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Published in: Journal of Materials Science: Materials in Electronics 5/2013

01-05-2013

Superconducting properties and growth mechanism of layered structure in MgB2 bulks with Cu/Y2O3 co-doping

Authors: Qi Cai, Yongchang Liu, Zongqing Ma, Liming Yu

Published in: Journal of Materials Science: Materials in Electronics | Issue 5/2013

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Abstract

Bulk MgB2 samples containing Cu and Y2O3 have been prepared by conventional solid state reaction at 850 °C, and the structure and superconducting properties have been investigated. Differing from the structure in previous studies, a type of novel, layered structure was obtained in Cu/Y2O3-doped MgB2 sample. Furthermore, the critical current density (J c) at high field (>4 T) was improved compared to undoped, and Cu-doped MgB2 samples. After analyzing the phase composition, microstructure, and sintering process, it was found that Y2O3 and Cu are independent in providing effective pinning centers, and YB4 impurity should be responsible for the enhancement of J c as well as the increased irreversible magnetic field. However, J c at low field was slightly worsened, but still maintaining 105 A cm−2 at 0 T, since the intercrystalline connectivity was not seriously deteriorated. Finally, a possible growth model was put forward to describe the formation sequences of the layered structure. It was supposed that the formation of steps at low temperature originated from the coherent relationship between Mg and MgB2, while the steps formed at high temperature were related to the pinning effect of secondary phase during the migration of grain boundary.

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Metadata
Title
Superconducting properties and growth mechanism of layered structure in MgB2 bulks with Cu/Y2O3 co-doping
Authors
Qi Cai
Yongchang Liu
Zongqing Ma
Liming Yu
Publication date
01-05-2013
Publisher
Springer US
Published in
Journal of Materials Science: Materials in Electronics / Issue 5/2013
Print ISSN: 0957-4522
Electronic ISSN: 1573-482X
DOI
https://doi.org/10.1007/s10854-012-0951-y

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