Effect of Ho Substitution on Structural, Magnetic and Magnetocaloric Properties of Co(crfe)o-4

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Date

2021

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SPRINGER

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Abstract

In this study, structural, magnetic and magnetocaloric properties of Ho-substituted Co(CrFe)O-4 spinel compounds produced by the sol-gel method were investigated. The Ho concentration in Co(CrFe)O-4 spinel structure was changed from 0 to 20% by 5% steps. It is observed that the Ho3+ ions create a new phase HoCrO3/HoFeO3 in the host spinel lattice. SEM images of samples indicate that the average particle size increases with Ho content. The paramagnetic to ferro-/ferrimagnetic phase transition temperature increases from 312 to 344 K with Ho content. While the fluctuation in saturation magnetization of samples was detected at low temperature, it almost becomes a linear change with the Ho content. The maximum magnetic entropy change under 7 T magnetic field was found as - 1.39, - 1.50, - 1.20, - 0.98 and - 0.91 J/kgK for Ho-free, 5, 10, 15 and 20 wt% Ho content in CoCrFeO4 spinel structure, respectively.

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Keywords

Rare-Earth Substitution, Negative Magnetization, Ferrite Nanoparticles, Carbon-Monoxide, Gas Sensor, Cobalt, Strain, Nd, Er

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Fields of Science

0103 physical sciences, 02 engineering and technology, 0210 nano-technology, 01 natural sciences

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Q2

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Q2
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JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS

Volume

32

Issue

12

Start Page

15740

End Page

15753
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