Deposition of BZO nano-sized dots on the substrate surface for the enhanced magnetic properties of superconducting films
Kook-Chae Chung, Jaimoo Yoo, Youngkuk Kim, X.L. Wang, Shi Xue Dou
Abstract
Kook-Chae Chung, Jaimoo Yoo, Youngkuk Kim, X.L. Wang, Shi Xue Dou
Abstract
Nano-sized dots have been formed on the buffered metal substrates using the novel approach of the electro-spray deposition, to modulate the substrate surface and induce the columnar defects in REBCO films grown on it. The precursor solution was synthesized and electro-sprayed out onto the negatively charged substrate surface. Using the electrostatic force, nano-sized dots can be grown and uniformly distributed on the buffered metal substrate. The height of BZO nanodots was observed above the 200nm, which are beneficial to induce the columnar defects onto the BZO as a seed. The density of BZO nanodots was also investigated and was obtained. As the deposition distance of electro-spray was shortened there was increase of density of nanodots. The optimization of process variables in electro-spray deposition are discussed in respect to the superconducting REBCO films processed by the Metal-Organic Deposition with the effective flux pinning properties.
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Nano-sized dots have been formed on the buffered metal substrates using the novel approach of the electro-spray deposition, to modulate the substrate surface and induce the columnar defects in REBCO films grown on it. The precursor solution was synthesized and electro-sprayed out onto the negatively charged substrate surface. Using the electrostatic force, nano-sized dots can be grown and uniformly distributed on the buffered metal substrate. The height of BZO nanodots was observed above the 200nm, which are beneficial to induce the columnar defects onto the BZO as a seed. The density of BZO nanodots was also investigated and was obtained. As the deposition distance of electro-spray was shortened there was increase of density of nanodots. The optimization of process variables in electro-spray deposition are discussed in respect to the superconducting REBCO films processed by the Metal-Organic Deposition with the effective flux pinning properties.
Key concepts: Nanodot, Materials science, Substrate (aquarium), Deposition (geology), Nanotechnology, Metal, Chemical engineering, Superconductivity