Cayado Pablo, Erbe Manuela, Kauffmann-Weiss Sandra, Jung Alexandra, Hänisch Jens, Holzapfel Bernhard
Karlsruhe Institute of Technology (KIT), Institute for Technical Physics (ITEP) Hermann-von-Helmholtz-Platz 1, 76344 Eggenstein-Leopoldshafen Germany
RSC Adv. 2018 Dec 19;8(74):42398-42404. doi: 10.1039/c8ra09188a.
Y Gd BaCuO -BaHfO (YGBCO-BHO) nanocomposite films containing 12 mol% BHO nanoparticles and different amounts of Gd were prepared by chemical solution deposition following the trifluoroacetic route on SrTiO single crystals in order to study the influence of the rare earth stoichiometry on structure, morphology and superconducting properties of these films. We optimized the growth process for each of several Gd contents of the 220 nm thick YGBCO-BHO films by varying crystallization temperature and oxygen partial pressure. This optimization process led to the conclusion that mixing the rare earths in YGBCO-BHO films leads to wider growth parameter windows compared to YBCO-BHO and GdBCO-BHO films giving larger freedom for selecting the most convenient processing parameters in order to adapt to different substrates or applications which is very important for the industrial production of coated conductors. The optimized films show a continuous increase of with Gd content from ∼90 K for the YBCO-BHO films to ∼94 K for the GdBCO-BHO films. Consequently, an increase of the 77 K self-field with Gd content is observed reaching values > 7 MA cm for Gd contents > 0.5. The transport properties of these films under applied magnetic fields are significantly improved with respect to the pristine YBCO films. All YGBCO-BHO nanocomposite films grew epitaxially with -axis orientation and excellent out-of-plane and in-plane texture. The films are dense with a low amount of pores and only superficial indentations.
通过三氟乙酸路线,采用化学溶液沉积法在SrTiO单晶上制备了含有12摩尔%BHO纳米颗粒和不同含量Gd的Y Gd BaCuO -BaHfO(YGBCO -BHO)纳米复合薄膜,以研究稀土化学计量比对这些薄膜的结构、形貌和超导性能的影响。我们通过改变结晶温度和氧分压,对几种不同Gd含量的220 nm厚YGBCO -BHO薄膜的生长过程进行了优化。该优化过程得出的结论是,与YBCO -BHO和GdBCO -BHO薄膜相比,在YGBCO -BHO薄膜中混合稀土会导致更宽的生长参数窗口,从而在选择最方便的加工参数以适应不同的衬底或应用方面有更大的自由度,这对于涂层导体的工业生产非常重要。优化后的薄膜显示,随着Gd含量的增加,超导转变温度持续升高,从YBCO -BHO薄膜的约90 K升高到GdBCO -BHO薄膜的约94 K。因此,观察到77 K自场临界电流密度随着Gd含量的增加而增加,对于Gd含量>0.5的情况,其值>7 MA/cm²。这些薄膜在施加磁场下的输运性能相对于原始YBCO薄膜有显著改善。所有YGBCO -BHO纳米复合薄膜均外延生长,具有c轴取向以及优异的面外和面内织构。薄膜致密,孔隙数量少,只有表面凹痕。