Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Su, S. R.
O’Connor, M.
Levinson, M.
and
Rossoni, P. G.
1992.
Physics and Materials Science of High Temperature Superconductors, II.
p.
707.
Su, S.R.
O'Connor, M.
and
Rossoni, P.G.
1992.
Synthesis of the 110 K phase (BiPb)2Sr2Ca2Cu3Ox material by a seeding technique.
Physica C: Superconductivity,
Vol. 198,
Issue. 1-2,
p.
95.
Rojo, T.
Insausti, M.
Arriortua, M.I.
Hernandez, E.
and
Zubillaga, J.
1992.
Thermal decomposition study of some complexes, precursors of mixed oxides, with formula MM'(L) · nH2O (M, M' = Bi, Pb, Sr, Ca and Cu; L = EDTA-like ligands).
Thermochimica Acta,
Vol. 195,
Issue. ,
p.
95.
Sarkar, Asok K.
Tang, Y.J.
Cao, X.W.
Ho, J.C.
and
Kozlowski, G.
1992.
Role of calcium plumbate during the formation of 2223 phase in the Bi(Pb)srcacuo system.
Materials Research Bulletin,
Vol. 27,
Issue. 1,
p.
1.
Sung, Y.S.
and
Hellstrom, E.E.
1995.
A reaction couple study of reactions amongst Bi2Sr2CaCu2Ox, Ca2PbO4, and CuO to form (Bi, Pb)2Sr2Ca2Cu3Ox.
Physica C: Superconductivity,
Vol. 253,
Issue. 1-2,
p.
79.
Wong-Ng, W.
Jiang, F.
and
Cook, L.P.
1996.
Phase relationships of the PbSrCaO system in air.
Physica C: Superconductivity,
Vol. 272,
Issue. 1-2,
p.
87.
Yau, J.K.F.
Savvides, N.
and
Sorrell, C.C.
1996.
Influence of mechanical strain on critical current density and microstructure of silver-sheathed Bi(Pb)2223 superconducting tapes.
Physica C: Superconductivity,
Vol. 266,
Issue. 3-4,
p.
223.
Grivel, J-C
and
Flükiger, R
1996.
Visualization of the formation of the phase.
Superconductor Science and Technology,
Vol. 9,
Issue. 7,
p.
555.
Nhien, S.
and
Desgardin, G.
1996.
Synthesis and reaction mechanism of the high-Tc 2223 phase in the (Bi,Pb)SrCaCaCuO system.
Physica C: Superconductivity,
Vol. 272,
Issue. 3-4,
p.
309.
Wong-Ng, W.
Cook, L.P.
Greenwood, W.
and
Jiang, F.
1997.
Subsolidus and melting phase relationships of the PbOxCaOCuO system in air.
Physica C: Superconductivity,
Vol. 279,
Issue. 1-2,
p.
31.
Jeremie, A.
Grasso, G.
and
Flükiger, R.
1997.
Synthesis and characterization of high temperature superconductors.
Journal of Thermal Analysis,
Vol. 48,
Issue. 3,
p.
635.
MacManus-Driscoll, J L
and
Yi, Z
1997.
Study of (Bi,Pb)-2223 phase formation in reaction couples.
Superconductor Science and Technology,
Vol. 10,
Issue. 12,
p.
970.
Jiang, J
and
Abell, J S
1997.
Effects of precursor powder calcination on critical current density and microstructure of Bi-2223/Ag tapes.
Superconductor Science and Technology,
Vol. 10,
Issue. 9,
p.
678.
Yavuz, Mustafa
Maeda, Hiroshi
Vance, Lou
Kun Liu, Hua
and
Xue Dou, Shi
1998.
Phase development and kinetics of high temperature Bi-2223 phase.
Journal of Alloys and Compounds,
Vol. 281,
Issue. 2,
p.
280.
Jak, Evgueni
Hayes, Peter C.
and
Liu, Naigang
1998.
Experimental study of phase equilibria in the systems PbO
x
-CaO and PbO
x
-CaO-SiO2
.
Metallurgical and Materials Transactions B,
Vol. 29,
Issue. 3,
p.
541.
Miao, H
Kitaguchi, H
Kumakura, H
and
Togano, K
1998.
Microstructure and superconducting properties of Pb-substituted Bi2Sr2CaCu2Ox/Ag dip-coated tapes.
Physica C: Superconductivity,
Vol. 298,
Issue. 3-4,
p.
312.
Suzuki, Ryosuke O.
Nagata, Jun‐ichi
and
Risold, Daniel
1998.
Experimental Phase Equilibria in the PbOx‐CaO System.
Journal of the American Ceramic Society,
Vol. 81,
Issue. 9,
p.
2493.
Ben Azzouz, F.
M’chirgui, A.
Yangui, B.
Boulesteix, C.
and
Ben Salem, M.
2001.
Synthesis, microstructural evolution and the role of substantial addition of PbO during the final processing of (Bi,Pb)-2223 superconductors.
Physica C: Superconductivity,
Vol. 356,
Issue. 1-2,
p.
83.
Chen, X.P
Grivel, J.-C
Li, M.Y
Liu, Q
Han, Z
and
Andersen, N.H
2004.
Influence of powder pre-annealing on the phase formation and critical current of Bi-2223/Ag tapes.
Physica C: Superconductivity,
Vol. 406,
Issue. 3-4,
p.
176.
Rao, S. M.
Wu, M. K.
Srivastava, J. K.
Mok, B. H.
Chou, T. W.
Lu, C. Y.
Ling, M. C.
Liu, H. L.
and
Liao, Y. C.
2006.
Growth of big single crystals of a new magnetic superconducting double perovskite Ba2PrRu1–xCuxO6.
Crystal Research and Technology,
Vol. 41,
Issue. 2,
p.
123.