• 제목/요약/키워드: Cr(Ni) buffer layer

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STRATEGIC RESEARCH AT ORNL FOR THE DEVELOPMENT OF ADVANCED COATED CONDUCTORS: PART - I

  • Christen, D.K.;Cantoni, C.;Feenstra, R.;Aytug, T.;Heatherly, L.;Kowalewski, M.M.;List, F.A.;Goyal, A.;Kroeger, D.M.
    • 한국초전도저온공학회:학술대회논문집
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    • 한국초전도저온공학회 2002년도 학술대회 논문집
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    • pp.339-339
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    • 2002
  • In the RABiTS approach to coated conductor development, successful (both economic and technological) depends on the refinement and optimization of each of three important components: the metal tape substrate, the buffer layer(s), and the HTS layer. Here we will report on the ORNL approach and progress in each of these areas. - Most applications will require metal tapes with low magnetic hysteresis, mechanical strength, and excellent crystalline texture. Some of these requirements are competing. We report on progress in obtaining a good combination of these characteristics on metal alloys of Ni-Cr and Ni-W. - The deposition of appropriate buffer layers is a crucial step. Recently, base research has shown that the presence of a stable sulfur superstructure present on the metal surface is needed for the nucleation and epitaxial growth of vapor-deposited seed buffer layers such as YSZ, CeO$_2$ and SrTiO$_3$. We report on the details and control of this superstructure for nickel tapes, as well as recent results for Cu and Ni-13%Cr. - Processes for deposition of the HTS coating must economically provide large values of the figure-of-merit for conductors, current x length. At ORNL, we have devoted efforts to a precursor/post-annealing approach to YBCO coatings, for which the deposition and reaction steps are separate. We describe motivation for and progress toward developing this approach. - Finally, we address some issues for the implementation of coated conductors in real applications, including the need for texture control and electrical stabilization of the HTS coating.

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$[FeNi/Cu/CoFe(Co)/Cu]_N$ Spin-Valve 다층박막의 자기저항 특성 (Magnetoresistance of $[FeNi/Cu/CoFe(Co)/Cu]_N$ Spin-Valve Multilayers)

  • 김미양;이정미;최규리;오미영;이장로
    • 한국자기학회지
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    • 제9권1호
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    • pp.41-47
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    • 1999
  • DC magnetron sputtering 방법으로 Corning glass 기판 위에 기저층을 Cr과 Ta로 바꾸어가면서 보자력이 다른 Ni81Fe19와 CoFe(Co)를 이용하여 buffer;[FeNi/Cu/CoFe(Co)/Cu]N의 형태로 spin-valve 다층박막을 제작하여 자기저항비의 기저층 종류와 두께, 비자성층 Cu층 두께, 연자성층 NiFe층 두께, 사이층 박막 반복 적층횟수, 기판온도 및 열처리 온도 의존성을 조사하였다. 제작된 시료의 자기저항비는 4탐침법으로 측정하였으며 이들의 구조, 자기적 성질을 조사하기 위해 X-선 회절분석, 시료진동형 자기계(VSM) 분석을 하였다. Cr기저층 두께가 50$\AA$, Cu 두께 50$\AA$, NiFe 및 Co 두께가 각각 20$\AA$이며 사이층 박막 반복 적층횟수 10인 경우에 기판온도가 9$0^{\circ}C$일 때 극대 자기저항비 및 보자력은 각각 7.5% 및 140 Oe를 보이다가 기판온도 상승에 따라 감소하였다. 자기장 감응도(MR slope)는 열처리 온도 15$0^{\circ}C$까지는 0.25%/Oe을 유지하다가 20$0^{\circ}C$에서는 0.03%/Oe로 감소하였으며 열안정성을 결정하는 주요한 요인은 NiFe 자성층의 연자기 특성 저하라는 것을 확인할 수 있었다.

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$CeO_2$의 상전이에 따른 YBCO 박막의 결정성 및 특성의 변화 (Effect of buffer layer on YBCO film deposited on Hastelloy substrate)

  • 김성민;이상렬
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1999년도 추계학술대회 논문집 학회본부 C
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    • pp.873-875
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    • 1999
  • We have fabricated good quality superconducting $YBa_{2}Cu_{3}O_{7-\delta}$ thin films on Hastelloy(Ni-Cr-Mo alloys) metallic substrate with $CeO_2$ and $BaTiO_3$ buffer layers in-situ by pulsed laser deposition in a multi-target processing chamber. We have chosen $CeO_2$ as a buffer layer which has cubic structure of $5.41{\AA}$ lattice parameter and only 0.2% of lattice mismatch with YBCO. $CeO_2$ layer may be helpful for power transmission due to its conducting property. In order to enhance the crystallization of YBCO films on metallic substrates. we deposited $CeO_2$ and $BaTiO_3$ buffer layers at various temperatures. The YBCO superconducting tape fabricated with $BaTiO_3$ and $CeO_2$ buffer layers shows 85K of transition temperature and about $8.4{\times}10^4A/cm^2$ of critical current density at 77K.

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비정질 금속 기판상에 증착된 YBCO 박막의 결정성에 대한 CEO$_2$ 완충막의 효과 (Effect of CeO$_2$ buffer layer on the crystallization of YBCO thin film on Hastelloy substrate)

  • 김성민;이상렬
    • 한국초전도학회:학술대회논문집
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    • 한국초전도학회 1999년도 High Temperature Superconductivity Vol.IX
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    • pp.392-396
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    • 1999
  • Superconducting YBa$_2Cu_3O_{7-{\delta}}$(YBCO) thin films were grown on Hastelloy(Ni-Cr-Mo alloys) with CeO$_2$ buffer layer in-situ by pulsed laser deposition in a multi-target processing chamber. To apply superconducting property on power transmission line, we have deposited YBCO thin film on flexible metallic substrate. However, it is difficult to grow the YBCO films on flexible metallic substrates due to both interdiffusion problem between metallic substrate and superconducting overlayers and non-crystallization of YBCO on amorphous substrate. It is necessary to use a buffer layer to overcome the difficulties. We have chosen CeO$_2$ as a buffer layer which has cubic structure of 5.41 ${\AA}$ lattice parameter and only 0.2% of lattice mismatch with 3.82 ${\AA}$ of a-axis lattice parameter of YBCO on [110] direction of CeO$_2$ In order to enhance the crystallization of YBCO films on metallic substrates, we deposited CeO$_2$ buffer layers with varying temperature and 02 pressure. By XRD, it is observed that dominated film orientation is strongly depending on the deposition temperature of CeO$_2$ layer. The dominated orientation of CeO$_2$ buffer layer is changed from (200) to(111) by increasing the deposition temperature and this transition affects the crystallization of YBCO superconducting film on CeO$_2$ buffered Hastelloy.

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$CeO_2$의 상전이에 따른 YBCO 박막의 결정성 및 특성의 변화 (Change of crystallization and properties of YBCO thin film by phase transition of $CeO_2$)

  • 김성민;이상렬
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1999년도 하계학술대회 논문집 D
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    • pp.1590-1592
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    • 1999
  • We have fabricated good quality superconducting $YBa_2Cu_3O_{7-{\delta}}$ thin films on Hastelloy(Ni-Cr-Mo alloys) with $CeO_2$ buffer layers by in-situ pulsed laser deposition in a multi-target processing chamber. Using one of electrical properties of YBCO superconducting which the resistance approaches to zero dramatically on transition temperature, we have researched to make power transmission line, we have deposited YBCO thin film on flexible metallic substrate. However, it is difficult to make films on flexible metallic substrates due to both interdiffusion problem between metallic substrate and superconducting layer and non-crystallization of YBCO on amorphous substrate. From early research, two ways-using textured metallic substrate and buffer layer-were proposed to overcome theses difficulties. We have chosen $CeO_2$ as a buffer layer which has cubic structure of $5.41{\AA}$ lattice parameter and only 0.2% of lattice mismatch with $3.82{\AA}$ of a-axis lattice parameter of YBCO on (110) direction of $CeO_2$. In order to enhance the crystallization of YBCO films on metallic substrates we deposited $CeO_2$ buffer layers at varying temperature $700^{\circ}C$ to $800^{\circ}C$ and $O_2$ pressure. By X-ray diffraction, we found that each domination of (200) and (111) orientations were strongly relied upon the deposition temperature in $CeO_2$ layer and the change of the domination of orientation affects the crystallization of YBCO upper layer.

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