Rare earth zirconium oxide buffer layers on metal substrates
Patent
·
OSTI ID:873913
- Knoxville, TN
A laminate article comprises a substrate and a biaxially textured (RE.sub.x A.sub.(1-x)).sub.2 O.sub.2-(x/2) buffer layer over the substrate, wherein 0
- Research Organization:
- Oak Ridge National Laboratory (ORNL), Oak Ridge, TN (United States)
- DOE Contract Number:
- AC05-96OR22464
- Assignee:
- UT-Battelle, LLC (Oak Ridge, TN)
- Patent Number(s):
- US 6270908
- OSTI ID:
- 873913
- Country of Publication:
- United States
- Language:
- English
Pulsed laser deposition of thick YBa 2 Cu 3 O 7−δ films with J c ≥1 MA/cm 2
|
journal | September 1993 |
The Structure of Thin Oxide Films Formed on Nickel Crystals
|
journal | January 1969 |
Properties of YBa2Cu3O7−δ thick films on flexible buffered metallic substrates
|
journal | October 1995 |
High current YBa 2 Cu 3 O 7−δ thick films on flexible nickel substrates with textured buffer layers
|
journal | October 1994 |
High critical current density superconducting tapes by epitaxial deposition of YBa2Cu3Ox thick films on biaxially textured metals
|
journal | September 1996 |
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Related Subjects
rare
earth
zirconium
oxide
buffer
layers
metal
substrates
laminate
article
comprises
substrate
biaxially
textured
1-x
2-
layer
ltoreq
70
selected
consisting
eu
gd
tb
tm
zr
hf
deposited
sol-gel
metal-organic
decomposition
ybco
ceo
included
ysz
nickel
method
forming
disclosed
article comprises
metal substrate
biaxially textured
buffer layer
rare earth
zirconium oxide
buffer layers
textured metal
oxide buffer
metal-organic decomposition
laminate article
metal substrates
/428/505/
earth
zirconium
oxide
buffer
layers
metal
substrates
laminate
article
comprises
substrate
biaxially
textured
1-x
2-
layer
ltoreq
70
selected
consisting
eu
gd
tb
tm
zr
hf
deposited
sol-gel
metal-organic
decomposition
ybco
ceo
included
ysz
nickel
method
forming
disclosed
article comprises
metal substrate
biaxially textured
buffer layer
rare earth
zirconium oxide
buffer layers
textured metal
oxide buffer
metal-organic decomposition
laminate article
metal substrates
/428/505/