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首页> 外文期刊>Superconductor Science & Technology >Barrier efficiency of sponge-like La2Zr2O7 buffer layers for YBCO-coated conductors
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Barrier efficiency of sponge-like La2Zr2O7 buffer layers for YBCO-coated conductors

机译:海绵状La2Zr2O7缓冲层对YBCO涂层导体的阻隔效率

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Solution derived La2Zr2O7 films have drawn much attention for potential applications as thermal barriers or low-cost buffer layers for coated conductor technology. Annealing and coating parameters strongly affect the microstructure of La2Zr2O7, but different film processing methods can yield similar microstructural features such as nanovoids and nanometer-sized La2Zr 2O7 grains. Nanoporosity is a typical feature found in such films and the implications for the functionality of the films are investigated by a combination of scanning transmission electron microscopy (STEM), electron energy-loss spectroscopy (EELS) and quantitative electron tomography. Chemical solution based La2Zr2O7 films deposited on flexible Ni-5at.%W substrates with a {100}〈001〉 biaxial texture were prepared for an in-depth characterization. A sponge-like structure composed of nanometer-sized voids is revealed by high-angle annular dark-field scanning transmission electron microscopy in combination with electron tomography. A three-dimensional quantification of nanovoids in the La2Zr2O7 film is obtained on a local scale. Mostly non-interconnected highly faceted nanovoids compromise more than one-fifth of the investigated sample volume. The diffusion barrier efficiency of a 170nm thick La2Zr2O7 film is investigated by STEM-EELS, yielding a 1.8 0.2nm oxide layer beyond which no significant nickel diffusion can be detected and intermixing is observed. This is of particular significance for the functionality of YBa2Cu3O 7 - δ coated conductor architectures based on solution derived La2Zr2O7 films as diffusion barriers.
机译:溶液衍生的La2Zr2O7膜作为涂层导体技术的热障或低成本缓冲层在潜在应用中引起了广泛关注。退火和涂层参数强烈影响La2Zr2O7的微观结构,但是不同的薄膜加工方法可以产生类似的微观结构特征,例如纳米空隙和纳米级的La2Zr 2O7晶粒。纳米多孔性是在此类膜中发现的典型特征,并且通过扫描透射电子显微镜(STEM),电子能量损失谱(EELS)和定量电子断层扫描的组合研究了膜的功能性。制备了化学溶液基La2Zr2O7膜,该膜沉积在具有{100} <001>双轴织构的柔性Ni-5at。%W衬底上,用于深入表征。高角度环形暗场扫描透射电子显微镜结合电子断层扫描技术揭示了由纳米大小的空隙组成的海绵状结构。在局部尺度上获得La2Zr2O7膜中纳米空隙的三维定量。大多数情况下,非互连的高度切面的纳米空隙折衷了超过所研究样品体积的五分之一。通过STEM-EELS研究了170nm厚的La2Zr2O7膜的扩散阻挡效率,产生了一个1.8 0.2nm的氧化物层,在该氧化物层之上没有检测到明显的镍扩散并且观察到了混合。这对于基于溶液衍生的La2Zr2O7薄膜作为扩散阻挡层的YBa2Cu3O 7-δ涂层导体结构的功能特别重要。

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