首页> 外文OA文献 >Solution-derived YBa $_{2}$ Cu $_{3}$ O $_{7−δ}$ (YBCO) superconducting films with BaZrO $_{3}$ (BZO) nanodots based on reverse micelle stabilized nanoparticles
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Solution-derived YBa $_{2}$ Cu $_{3}$ O $_{7−δ}$ (YBCO) superconducting films with BaZrO $_{3}$ (BZO) nanodots based on reverse micelle stabilized nanoparticles

机译:基于反胶束稳定纳米粒子的具有BaZrO $ _ {3} $(BZO)纳米点的溶液衍生YBa $ _ {2} $ Cu $ _ {{3} $ O $ _ {7−δ} $(YBCO)超导膜

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摘要

Superconducting YBa2Cu3O7-delta (YBCO) films with artificial BaZrO3 (BZO) nanodots were prepared using a chemical solution deposition method involving hybrid solutions composed of trifluoroacetate-based YBCO precursors and reverse micelle stabilized BZO nanoparticle dispersions. Microemulsion-mediated synthesis was used to obtain nano-sized (similar to 12 nm) and mono-dispersed BZO nanoparticles that preserve their features once introduced into the YBCO solution, as revealed by dynamic light scattering. Phase pure, epitaxial YBCO films with randomly oriented BZO nanodots distributed over their whole microstructure were grown from the hybrid solutions on (100) LaAlO3 substrates. The morphology of the YBCO-BZO nanocomposite films was strongly influenced by the amount of nanoparticles incorporated into the system, with contents ranging from 5 to 40 mol%. Scanning electron microscopy showed a high density of isolated second-phase defects consisting of BZO nanodots in the nanocomposite film with 10 mol% of BZO. Furthermore, a direct observation and quantitative analysis of lattice defects in the form of interfacial edge dislocations directly induced by the BZO nanodots was evidenced by transmission electron microscopy. The superconducting properties (77 K) of the YBCO films improved considerably by the presence of such nanodots, which seem to enhance the morphology of the sample and therefore the intergranular critical properties. The incorporation of preformed second-phase defects (here, BZO) during the growth of the superconducting phase is the main innovation of this novel approach for the all-solution based low-cost fabrication of long-length coated conductors.
机译:使用化学溶液沉积方法制备具有人工BaZrO3(BZO)纳米点的超导YBa2Cu3O7-δ(YBCO)膜,该方法包括基于三氟乙酸盐的YBCO前体和反胶束稳定的BZO纳米颗粒分散体组成的混合溶液。微乳液介导的合成用于获得纳米级(类似于12 nm)和单分散的BZO纳米颗粒,一旦被引入YBCO溶液中,就可以保留其特征,如动态光散射所揭示的那样。从混合溶液在(100)LaAlO3衬底上生长具有纯取向的BZO纳米点分布在其整个微观结构上的纯相外延YBCO相薄膜。 YBCO-BZO纳米复合薄膜的形貌受掺入系统的纳米粒子数量的影响很大,其含量范围为5至40 mol%。扫描电子显微镜显示高密度的分离的第二相缺陷,其由具有10mol%的BZO的纳米复合膜中的BZO纳米点组成。此外,透射电镜证实了直接观察和定量分析了由BZO纳米点直接引起的界面边缘位错形式的晶格缺陷。 YBCO薄膜的超导性能(77 K)由于存在此类纳米点而得到了显着改善,这些纳米点似乎增强了样品的形态,从而增强了晶间临界性能。在超导相的生长过程中结合预先形成的第二相缺陷(此处为BZO)是这种新颖方法的主要创新,用于基于全溶液的低成本制造长涂层导体。

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