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Structural and Electric Properties of the Ru0.9M0.1Sr2GdCu2O8 System with M = Zr, Mo, and Mn

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The superconducting properties of the RuSr 2 GdCu 2 O 8 ceramic system depend strongly on the synthesis conditions and the ionic substitutions. In this work, we studied the structural… Click to show full abstract

The superconducting properties of the RuSr 2 GdCu 2 O 8 ceramic system depend strongly on the synthesis conditions and the ionic substitutions. In this work, we studied the structural and electrical properties of the Ru 0.9 M 0.1 Sr 2 GdCu 2 O 8 system, with M = Zr, Mo, and Mn. The samples were prepared by solid-state reaction at ambient pressure in air, using temperatures between 980 °C and 1020 °C. X-ray powder diffraction patterns indicated that all samples crystallized in a tetragonal symmetry (S.G. P4/mmm, No. 123). The structural data of each sample was re ned by the Rietveld method, showing that the Cu-O (1) and Ru-O (1) bond lengths varies with the substituted ionic radii of Zr, Mo, and Mn ions. Electrical resistance measurements indicated that the samples annealed in owing oxygen at 1050 °C and 1055 °C for 5 days exhibit a semiconductor like behavior for M = Mo and Mn, whereas the samples with M = Zr and Ru show superconductivity behavior.

Keywords: ru0 9m0; system; 9m0 1sr2gdcu2o8; properties ru0; electric properties; structural electric

Journal Title: Iranian Journal of Materials Science and Engineering
Year Published: 2019

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