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Superconducting HfO2-YBa2Cu3O7?δ Nanocomposite Films Deposited Using Ink-Jet Printing of Colloidal Solutions

机译:超导HFO2-YBA2Cu3O7?δ纳米复合膜沉积使用胶体溶液的喷墨印刷沉积

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To reduce the fabrication costs while maximizing the superconducting and pinning properties of YBa2Cu3O7?δ (YBCO) nanocomposite films, the drop-on-demand ink-jet printing technique was used to deposit colloidal YBCO inks onto LaAlO3 substrates. These inks containing preformed HfO2 nanocrystals were carefully adjusted, prior to the jettability, as the droplet formation depends on the rheological properties of the inks themselves. After carefully adjusting printing parameters, 450-nm thick pristine YBCO films with a self-field critical current density (Jc) of 2.7 MA cm?2 at 77 K and 500-nm thick HfO2-YBCO nanocomposite films with a self-field Jc of 3.1 MA·cm?2 at 77 K were achieved. The final HfO2-YBCO nanocomposite films contained dispersed BaHfO3 particles in a YBCO matrix due to the Ba2 reactivity with the HfO2 nanocrystals. These nanocomposite films presented a more gradual decrease of Jc with the increased magnetic field. These nanocomposite films also showed higher pinning force densities than the pristine films. This pinning enhancement was related to the favorable size and distribution of the BaHfO3 particles in the YBCO matrix.
机译:为了降低制造成本,同时最大化YBA2Cu3O7?δ(YBCO)纳米复合膜的超导和钉扎特性,用于将滴落式喷墨印刷技术用于将胶体YBCO油墨沉积在Laalo3基材上。在喷涂性之前,在喷涂性之前仔细调整含有预先形成的HFO2纳米晶体的油墨,因为液滴形成取决于墨水本身的流变性质。在仔细调整印刷参数之后,使用自场临界电流密度(JC)的450nm厚的原始YBCO薄膜在77k和500nm厚的HFO2-YBCO纳米复合膜,具有自场JC的自场临界电流密度(JC)。达到3.1 ma·cm?2在77 k下实现。由于BA2与HFO2纳米晶体反应性,最终HFO2-YBCO纳米复合膜在YBCO基质中含有分散的BaHFO 3颗粒。这些纳米复合膜呈现了JC与增加的磁场更逐渐减小。这些纳米复合膜还显示出比原始膜更高的钉扎力密度。这种固定增强与YBCO基质中的BAHFO3颗粒的良好尺寸和分布有关。

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