DocumentCode :
1528339
Title :
P(O/sub 2/)-T phase diagrams and properties of Ln/sub 2/Ba/sub 4/Cu/sub 7/O/sub 15-/spl delta// compounds (Ln=Dy,Er,Eu,Gd,Nd,Pr,Sm,Y and Yb)
Author :
Manojlovic, V. ; Staines, M.P. ; Wei Gao ; Tallon, J.L.
Author_Institution :
Ind. Res. Ltd., Lower Hutt, New Zealand
Volume :
7
Issue :
2
fYear :
1997
fDate :
6/1/1997 12:00:00 AM
Firstpage :
1793
Lastpage :
1796
Abstract :
Oxygen pressure-temperature phase diagrams for Ln/sub 2/Ba/sub 4/Cu/sub 7/O/sub 15-/spl delta// (Ln-247) compounds (Ln=Er,Eu,Gd,Y and Yb) in the pressure range 2-32 bars of oxygen and temperature range 900-990/spl deg/C were studied. The required pressures for Ln-247 single phase synthesis are much lower than was previously found. In addition, phase-pure Ln-247 (Ln=Dy,Nd,Pr and Sm) samples were prepared at high oxygen pressure. The temperatures of the superconducting transition (T/sub c/) for fully oxygen loaded Ln-247 samples are in the range 63-94 K, except for Pr-247 which is not superconducting at temperatures above 4.2 K. These transition temperatures are, for the wider range of rare earth, considerably higher than previously reported. Evidence is presented for progressive underdoping of carriers with increasing rare earth ionic radius, suggesting that T/sub c/ has not been maximized.
Keywords :
barium compounds; high-temperature superconductors; materials preparation; phase diagrams; rare earth compounds; stoichiometry; superconducting transition temperature; 4.2 K; 63 to 94 K; 900 to 990 C; Ln/sub 2/Ba/sub 4/Cu/sub 7/O/sub 15-/spl delta// (Ln=Dy,Er,Eu,Gd,Nd,Pr,Sm,Y,Yb); pressure-temperature phase diagrams; progressive carrier underdoping; rare earth ionic radius; single phase synthesis; superconducting transition; Bars; Ceramics; Erbium; Impurities; Neodymium; Powders; Samarium; Stability; Superconducting transition temperature; Temperature distribution;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/77.620930
Filename :
620930
Link To Document :
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