期刊
JOURNAL OF ALLOYS AND COMPOUNDS
卷 883, 期 -, 页码 -出版社
ELSEVIER SCIENCE SA
DOI: 10.1016/j.jallcom.2021.160840
关键词
YBCO superconductor; NaNbO3 Nanorod; Flux pinning; Critical current density
资金
- Ministry of Electronics and Information Technology (MeitY)
- Department of Science and Technology, India through the NNetRA project [RP03530, MI01756]
- Council of Scientific and Industrial Research (CSIR) [09/086 (1273) /2017-EMRI]
The addition of NaNbO3 nanorods to YBCO superconductor composites can enhance critical current and pinning force, attributed to the creation of artificial pinning centers by NaNbO3 nanorods. The maximum enhancement in critical current and pinning force is achieved with the addition of 0.5wt% nanorods.
In this work, sodium niobate (NaNbO3) nanorods (NR) - YBCO superconductor composites with different wt % (0-2%) of NaNbO3 were prepared via a two-step process of hydrothermal and solid-state reaction, and its structural, electrical, and magnetic characterizations were carried out. XRD studies revealed that the orthorhombicity of YBCO is preserved in all nanocomposite samples. The superconducting transition temperature decreases from 92 K to 90.5 K when the addition of NaNbO3 was increased to 2 wt%. Magnetization studies revealed a significant increase of critical current (J(c)) and pinning force (F-p) in the NaNbO3 (NR) added YBCO sample which has been attributed to the creation of artificial pinning centers due to the presence of NaNbO3 NR. For the 0.5 wt% nanorods added sample, the enhancement in J(c) and F-p was maximum. Temperature and field dependence of J(c) were carried out to probe the nature of pinning in the nanocomposite superconductors. (C) 2021 Elsevier B.V. All rights reserved.
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