DocumentCode :
1529191
Title :
Enhanced I/sub c/-B performance in Tl-base high-Te oxides prepared by a diffusion process
Author :
Tachikana, K. ; Kikuchi, A. ; Nakamura, T.
Author_Institution :
Fac. of Eng., Tokai Univ., Kanagawa, Japan
Volume :
7
Issue :
2
fYear :
1997
fDate :
6/1/1997 12:00:00 AM
Firstpage :
1957
Lastpage :
1960
Abstract :
High-T/sub c/ Tl-base oxides can be synthesized by a diffusion reaction within a short reaction time. The F addition apparently promotes the phase transformation from 2223 to 1223. The scanning electron microscope observation reveals that the 1223 phase formed by the F addition shows a dense and homogeneous structure, resulting in an increase in transport I/sub c/ at 77 K. Moreover, F addition significantly improves the I/sub c/ at 77 K under magnetic field, and shifts the irreversibility line to higher temperature. Meanwhile, V addition was found to enhance the diffusion reaction, resulting in the formation of 2223 layer of about 600 pm in thickness after the reaction at 850/spl deg/C for 2 h. The V is pushed out from the diffusion layer and accumulates on the surface of the specimen. The V addition causes almost no degradation in T/sub c/. I/sub c/-B performance is appreciably improved by annealing in O/sub 2/ after the reaction.
Keywords :
annealing; barium compounds; calcium compounds; ceramics; chemical interdiffusion; critical currents; fluorine; high-temperature superconductors; materials preparation; scanning electron microscopy; superconducting transition temperature; surface chemistry; surface phase transformations; thallium compounds; vanadium; 1223 phase; 2 h; 2223 layer; 2223 to 1223 transformation; 600 mum; 77 K; 850 C; F addition; O/sub 2/; SEM; T/sub c/; Tl-base high-T/sub c/ oxides; TlBaCaCuO:F,V; V addition; annealing; diffusion layer; diffusion process; diffusion reaction; enhanced I/sub c/-B performance; homogeneous structure; irreversibility line; phase transformation; scanning electron microscopy; short reaction time; transport I/sub c/; Annealing; Bars; Coatings; Cooling; Degradation; Electrons; Heat treatment; High temperature superconductors; Magnetic fields; Powders;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/77.620970
Filename :
620970
Link To Document :
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