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Fe-doped epitaxial YBCO films prepared by chemical solution deposition

机译:化学溶液沉积制备掺铁外延YBCO薄膜

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Abstract YBa~(2)Cu~(3)O~(7- δ ) (YBCO)-coated conductors have wide-ranging potential in large-scale applications such as superconducting maglev trains and superconducting electric cables, but low current carrying capability restrains the practical application of YBCO-coated conductors at high temperatures and high magnetic fields. It is crucial to develop YBCO-coated conductors with high critical current density. In this paper, epitaxial, dense, smooth, and crack-free Fe-doped YBCO films were prepared on a LaAlO~(3) single crystal substrate via a fluorine-free polymer-assisted metal organic deposition method. The effects of the dilute Fe doping on microstructure and superconducting character of YBCO films were investigated. The critical temperature for superconducting of the Fe-doped YBCO films decreases slightly. However, the in-field critical current density of YBCO films improves with dilute Fe doping of amounts less than x ?=?0.005, compared to the pure YBCO film. Therefore, the current carrying capability of YBCO film can improve by doping with appropriate amounts of Fe. This means that dilute Fe doping in YBCO films may be a feasible way to prepare high-performance coated conductors.
机译:摘要YBa〜(2)Cu〜(3)O〜(7-δ)(YBCO)涂层导体在超导磁悬浮列车和超导电缆等大规模应用中具有广泛的潜力,但载流能力低YBCO涂层导体在高温和强磁场中的实际应用。开发具有高临界电流密度的YBCO涂层导体至关重要。本文通过无氟聚合物辅助金属有机沉积法在LaAlO〜(3)单晶衬底上制备了外延,致密,光滑,无裂纹的掺铁YBCO薄膜。研究了稀铁掺杂对YBCO薄膜微结构和超导特性的影响。掺铁YBCO薄膜超导的临界温度略有降低。但是,与纯YBCO膜相比,通过稀释Fe掺杂量小于x≤0.005,YBCO膜的场内临界电流密度提高。因此,通过掺杂适量的Fe,可以提高YBCO膜的载流能力。这意味着在YBCO薄膜中稀释Fe掺杂可能是制备高性能涂层导体的可行方法。

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