Issue 21, 2015

Quintuple perovskites Ln2Ba3Fe5−xCoxO15−δ (Ln = Sm, Eu): nanoscale ordering and unconventional magnetism

Abstract

Quintuple perovskites Ln2Ba3Fe5−xCoxO15−δ, with Ln = Sm, Eu have been synthesized for x values varying from 0 to 2. The HRTEM and HAADF investigations show that these oxides are ordered at the nanoscale with a tetragonal “ap × ap × 5ap” lattice, corresponding to an ordered fivefold stacking of the Ba and Ln layers. These structures are in fact chemically twinned, so that only cubic or pseudo-cubic symmetry is detected by XRD investigation. The detailed magnetic study shows the existence of short range antiferromagnetic ordering, canted in nature in the temperature range from 5 to 330 K. This particular behavior is interpreted on the basis of local antiferromagnetic M–O–M (M = Fe/Co) interactions within the nanodomains that are limited by pinning of the Co/Fe spins at the boundaries.

Graphical abstract: Quintuple perovskites Ln2Ba3Fe5−xCoxO15−δ (Ln = Sm, Eu): nanoscale ordering and unconventional magnetism

Supplementary files

Article information

Article type
Paper
Submitted
19 Feb 2015
Accepted
08 Apr 2015
First published
09 Apr 2015

J. Mater. Chem. C, 2015,3, 5398-5405

Quintuple perovskites Ln2Ba3Fe5−xCoxO15−δ (Ln = Sm, Eu): nanoscale ordering and unconventional magnetism

A. K. Kundu, O. I. Lebedev, N. E. Volkova, Md. M. Seikh, V. Caignaert, V. A. Cherepanov and B. Raveau, J. Mater. Chem. C, 2015, 3, 5398 DOI: 10.1039/C5TC00494B

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