The Effects of Ca and Mn Excess Co-Doping in CMR Manganites Solid Solution Structures

Author:

Figueiras Fábio1,Vieira Joaquim M.1,Guzik M.E.2,Legendziewicz J.2,Tavares Pedro B.3,Amaral Vitor S.1

Affiliation:

1. Universidade de Aveiro

2. University of Wroclaw

3. Universidad de Trás-os-Montes e Alto Douro

Abstract

A comprehensive study of CMR manganite related phases, particularly those that develop under the effects of Ca and Mn-excess co-doping is undertaken. The relationships between phase composition, processing and observed crystalline structure are investigated for co-precipitated powders of composition La1-xCaxMn1+zO3+δ, thermally treated at 800 and 1000 °C in air for Ca contents of x=0.10 and x=0.15 and Mn content from z=0 up to z=0.88. A relevant structural transition from orthorhombic to rhombohedric symmetry is observed as a function of Mn excess near 25% A site vacancies. This solid solution is in equilibrium with the conjugated phases, either LaMn7O12 at 800°C, or Mn3O4 at 1000°C, respectively. Results suggest that at the polymorphic phase transition the solid solution is stable enough to slow down Mn diffusion into the perovskite cell. Ca-doping introduces stability in the perovskite structure and broadens the domain for phase formation reaction. The solid solution limit of the Ca-manganite solid solution is set above 50% Mn excess.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference13 articles.

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3. B. Dabrowski, R. Dybzinski, Z. Bukowski, O. Chmaissem: J. Sol. St. Ch. Vol. 146 (1999), p.448.

4. J. van Roosmalen, E. H. P. Cordfunke: J. Sol. State. Chem. Vol. 93 (1993), p.212.

5. F. Figueiras: Composição e Estrutura de Manganites Cerâmicas: Efeitos da substituição de lantânio por cálcio e lacunas (Tese de Mestrado, Universidade de Aveiro 2004).

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