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Ex-situ epitaxial yttrium barium copper oxide films: Precursor conversion and film characterization.

机译:异位外延钇钡铜氧化物薄膜:前体转化和薄膜表征。

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摘要

BaF2-based precursors were deposited on various substrates by electron beam co-evaporation and trifluoroactates-involved metal organic deposition (TFA-MOD) for fabricating biaxially-textured YBa2 Cu3O7-delta (YBCO) films. A low-pressure processing system was established for the conversion of the precursors. High critical current densities near 4 MA/cm2 (77 K, self field) were obtained for the first time through the ex-situ conversion under the total pressures as low as 10 mTorr. The viability of the low-pressure conversion may enable a large-scale, cost-effective batch production of YBCO-based high temperature superconductor (HTS) wires.; The effects of the processing conditions on the film structure and properties were studied. It was found that the structure of YBCO films is very sensitive to the processing parameters. The optimal processing window for making high Jc films from the as-deposited e-beam co-evaporated precursors was relatively small and the conversion rate was limited to less than 1 A/sec.; The e-beam co-evaporated precursor and the TFA-MOD precursor were compared in terms of the precursor characteristics and the conversion behavior. It was found that the precursor crystallanity and chemistry have strong effect on conversion. It was demonstrated that an intermediate heat treatment could drastically change the precursor conversion. The modified e-beam co-evaporated precursor can be converted at an effective conversion rate of 12 A/sec and in a much wider processing window. The result suggested that the precursor structure and chemistry can be further tailored to facilitate fast conversion and high Jc film fabrication.; Conversion of fluorine-free precursors made by pulsed laser deposition (PLD) from an YBCO target was investigated to probe an alternative ex-situ route for fabricating biaxially-textured YBCO films. Epitaxial YBCO film with critical temperature Tc of 88 K and critical current density Jc (77 K, self field) of ∼ 1 MA/cm2 was obtained. Nearly perfect c-axis YBCO structure exposed by scanning transmission electron microscopy (STEM) suggested that oxygen deficiency and a lack of defects for flux pinning were the main reasons for the relatively lower Tc and Jc. Therefore, appropriate defects need to be introduced into the films.
机译:BaF2基前驱物通过电子束共蒸发和涉及三氟酸酯的金属有机沉积(TFA-MOD)沉积在各种基板上,以制造双轴织构的YBa2Cu3O7-δ(YBCO)膜。建立了用于前体转化的低压处理系统。在低至10 mTorr的总压力下,通过异位转换首次获得了接近4 MA / cm2(77 K,自电场)的高临界电流密度。低压转化的可行性可以实现基于YBCO的高温超导体(HTS)线的大规模,低成本的批量生产。研究了加工条件对薄膜结构和性能的影响。发现YBCO膜的结构对加工参数非常敏感。从沉积的电子束共蒸发的前体制备高Jc膜的最佳工艺窗口相对较小,并且转化率限制为小于1 A / sec。比较了电子束共蒸发前驱物和TFA-MOD前驱物的前驱物特性和转化行为。发现前体结晶度和化学性质对转化率具有强烈影响。已经证明,中间热处理可以大大改变前体转化率。改性的电子束共蒸发前体可以以12 A / sec的有效转化率和更宽的加工范围进行转化。结果表明,可以进一步调整前体的结构和化学性质,以促进快速转化和高Jc膜的制造。研究了通过脉冲激光沉积(PLD)从YBCO靶材制备的无氟前体的转化过程,以探究制造双轴织构YBCO膜的另一种非原位方法。获得具有88 K的临界温度Tc和〜1 MA / cm2的临界电流密度Jc(77 K,自电场)的外延YBCO膜。扫描透射电子显微镜(STEM)暴露出的近乎完美的c轴YBCO结构表明,氧缺乏和通量钉扎缺陷的缺乏是Tc和Jc相对较低的主要原因。因此,需要在膜中引入适当的缺陷。

著录项

  • 作者

    Zhang, Yifei.;

  • 作者单位

    The University of Tennessee.;

  • 授予单位 The University of Tennessee.;
  • 学科 Physics Condensed Matter.; Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 165 p.
  • 总页数 165
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

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