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http://dx.doi.org/10.9714/psac.2011.13.1.001

A study on $CeO_2$ buffer layer on biaxially textured Ni-3%W substrate deposited by electron beam evaporation with high deposition rate  

Kim, H.J. (한국산업기술대학교 에너지대학원)
Lee, J.B. (한국산업기술대학교 에너지대학원)
Kim, B.J. (한국산업기술대학교 에너지대학원)
Hong, S.K. (한국산업기술대학교 에너지대학원)
Lee, H.J. (한국산업기술대학교 에너지대학원)
Kwon, B.G. (한국산업기술대학교 신소재공학과)
Lee, H.G. (한국산업기술대학교 신소재공학과)
Hong, G.W. (한국산업기술대학교 신소재공학과)
Publication Information
Progress in Superconductivity and Cryogenics / v.13, no.1, 2011 , pp. 1-5 More about this Journal
Abstract
[ $CeO_2$ ]has been widely used for single buffer layer of coated conductor because of superior chemical and structural compatibility with $ReBa_2Cu_3O_{7-{\delta}}$(Re=Y, Nd, Sm, Gd, Dy, Ho, etc.). But, the surface of $CeO_2$ layer showed cracks because of the large difference in thermal expansion coefficient between metal substrate and deposited $CeO_2$ layer, when thickness of $CeO_2$ layer exceeds 100 nm on the biaxially textured Ni-3%W substrate. The deposition rate has been limited to be less than 6 $\AA$/sec in order to get a good epitaxy. In this research, we deposited $CeO_2$ single buffer layers on biaxially textured Ni-3%W substrate with 2-step process such as thin nucleation layer(>10 nm) with low deposition rate(3 $\AA$/sec) and thick homo epitaxial layer(>240 nm) with high deposition rate(30 $\AA$/sec). Effect of deposition temperature on degree of texture development was tested. Thick homo epitaxial $CeO_2$ layer with good texture without crack was obtained at $600^{\circ}C$, which has ${\Delta}{\phi}$ value of $6.2^{\circ}$, ${\Delta}{\omega}$ value of $4.3^{\circ}$ and average surface roughness(Ra) of 7.2 nm within $10{\mu}m{\times}10{\mu}m$ area. This result shows the possibility of preparing advanced Ni substrate with simplified architecture of single $CeO_2$ layer for low cost coated conductor.
Keywords
$CeO_2$ single buffer; 2-step process;
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