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Titlebook: Oxide Thin Films, Multilayers, and Nanocomposites; Paolo Mele,Tamio Endo,Tetsuo Tsuchiya Book 2015 Springer International Publishing Switz

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Nanostructured Oxide Superconducting Films Prepared by Metal Organic Depositionuctors make it promising for its use in the construction of superconducting magnets for medical and electrical power components. For the applications, its .. in high magnetic fields needs to be improved. In this chapter, we describe how to improve it for REBCO-coated conductors derived from trifluor
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High ,, Superconductivity in Engineered Cuprate Heterostructuresining the CuO. planes, separated by charge reservoir (CR) blocks, the use of heterostructures and superlattices, made by stacking HTS with different magnetic and conductivity properties (metallic, superconducting, insulating), such as YBa.Cu.O., PrBa.Cu.O., and Bi.Sr.Cu.Ca.O., have been extensively
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Design and Development of High-,, Superconducting Train Model Using Bulk Nanocomposite GdBa,Cu,O,ted by a melt-processed GdBa.Cu.O. “Gd-123” superconducting material over a magnetic rail (track). The oval-shaped track was constructed using 189 Nd-Fe-B permanent magnets which were arranged on the iron plate. In addition, the train bodies were constructed with FRP sheets to maintain the temperatu
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Inorganic–Organic Superlattice Thin Films by Atomic/Molecular Layer Depositioncontrollability over the thickness and composition of individual layers. In addition to the increased potential for obtaining novel combinations of properties from the interplay of the inorganic and organic phases, layered hybrid structures offer opportunities for nanostructuring through the creatio
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