Published January 1, 2004 | Version v1
Journal article

Growth and characterization of Bi2Sr2Ca2Cu3O10 and (Bi,Pb)2Sr2Ca2Cu3O10-δ single crystals

  • 1. Departement de Physique de la Matiere Condensee, DPMC-University of Geneva, 24 quai ernest-Ansermet, CH-1211 Geneva 4 (Switzerland)
  • 2. Dept. Inorg. Chem., Ivan Franko National University of L'viv Kyryla i Metodiya str. 6, UA-79005 L'viv (Ukraine)

Description

Large and high-quality single crystals of both Pb-free and Pb-doped high-temperature superconducting compounds (Bi1-xPbx)2Sr2Ca2Cu3O10-y (x = 0 and 0.3) were grown by means of a newly developed 'vapour-assisted travelling solvent floating zone' technique (VA-TSFZ). This modified zone-melting technique was performed in an image furnace and allowed for the first time the growth of large Pb-doped crystals, by compensating for the Pb losses that occur at high temperature. Crystals up to 3 x 2 x 0.1 mm3 were successfully grown. Post-annealing under high pressure of O2 (up to 10 MPa at T = 500 C) was applied to enhance Tc and improve the homogeneity of the crystals. Structural characterization was performed by single-crystal x-ray diffraction (XRD). Structure refinement confirmed a commensurate modulated superlattice in the Pb-free crystals. The space group is orthorhombic, A2aa, with cell parameters a = 21.829(4) A, b 5.4222(9) A and c = 37.19(1) A. Superconducting studies were carried out by ac and dc magnetic measurements. Very sharp superconducting transitions were obtained in both kinds of crystals (ΔTc ≤ 1 K). In optimally doped Pb-free crystals, critical temperatures up to 111 K were measured. Magnetic critical current densities of 2 x 105 A cm-2 were measured at T = 30 K and μ0H = 0 T. A weak second peak in the magnetization loops was observed in the temperature range 40-50 K, above which the critical current density was found to rapidly decrease as a function of T and H. A comparison between the pinning properties in Pb-free and Pb-doped crystals is reported and discussed

Availability note (English)

Available online at http://stacks.iop.org/0953-2048/17/220/sust4_1_037.pdf or at the Web site for the journal Superconductor Science and Technology (ISSN 1361-6668) http://www.iop.org/

Additional details

Publishing Information

Journal Title
Superconductor Science and Technology
Journal Volume
17
Journal Issue
1
Journal Page Range
p. 220-226
ISSN
0953-2048
CODEN
SUSTEF