信息

J Nanosci Nanotechnol. 2021 Oct 1;21(10):5165-5173. doi: 10.1166/jnn.2021.19357.

Abstract

This study is focused on a simple and fast synthesis of nonstoichiometric magnetite nanoparticles with the chemical formula FeO₄ and magnesium ferrite nanoparticles (MgFeO₄). The nanoparticles were prepared with Fe ions (FeSO₄ · H₂O) alkalised by KOH under oxidative conditions and in a microwave field. X-ray powder diffraction (XRD) and Fe transmission Mössbauer spectroscopy were used to determine the phase composition and crystal structure in detail. The presence of synthetic magnetite, maghemite, goethite, and magnesium ferrite was observed. Room temperature Mössbauer spectroscopy revealed the existence of ferromagnetic sublattices and superparamagnetic fraction. The superparamagnetic component corresponds to magnesium ferrite nanoparticles. Low temperature Mössbauer spectroscopy was used to locate the blocking temperature of superparamagnetic nanoparticles and to separate the sublattices. The presumed spherical morphology of nanoparticles and their size under 100 nm have been confirmed by transmission electron microscopy (TEM). The obtained results were used to provide possible reaction scheme, which serves to tailor the synthesis to a desired application.

摘要

本研究聚焦于以化学式FeO₄的非化学计量磁铁矿纳米颗粒和镁铁氧体纳米颗粒(MgFeO₄)的简单快速合成。纳米颗粒是在氧化条件下和微波场中用经KOH碱化的Fe离子(FeSO₄·H₂O)制备的。利用X射线粉末衍射(XRD)和Fe透射穆斯堡尔谱详细确定相组成和晶体结构。观察到合成磁铁矿、磁赤铁矿、针铁矿和镁铁氧体的存在。室温穆斯堡尔谱揭示了铁磁亚晶格和超顺磁部分的存在。超顺磁组分对应于镁铁氧体纳米颗粒。低温穆斯堡尔谱用于确定超顺磁纳米颗粒的阻塞温度并分离亚晶格。透射电子显微镜(TEM)证实了纳米颗粒推测的球形形态及其小于100 nm的尺寸。所得结果用于提供可能的反应方案,该方案有助于根据所需应用定制合成。

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