Holesinger Terry G, Feldmann Matthew D, Maiorov Boris, Civale Leonardo, Kennison John A, Coulter Yates J, Dowden Paul D, Baca Javier F, Tobash Paul H, Bauer Eric D, Marken Kenneth R
Superconductivity Technology Center, 30 Bikini Atoll Rd, Los Alamos, NM 87545, USA.
Condensed Matter and Magnet Science, Materials Physics and Applications Division, Los Alamos National Laboratory, Los Alamos, NM 87545, USA.
Materials (Basel). 2011 Nov 17;4(11):2042-2056. doi: 10.3390/ma4112042.
Many second phase additions to YBa₂Cu₃O (YBCO) films, in particular those that self-assemble into aligned nanorod and nanoparticle structures, enhance performance in self and applied fields. Of particular interest for additions are Ba-containing perovskites that are compatible with YBCO. In this report, we discuss the addition of Ba₂YRuO₆ to bulk and thick-film YBCO. Sub-micron, randomly oriented particles of this phase were found to form around grain boundaries and within YBCO grains in bulk sintered pellets. Within the limits of EDS, no Ru substitution into the YBCO was observed. Thick YBCO films were grown by pulsed laser deposition from a target consisting of YBa₂Cu₃O with 5 and 2.5 mole percent additions of Ba₂YRuO₆ and Y₂O₃, respectively. Films with enhanced in-field performance contained aligned, self-assembled Ba₂YRuO₆ nanorods and strained Y₂O₃ nanoparticle layers. A 0.9 µm thick film was found to have a self-field critical current density (J) of 5.1 MA/cm² with minimum J(Q, H=1T) of 0.75 MA/cm². Conversely, J characteristics were similar to YBCO films without additions when these secondary phases formed as large, disordered phases within the film. A 2.3 µm thick film with such a distribution of secondary phases was found to have reduced self-field J values of 3.4 MA/cm² at 75.5 K and J(min, Q, 1T) of 0.4 MA/cm².
许多对钇钡铜氧(YBCO)薄膜的第二阶段添加物,特别是那些自组装成排列整齐的纳米棒和纳米颗粒结构的添加物,能提高其在自场和外加场中的性能。特别值得关注的添加物是与YBCO相容的含钡钙钛矿。在本报告中,我们讨论了将Ba₂YRuO₆添加到块状和厚膜YBCO中。在块状烧结球团中,发现该相的亚微米级随机取向颗粒在晶界周围和YBCO晶粒内形成。在能谱仪(EDS)的检测范围内,未观察到Ru替代进入YBCO中。通过脉冲激光沉积从分别添加了5摩尔百分比和2.5摩尔百分比Ba₂YRuO₆及Y₂O₃的钇钡铜氧靶材生长出厚YBCO薄膜。具有增强的场中性能的薄膜包含排列整齐、自组装的Ba₂YRuO₆纳米棒和应变的Y₂O₃纳米颗粒层。发现一个0.9微米厚的薄膜其自场临界电流密度(J)为5.1 MA/cm²,最小J(Q,H = 1T)为0.75 MA/cm²。相反,当这些第二相在薄膜内形成为大的无序相时,其J特性与未添加的YBCO薄膜相似。发现一个具有这种第二相分布的2.3微米厚薄膜在75.5 K时自场J值降低至3.4 MA/cm²,J(min,Q,1T)为0.4 MA/cm²。