Hostname: page-component-788cddb947-55tpx Total loading time: 0 Render date: 2024-10-19T19:14:50.186Z Has data issue: false hasContentIssue false

Preparation of High-Purity T12CanBa2Cun+1O6+2n (n=1,2) Powders from Stoichiometric Reactant Mixtures

Published online by Cambridge University Press:  28 February 2011

Nae-Lih Wu
Affiliation:
National Taiwan University, Department of Chemical Engineering, Taipei, Taiwan, R.O.C.
Yeong Der Yao
Affiliation:
Institute of Physics, Acadeaia Sinica, Taipei, Taiwan, R.O.C.
Get access

Abstract

New powder synthesis Methods have been developed for preparing the single-phase T12CaBa2Cu2O8 (the 2122 coapound) and T12CaBa2Cu3O10 (the 2223 coapound) powders froa stoichioaetric reactant mixtures. The 2122 coapound was prepared froa a stoichioaetric Mixture of T12O3, CuO, and CaBa2CuO4, while the 2223 coapound was prepared froa the same aixture but with additional CaO and CuO to Batch the correct (T1:Ca:Ba:Cu=2:2:2:3) stoichioaetry. The single-phase 2122 saaples with Tc above 110 K were obtained by using one-step calcination at 830°C, while the 2223 saaples with Tc ranging between 115 and 120 K were obtained by employing a first calcination at 830°C for 5 hrs and a second calcination at 870°C. Powder aelting, which is strongly associated with the conventional aethods, was significantly suppressed in the new aethods.

Type
Research Article
Copyright
Copyright © Materials Research Society 1990

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

1 Sheng, Z. Z. and Hermann, A. M., Nature 332, 55 (1988).Google Scholar
2 Subramanian, M. A., Calabrese, J. C., Torardi, C. C., Gopalakrishnan, J., Askew, T. R., Flippen, R. B., Morrissey, K. J., Chowdhry, U. and Sleight, A. W., Nature 332, 420 (1988).Google Scholar
3 Takahashi, K., Nakao, M., Dietderich, D. R., Kumakura, H. and Togano, K., Jpn. J. Appl. Phys. 27, L1457 (1988).Google Scholar
4 Parkin, S. S. P., Lee, V. Y., Engler, E. M., Nazzal, A. I., Huang, T. C., Gorman, G., Savoy, R. and Beyers, R., Phys. Rev. Lett. 60, 2539 (1988).Google Scholar
5 Seidler, F., Bohm, P., Geus, H., Braunisch, W., Braun, E., Schnelle, W., Drzazga, Z., Wild, N., Roden, B., Schmidt, H. and Wohlleben, D., Physica C 157, 375 (1989).Google Scholar
6 Kikuchi, M., Kajitani, T., Suzuki, T., Nakajima, S., Hiraga, K., Konayashi, N., Iwasaki, H., Syono, Y. and Muto, Y., Jpn. J. Appl. Phys. 28, L382 (1989).Google Scholar
7 Wu, N. L. and Euckenstein, E., Mater. Lett. 7, 169 (1988).Google Scholar
8 Schilling, A., Ott, H. R. and Hulliger, F., Physica C 157, 144 (1989).Google Scholar