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Microwave-assisted YBa2Cu3O7 precursors : a fast and reliable method towards chemical precursors for superconducting films

机译:微波辅助YBa2Cu3O7前体:一种快速可靠的超导薄膜化学前体方法

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摘要

Highly stable, pure, and anhydrous organometallic YBa2Cu3O7- (YBCO) precursor solutions were prepared by dissolving commercial YBCO powder in acetone by trifluoroacetic anhydride (TFAA) or a mixture of TFAA with propionic acid for low fluorine precursors. It is shown that compared to conventional oil bath heating reported in literature, the reaction to produce YBCO precursor occurs 72 times faster by microwave heating. More importantly, the formation of byproducts is suppressed, as shown by nuclear magnetic resonance (NMR) and mass spectrometry (MS). This approach allows a highly reproducible preparation of superconducting coatings which is of interest for low-cost manufacturing processes capable of large-scale production of the coated conductors via chemical solution deposition (CSD). This technology requires reliable and stable precursor solutions for continuous deposition. In this work, we obtained YBCO thin films on single-crystal substrates ((100)-LaAlO3) with a high critical current density (J(c)) of 3-4 MA/cm(2) in self-field at 77 K using TFA-based YBCO precursors and J(c) of 5-6 MA/cm(2) using low fluorine YBCO precursors.
机译:高度稳定,纯净,无水的YBa2Cu3O7-(YBCO)前体溶液是通过将商业YBCO粉通过三氟乙酸酐(TFAA)或TFAA与丙酸的混合物溶解在丙酮中制成的,以制备低氟前体。结果表明,与文献报道的常规油浴加热相比,通过微波加热产生YBCO前体的反应发生速度提高了72倍。更重要的是,如核磁共振(NMR)和质谱(MS)所示,抑制了副产物的形成。该方法允许超导涂层的高度可再现的制备,这对于能够通过化学溶液沉积(CSD)大规模生产涂覆导体的低成本制造工艺是有意义的。该技术需要可靠且稳定的前驱体溶液进行连续沉积。在这项工作中,我们获得了在77 K的自电场中具有3-4 MA / cm(2)的高临界电流密度(J(c))的单晶衬底((100)-LaAlO3)上的YBCO薄膜。使用基于TFA的YBCO前体,使用低氟YBCO前体的J(c)为5-6 MA / cm(2)。

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