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Title: Effect of Cobalt on the Crystal Structure and Magnetism of Electron-Doped Sr{sub 0.8}Ce{sub 0.2}MnO{sub 3} Oxide

Journal Article · · Physics of the Solid State
 [1];  [2]
  1. Institute of Solid State Chemistry, Ural Branch, Russian Academy of Sciences (Russian Federation)
  2. Mikheev Institute of Metal Physics, Ural Branch, Russian Academy of Sciences (Russian Federation)

The Sr{sub 0.8}Ce{sub 0.2}Mn{sub 1 –} {sub y}Co{sub y}O{sub 3 – δ} (y = 0.2, 0.3, 0.4, 0.5, and 0.6) complex oxides with the perovskite structure obtained from simple oxides by the solid–state reaction technique have been examined using structural analysis and magnetic measurements. Substitution of Co for Mn in the dilute Sr{sub 0.8}Ce{sub 0.2}MnO{sub 3} antiferromagnet with a Néel temperature of T{sub N} = 210 K leads to a decrease in the degree of tetragonal distortion of the crystal structure and transition to the cubic cell. The degeneracy of the antiferromagnetic interaction (T{sub N} = 138 K at y = 0.2) observed at the first stage of the substitution of Co for Mn changes for its gradual enhancement with an increase in the magnetic transformation temperature up to 239 K at y = 0.6. An increase in the Co content weakens the competition between the ferromagnetic and antiferromagnetic couplings and reduces the temperature of the transition to the spin-glass-like state. The magnetic inhomogeneity and formation of Co{sup 2+}–Mn{sup 4+} ferromagnetic clusters in Sr{sub 0.8}Ce{sub 0.2}Mn{sub 0.4}Co{sub 0.6}O{sub 2.69} at 140 K have been observed.

OSTI ID:
22923145
Journal Information:
Physics of the Solid State, Vol. 60, Issue 12; Other Information: Copyright (c) 2018 Pleiades Publishing, Ltd.; Country of input: International Atomic Energy Agency (IAEA); ISSN 1063-7834
Country of Publication:
United States
Language:
English