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Equilibrium and non-equilibrium lattice structure, ferrimagnetic spin order and electrical conductivity at high-temperature regime of single-phased and bi-phased Co-rich spinel ferrites.

Authors :
Bhowmik, Rabindra Nath
Sahoo, Vimal Narayan
Babu, Peram Delli
Sinha, Anil K.
Bhisikar, Abhay
Source :
CrystEngComm. 9/21/2024, Vol. 26 Issue 35, p4833-4847. 15p.
Publication Year :
2024

Abstract

This work investigates the role of stable (sing-phased) and unstable (bi-phased) lattice structures in controlling the magnetic spin order and electronic properties in Co-rich ferrites of compositions Co1.25Fe1.75O4 and Co2.25Fe0.75O4. The material was synthesized via the chemical reaction of metal (Co and Fe) nitrates in an alkaline medium and post-heat treatment. The XRD patterns of Co1.25Fe1.75O4 showed a single-phased structure upon heat treatment in the temperature range of 200–900 °C, whereas Co2.25Fe0.75O4 showed a single-phased structure at 900 °C and bi-phased structure at a low heating temperature range of 200–800 °C. The thermally induced irreversibility (non-equilibrium) effect was observed in the lattice structure, magnetic spin order and electrical conductivity. The lattice structure at the (local) microscopic scale showed a more or less metastable state and coexistence of mixed-charge states of Co and Fe ions, irrespective of the single or bi-phased structure. The magnetic and electronic responses are found to be sensitive enough to detect local level non-equilibrium (metastable) states in non-equilibrium and equilibrium crystalline phases seen from XRD patterns. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
14668033
Volume :
26
Issue :
35
Database :
Academic Search Index
Journal :
CrystEngComm
Publication Type :
Academic Journal
Accession number :
179534084
Full Text :
https://doi.org/10.1039/d4ce00278d