JOURNAL ARTICLE

Solid‐Solution Ranges of the n = 2 and n = 3 Superconducting Phases in Bi 2 (Sr x Ca 1 − x ) n +1 Cu n O y and the Effect on T c

Byungsun HongThomas O. Mason

Year: 1991 Journal:   Journal of the American Ceramic Society Vol: 74 (5)Pages: 1045-1052   Publisher: Wiley

Abstract

The cation solubility limits of the n = 2 and n = 3 superconducting phases in the Bi 2 (Sr x Ca 1 − x ) n +1 Cu n O y system were established along tie lines with compatible phases via electron probe microanalysis on bi‐ (or poly‐) phasic samples prepared at 860°C. Pb additions (15 mol% of the Bi content) were used to facilitate formation of the n = 3 phase. In each case football‐shaped volumes in composition space were established as the solubility limits which bordered on the nominal compositions 2212 or 2223 (Bi:Sr:Ca:Cu) with the long axis parallel to the Sr‐Ca side of the quaternary (i.e., Sr‐to‐Ca intersolubility) but also extending toward Bi and Cu. This means that, for the most part, the superconducting phases are alkaline‐earth deficient relative to the ideal 2212 and 2223 compositions. The Pb content in the 2223 phase is typically 10% of the Bi content. T c variations could be correlated with variations in Sr or (Sr + Bi) content and the length of the c ‐axis parameter.

Keywords:
Superconductivity Strontium Analytical Chemistry (journal) Solubility Solid solution Alkaline earth metal Electron probe microanalysis Phase (matter) Content (measure theory) Microanalysis Chemistry Chemical composition Electrical resistivity and conductivity Crystallography Mineralogy Materials science Electron microprobe Alkali metal Condensed matter physics Physics Physical chemistry

Metrics

89
Cited By
6.49
FWCI (Field Weighted Citation Impact)
33
Refs
0.98
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Physics of Superconductivity and Magnetism
Physical Sciences →  Physics and Astronomy →  Condensed Matter Physics
Iron-based superconductors research
Physical Sciences →  Materials Science →  Electronic, Optical and Magnetic Materials
Superconductivity in MgB2 and Alloys
Physical Sciences →  Physics and Astronomy →  Condensed Matter Physics

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