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Influence of non-magnetic Ti4+ ion doping at Mn site on structural and magnetic properties of La0.67Ba0.33MnO3

A Gasmi et al 2009 J. Phys. D: Appl. Phys. 42 225408 (7pp)   doi: 10.1088/0022-3727/42/22/225408  Help

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A Gasmi1,2, M Boudard2,3, S Zemni1, F Hippert2 and M Oumezzine1
1 Laboratoire de Physico-Chimie des Matériaux, Faculté des Sciences de Monastir, Département de Physique, 5019, Monastir, Tunisia
2 Laboratoire des Matériaux et du Génie Physique (CNRS UMR 5628), Minatec Bâtiment INPG, parvis Louis Néel, BP 257, 38016 Grenoble Cedex 1, France
3 Author to whom any correspondence should be addressed.
E-mail: michel.boudard@inpg.fr

Abstract. We have investigated the effect of titanium substitution on the structure and the magnetic properties of manganites with La0.67Ba0.33Mn1−xTixO3 (0 ≤ x ≤ 0.3) nominal composition. The polycrystalline samples have been produced by the conventional ceramic method at 1523 K. The morphology, grain size and phase identification studies were carried out by scanning electron microscopy, diffraction techniques (neutron and x-ray) and the chemical compositions were precisely determined by the inductively coupled plasma atomic emission spectroscopy technique. The structural refinement at room temperature by the Rietveld method revealed that for x ≥ 0.1 the compounds are almost a single phase manganite crystallizing in a rhombohedral (R\bar{3} c) perovskite structure (LaAlO3 type). The more salient structural feature is an increase in cell parameter and inter-ionic distances with increasing Ti content. For x = 0 and x = 0.05 the samples exhibit two manganite phases with orthorhombic (Imma) and rhombohedral (R\bar{3} c) space groups. Compounds with x ≤ 0.1 are ferromagnetic with a Curie temperature decreasing with increasing x. More complicated magnetic behaviour is observed for larger Ti content.

Print publication: Issue 22 (21 November 2009)
Received 22 June 2009, in final form 23 September 2009
Published 30 October 2009

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