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首页> 外文期刊>Superconductor Science & Technology >Epitaxial YBa2Cu3O7-x nanocomposite films and coated conductors from BaMO3 (M = Zr, Hf) colloidal solutions
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Epitaxial YBa2Cu3O7-x nanocomposite films and coated conductors from BaMO3 (M = Zr, Hf) colloidal solutions

机译:外延YBA2Cu3O7-X纳米复合膜和来自BamO3(M = Zr,HF)胶体溶液的涂覆导体

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摘要

Superconducting nanocomposites are the best material choice to address the performance required in power applications and magnets working under high magnetic fields. However, it is still challenging to sort out how to achieve the highest superconducting performance using attractive and competitive manufacturing processes. Colloidal solutions have been recently developed as a novel and very promising low cost route to manufacture nanocomposite coated conductors. Well dispersed and stabilized preformance nanoparticle solutions are first prepared with high concentrations and then mixed with the YBa2Cu3O7 metalorganic precursor solutions to generate colloidal solutions to grow the nanocomposite films Here we demonstrate, for the first time, that non-reactive BaZrO3 and BaHfO3 perovskite preformed nanoparticles are suitable for growing high quality thin and thick films, and coated conductors with a homogeneous distribution and controlled particle size using this fabrication method. Additionally, we extend the nanoparticle content of the nanocomposites up to 20%-25% mol without any degradation of the superconducting properties. Thick nanocomposite films, up to 0.8 mu m, have been prepared with a single deposition of low-fluorine solutions using an ink jet printing dispenser and we demonstrate that the preformed nanoparticles display only a very limited coarsening during the growth process and so high critical current densities J(c)(B) under high magnetic fields. These films show the highest critical currents achieved so far based on the colloidal solution approach, I-c = 220 A/cm-w at 77 K and self-field, and they still have a high potential for further increase in the film thickness. Finally, we also show that nanocomposite YBa2Cu3O7-BaZrO3 coated conductors based on an alternating beam assisted deposited YSZ buffer layer on stainless steel metallic substrates can be developed based on these novel colloidal solutions. Non-reactive preformed oxide perovskite nanoparticles
机译:超导纳米复合材料是解决在高磁场下工作的电力应用和磁体中所需的性能的最佳材料选择。然而,解决如何使用有吸引力和竞争性制造过程实现最高超导性能的仍然具有挑战性。最近被开发为制造纳米复合材料涂覆导体的新颖和非常有前途的低成本途径的胶体溶液。首先用高浓度制备良好的分散和稳定的预制纳米粒子溶液,然后与YBA2Cu3O7金属有机前体溶液混合以产生胶体溶液,以便首次在这里生长纳米复合膜,首次向非反应性Bazro3和Bahfo3钙钛矿预成型纳米颗粒进行展示适用于使用这种制造方法的均匀分布和受控粒度的高质量薄薄膜和涂覆的导体产生高质量的薄膜和涂覆的导体。另外,我们将纳米复合材料的纳米颗粒含量延伸至20%-25%摩尔,而无需任何劣化性质的劣化。厚纳米复合膜,高达0.8μm,用喷墨打印分配器单一沉积低氟溶液,并且我们证明了预成型的纳米颗粒在生长过程中仅显示了在生长过程中非常有限的粗化,因此很高的临界电流高磁场下的密度J(c)(b)。这些薄膜基于胶体溶液方法,I-C = 220a / cm-W处于77k和自场的最高临界电流,并且它们仍然具有高电位,以进一步增加膜厚度。最后,我们还表明,基于这些新的胶体溶液,可以开发基于不锈钢金属基板上的交替光束辅助YSZ缓冲层的纳米复合YBA2Cu3O7-Bazro3涂覆的导体。非反应性预制氧化物钙钛矿纳米粒子

著录项

  • 来源
    《Superconductor Science & Technology 》 |2018年第4期| 共16页
  • 作者单位

    ICMAB CSIC Inst Ciencia Mat Barcelona Campus UA E-08193 Bellaterra Catalonia Spain;

    ICMAB CSIC Inst Ciencia Mat Barcelona Campus UA E-08193 Bellaterra Catalonia Spain;

    ICMAB CSIC Inst Ciencia Mat Barcelona Campus UA E-08193 Bellaterra Catalonia Spain;

    ICMAB CSIC Inst Ciencia Mat Barcelona Campus UA E-08193 Bellaterra Catalonia Spain;

    ICMAB CSIC Inst Ciencia Mat Barcelona Campus UA E-08193 Bellaterra Catalonia Spain;

    Univ Autonoma Barcelona Fac Ciencies Dept Quim Cerdanyola Del Valles Catalonia Spain;

    ICMAB CSIC Inst Ciencia Mat Barcelona Campus UA E-08193 Bellaterra Catalonia Spain;

    ICMAB CSIC Inst Ciencia Mat Barcelona Campus UA E-08193 Bellaterra Catalonia Spain;

    ICMAB CSIC Inst Ciencia Mat Barcelona Campus UA E-08193 Bellaterra Catalonia Spain;

    ICMAB CSIC Inst Ciencia Mat Barcelona Campus UA E-08193 Bellaterra Catalonia Spain;

    ICMAB CSIC Inst Ciencia Mat Barcelona Campus UA E-08193 Bellaterra Catalonia Spain;

    ICMAB CSIC Inst Ciencia Mat Barcelona Campus UA E-08193 Bellaterra Catalonia Spain;

    ICMAB CSIC Inst Ciencia Mat Barcelona Campus UA E-08193 Bellaterra Catalonia Spain;

    Univ Autonoma Barcelona Fac Ciencies Dept Quim Cerdanyola Del Valles Catalonia Spain;

    Bruker HTS GmbH D-63755 Alzenau Germany;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 超导电性 ; 导电材料及其制品 ;
  • 关键词

    nanocomposite; BaZrO3; BaHfO3; vortex pinning; colloidal film;

    机译:纳米复合材料;bazro3;bahfo3;涡旋钉;胶体薄膜;

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