DocumentCode :
841749
Title :
Preparation of MZrO3 (M=Ba,Sr) buffer layers on surface oxidized Ni/NiO templates by PLD and MOD
Author :
Hühne, R. ; Holzapfel, B. ; Kursumovic, A. ; Evetts, J.E. ; Cavallaro, A. ; Sandiumenge, F. ; Pomar, A. ; Puig, T. ; Obradors, X.
Author_Institution :
Inst. of Metallic Mater., Dresden, Germany
Volume :
15
Issue :
2
fYear :
2005
fDate :
6/1/2005 12:00:00 AM
Firstpage :
3024
Lastpage :
3027
Abstract :
The preparation of cube textured NiO buffer layers on biaxially textured Ni tapes using surface oxidation epitaxy (SOE) offers a cheap and scalable route for the production of long-length YBCO coated conductors. A second buffer layer is necessary to ensure epitaxial growth of the YBCO as well as to prevent Ni contamination of the superconducting layer. Zirconate buffer layers offer a close lattice misfit to NiO as well as a high stability during the YBCO deposition. BaZrO3 and SrZrO3 buffers were successfully deposited on NiO using pulsed laser deposition. Additionally, BaZrO3 films were prepared on NiO using metal-organic decomposition. All buffers show a high quality epitaxial growth with an in-plane orientation similar to the underlying NiO. The subsequent deposition of YBCO on top of these buffers resulted in epitaxial layers with a Tc above 85 K and jc up to 1 MA/cm2 on NiO if a thin intermediate SrTiO3 layer is used. Microstructural investigations showed that the roughness and the surface topography of the buffer layers is mainly determined by the quality of the NiO layer.
Keywords :
barium compounds; buffer layers; conductors (electric); high-temperature superconductors; liquid phase epitaxial growth; nickel compounds; oxidation; pulsed laser deposition; strontium compounds; superconducting epitaxial layers; surface roughness; yttrium compounds; 85 K; BaZrO3; MOD; NiO; PLD; SOE; SrTiO3; SrZrO3; YBCO coated conductors; YBCO deposition; YBa2Cu3O7; buffer layers; epitaxial growth; epitaxial layers; metal-organic decomposition; microstructural investigations; pulsed laser deposition; surface oxidation epitaxy; surface roughness; surface topography; Buffer layers; Conductors; Epitaxial growth; Oxidation; Production; Pulsed laser deposition; Surface contamination; Surface texture; Surface topography; Yttrium barium copper oxide; Buffer layers; MOD; PLD; SOE; coated conductors;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/TASC.2005.848710
Filename :
1440306
Link To Document :
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