Açık Akademik Arşiv Sistemi

Decrement in metastability with Zr nanoparticles inserted in Bi-2223 superconducting system and working principle of hybridization mechanism

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dc.contributor.authors Saritekin, NK; Pakdil, M; Yildirim, G; Oz, M; Turgay, T;
dc.date.accessioned 2020-01-14T12:24:40Z
dc.date.available 2020-01-14T12:24:40Z
dc.date.issued 2016
dc.identifier.citation Saritekin, NK; Pakdil, M; Yildirim, G; Oz, M; Turgay, T; (2016). Decrement in metastability with Zr nanoparticles inserted in Bi-2223 superconducting system and working principle of hybridization mechanism. JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS, 27, 965-956
dc.identifier.issn 0957-4522
dc.identifier.uri https://hdl.handle.net/20.500.12619/3833
dc.description.abstract This exhaustive study experimentally deals with the role of Zr foreign impurities on the electrical, superconducting and flux pinning properties of the bulk Bi-2223 superconducting compounds by the typical experimental characterization methods such as dc resistivity (rho-T), transport critical current density (J (c) ) and powder X-ray diffraction (XRD) surveys. All the experimental findings show that the curial characteristics, being in charge of the varied attractive and feasible applications, retrograde significantly with the enhancement of the Zr nanoparticles in the Bi-2223 superconducting system due to the presence of two trap levels for mobile holes. This leads to the degradation of the metastability of the superconducting materials. In more detail, based on the dc resistivity and transport critical current density measurements, the Zr additives give rise to the localization problem as a consequence of the change in the dynamics of electron-electron interaction. Thus, the room state conductivity, , and J (c) values retrograde significantly. Similarly, the Zr foreign impurities embedded in the Bi-2223 crystal lattice make the artificial random defects, dislocations and grain boundary weak-interactions in the consecutively stacked layers enhance immediately, and the superconducting Cu-O-2 layers distort especially. Moreover, the XRD investigations including the evidences about the decrement/increment in the c-axis/a-axis length verify the regression of the superconducting properties with the Zr dopant. The main differentiation of the lattice constant parameters stems from aliovalent substitutions (replacement of the divalent Cu by the tetravalent Zr impurties) along with the crystal structure. In other words, the reduction of the electronegativity leads to decrease the mobile hole concentration in the Cu-O-2 consecutively stacked layers. Furthermore, all the decrement parameters are theoretically favored by hybridization mechanism.
dc.description.uri https://doi.org/10.1007/s10854-015-3839-9
dc.language English
dc.publisher SPRINGER
dc.subject Physics
dc.title Decrement in metastability with Zr nanoparticles inserted in Bi-2223 superconducting system and working principle of hybridization mechanism
dc.type Article
dc.identifier.volume 27
dc.identifier.startpage 956
dc.identifier.endpage 965
dc.contributor.department Sakarya Üniversitesi/Sanat Tasarım Ve Mimarlık Fakültesi/Mimarlık Bölümü
dc.contributor.saüauthor Turğay, Tahsin
dc.relation.journal JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS
dc.identifier.wos WOS:000368054600125
dc.identifier.doi 10.1007/s10854-015-3839-9
dc.identifier.eissn 1573-482X
dc.contributor.author N. K. Saritekin
dc.contributor.author M. Pakdil
dc.contributor.author G. Yildirim
dc.contributor.author M. Oz
dc.contributor.author T. Turgay
dc.contributor.author Turğay, Tahsin


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