DocumentCode :
1073377
Title :
Characterization of Er-Added YBCO Coated Conductor Produced by Metal Organic Deposition (MOD)
Author :
Arenal, R. ; Miller, D.J. ; Maroni, V.A. ; Rupich, M.W. ; Li, X. ; Huang, Y. ; Kodenkandath, T. ; Civale, L. ; Maiorov, B. ; Holesinger, T.G.
Author_Institution :
Argonne Nat. Lab., Argonne
Volume :
17
Issue :
2
fYear :
2007
fDate :
6/1/2007 12:00:00 AM
Firstpage :
3359
Lastpage :
3362
Abstract :
The effects of adding Er3+ to the trifluoroacetate precursor solution used to produce YBa2Cu3O7-times thin films by the MOD method have been investigated. Er-added MOD YBCO films, applied to RABiTS-based substrates, were examined by in-field transport, electron microscopy, and Raman spectroscopy. Er additions up to Er/Y= 1.0 have been studied. Consequences to the, chemistry, microstructure, and electro-magnetic performance of fully processed coated conductor samples were determined. As expected, the added Er increases the relative concentration of atoms that tend to occupy the ldquoYrdquo position in the YBCO lattice, however, Er3+ crystal field effects seen in Raman spectra of the Er-added samples indicate that there is little or no Er substitution on the Ba or Cu2 sites. Some Er3+appears on Y sites in the YBCO; the remainder is found as nano-sized (Er,Y)2O3 precipitates. Current transport measurements as a function of field angle show that Jc increases with H//c but decreases with H//ab as the Er/Y ratio increases towards 0.5. The increased H//c flux pinning is attributed to the Er-rich nano-precipitates; the decreased H//ab flux pinning is attributed to a monotonic reduction in the number of planar defects with increasing Er/Y value.
Keywords :
Raman spectra; barium compounds; critical current density (superconductivity); electron microscopy; flux pinning; high-temperature superconductors; precipitation; superconducting thin films; yttrium compounds; MOD method; RABiTS-based substrates; Raman spectroscopy; YBCO coated conductor; YBa2Cu3O7-x:Er3+; crystal field effects; current transport; electron microscopy; flux pinning; metal organic deposition; microstructure; nanosized precipitates; thin films; trifluoroacetate precursor solution; Chemistry; Conductors; Electron microscopy; Erbium; Flux pinning; Microstructure; Raman scattering; Spectroscopy; Transistors; Yttrium barium copper oxide; Flux pinning; YBCO; metal-organic-deposition (MOD); planar defect; rare earth addition; superconducting filaments and wires;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/TASC.2007.899950
Filename :
4278037
Link To Document :
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