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  • Archive: 2010
05 Dec 2010
  • 2010
  • V. 9
  • 3-4
  • (p.358 - 362)

CeO2 single buffer layer for YBCO RABiTS coated conductors

Authors:

Mihalache, Valentina; Stefan, N.; Miroiu, F.

Summary:

Chemical solution deposition techniques are promising approaches to achieve epitaxial oxide thin films at a low cost and easy scaling for YBa2Cu3O7 coated conductors. High quality CeO2 buffer layers were prepared by CSD on Ni RABiTS. The precursor used for the preparation of fluorite CeO2 films was Ce(III) acetate dissolved in propionic acid. YBCO layers were deposited by pulsed laser deposition (PLD) on CeO2 buffers, leading to a simple low cost architecture NiRABiTS/CeO2 CSD/YBCOPLD. YBCO film epitaxially grown on 181-nm- thick CeO2 buffer exhibited a critical temperature Tc = 90.5 K. Some aspects regarding the correlation between the surface morphology of CeO2 film, the microstructure, and the transport parameters of YBCO film deposited on this buffer are discussed.

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BibTeX

@article{ibn_4294,
author = {Mihalache, V. and Stefan, N. and Miroiu, F.M.},
title = {<p>CeO2 single buffer layer for YBCO RABiTS coated conductors</p>},
journal = {Moldavian Journal of the Physical Sciences},
year = {2010},
volume = {9 (3-4)},
pages = {358-362},
month = {Dec},
abstract = {(EN) Chemical solution deposition techniques are promising approaches to achieve epitaxial 

oxide thin films at a low cost and easy scaling for YBa2Cu3O7 coated conductors. High quality CeO2 buffer layers were prepared by CSD on Ni RABiTS. The precursor used for the 
preparation of fluorite CeO2 films was Ce(III) acetate dissolved in propionic acid. YBCO layers were deposited by pulsed laser deposition (PLD) on CeO2 buffers, leading to a simple low 
cost architecture NiRABiTS/CeO2 CSD/YBCOPLD. YBCO film epitaxially grown on 181-nm-
thick CeO2 buffer exhibited a critical temperature Tc = 90.5 K. Some aspects regarding the 
correlation between the surface morphology of CeO2 film, the microstructure, and the transport parameters of YBCO film deposited on this buffer are discussed. },
url = {https://ibn.idsi.md/vizualizare_articol/4294},
}

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preparation of fluorite CeO2 films was Ce(III) acetate dissolved in propionic acid. YBCO layers were deposited by pulsed laser deposition (PLD) on CeO2 buffers, leading to a simple low 
cost architecture NiRABiTS/CeO2 CSD/YBCOPLD. YBCO film epitaxially grown on 181-nm-
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<dc:description xml:lang='en'>Chemical solution deposition techniques are promising approaches to achieve epitaxial 

oxide thin films at a low cost and easy scaling for YBa2Cu3O7 coated conductors. High quality CeO2 buffer layers were prepared by CSD on Ni RABiTS. The precursor used for the 
preparation of fluorite CeO2 films was Ce(III) acetate dissolved in propionic acid. YBCO layers were deposited by pulsed laser deposition (PLD) on CeO2 buffers, leading to a simple low 
cost architecture NiRABiTS/CeO2 CSD/YBCOPLD. YBCO film epitaxially grown on 181-nm-
thick CeO2 buffer exhibited a critical temperature Tc = 90.5 K. Some aspects regarding the 
correlation between the surface morphology of CeO2 film, the microstructure, and the transport parameters of YBCO film deposited on this buffer are discussed. </dc:description>
<dc:source>Moldavian Journal of the Physical Sciences 9 (3-4) 358-362</dc:source>
<dc:title><p>CeO2 single buffer layer for YBCO RABiTS coated conductors</p></dc:title>
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MIHALACHE, Valentina; STEFAN, N.; MIROIU, F.. CeO2 single buffer layer for YBCO RABiTS coated conductors. In: Moldavian Journal of the Physical Sciences. 2010, nr. 3-4(9), pp. 358-362. ISSN 1810-648X.

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