Abstract
Great strides have been made in YBCO coated conductor fabrication using the RABiTS approach in the past few years and critical current densities (J c) of over 3 MA/cm2 on 10 meter long tapes have been achieved. Solution deposition for buffer layer processing has the potential to reduce the process complexity and make the conductor fabrication more cost-effective. In our work, we have demonstrated that several of the standard buffer layers can be replaced by sol-gel processed lanthanum zirconium oxide (LZO) layer. A Jc of about 2 MA/cm2 has been demonstrated on LZO films for pulsed laser deposited YBCO and Jc up to 1.5 MA/cm2 have been demonstrated for MOD-YBCO using a sputtered CeO 2 cap layer on the sol-gel LZO films. Solution processed buffer layers have been found to have rapid growth kinetics which could potentially mean high rate processing of these buffer layers. Using simulated ex-situ YBCO annealing studies, it has been determined that the performance of 80-120 nm thick LZO films is comparable to the standard 3-layer vapor deposited CeO 2/YSZ/Y2O3 buffer stack. Using a 120 nm thick LZO layers on NiW substrates, in collaboration with American Superconductor Corp., all-solution coated conductors with the stacking sequence MOD-YBCO/Solution CeO2/Solution LZO/NiW, critical currents of up to 140 A/cm has been measured. Such high critical currents on an all-solution conductor offers promise for cost-effective scale-up of coated conductor processing.
Original language | English |
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Pages (from-to) | 2974-2976 |
Number of pages | 3 |
Journal | IEEE Transactions on Applied Superconductivity |
Volume | 15 |
Issue number | 2 PART III |
DOIs | |
State | Published - Jun 2005 |
Funding
Manuscript received October 5, 2004. This project was sponsored by the United States Department of Energy, Office of Electric Transmission and Distribution—Superconductivity Program. This research was performed at the Oak Ridge National Laboratory, managed by UT-Battelle, LLC for the U.S. DOE under contract DE-AC05-00OR22725.
Keywords
- All-solution coated conductors
- Lanthanum zirconium oxide buffer layer
- RABiTS
- YBCO