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      Probing localized strain in solution-derived \(\mathrm{YB}{\mathrm{a}}_{2}\mathrm{C}{\mathrm{u}}_{3}{\mathrm{O}}_{7-\delta }\) nanocomposite thin films

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          Structural properties of oxygen-deficientYBa2Cu3O7−δ

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            Oxygen ordering and the orthorhombic-to-tetragonal phase transition inYBa2Cu3O7−x

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              High-Tc superconducting materials for electric power applications.

              Large-scale superconducting electric devices for power industry depend critically on wires with high critical current densities at temperatures where cryogenic losses are tolerable. This restricts choice to two high-temperature cuprate superconductors, (Bi,Pb)2Sr2Ca2Cu3Ox and YBa2Cu3Ox, and possibly to MgB2, recently discovered to superconduct at 39 K. Crystal structure and material anisotropy place fundamental restrictions on their properties, especially in polycrystalline form. So far, power applications have followed a largely empirical, twin-track approach of conductor development and construction of prototype devices. The feasibility of superconducting power cables, magnetic energy-storage devices, transformers, fault current limiters and motors, largely using (Bi,Pb)2Sr2Ca2Cu3Ox conductor, is proven. Widespread applications now depend significantly on cost-effective resolution of fundamental materials and fabrication issues, which control the production of low-cost, high-performance conductors of these remarkable compounds.
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                Author and article information

                Journal
                PRMHAR
                Physical Review Materials
                Phys. Rev. Materials
                American Physical Society (APS)
                2475-9953
                July 2017
                July 12 2017
                : 1
                : 2
                Article
                10.1103/PhysRevMaterials.1.024801
                2f522e3f-3202-4296-9065-9a23b4a1d5f7
                © 2017

                https://creativecommons.org/licenses/by/4.0/

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