Facile Synthesis of Chromium-Doped Fe1.1Mn1.9O4 Nanoparticles and the Effect of Cr Content on Their Magnetic and Structural Properties

Author:

Spivakov Aleksandr A.1,Huang Li-Huai1,Chen Ying-Zhen1,Lin Chun-Rong1

Affiliation:

1. Department of Applied Physics, National Pingtung University, No. 4-18 Minsheng Rd., Pingtung County, Pingtung City 90003, Taiwan

Abstract

In the present study, Fe1.1(CrxMn1-x)1.9O4 nanoparticles (0 ≤ x ≤ 0.5) were successfully synthesized by a combustion method, and the influence of Cr substitution on the structural and magnetic properties of the obtained nanoparticles was studied by various methods. The structural analysis revealed that the sample with x = 0 has a tetragonal structure, while all Cr-doped samples crystallize into a cubic structure. Additionally, the results of TEM show that doping with chromium leads to an increase in particle size. The magnetic hysteresis loops demonstrate the behavior typical for soft magnetic materials with low coercivity and remanence magnetization. The magnetic measurements revealed that the saturation magnetization of the obtained nanoparticles demonstrates a decreasing trend with increasing Cr content. The influence of chromium doping on the observation change in saturation magnetization is discussed. Based on the results of temperature-dependent magnetization measurements, it was found that the temperature of a magnetic transition in synthesized nanoparticles depends on Cr content.

Funder

National Science and Technology Council of Taiwan

Publisher

MDPI AG

Subject

General Materials Science,General Chemical Engineering

Reference57 articles.

1. On the Magnetic Anisotropy in Manganese-Iron Spinels;Penoyer;J. Appl. Phys.,1959

2. Time Decrease of Initial Permeability in MnxFe3−xO4+y. J;Crapo;Appl. Phys.,1960

3. FeMn2O4 nanoparticles coated dual responsive temperature and pH-responsive polymer as a magnetic nano-carrier for controlled delivery of letrozole anti-cancer;Asli;Nanomed. J.,2017

4. A low temperature solid state reaction to produce hollow MnxFe3−xO4 nanoparticles as anode for lithium-ion batteries;Yu;Nano Energy,2019

5. Magnetic MnFe2O4—Graphene hybrid composite for efficient removal of glyphosate from water;Yamaguchi;Chem. Eng. J.,2016

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