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dc.contributor.authorSalama, A.H.vi
dc.contributor.otherYoussef, A.M.vi
dc.contributor.otherRammah, Y.S.vi
dc.contributor.otherEl-Khatib, M.vi
dc.date.accessioned2021-04-15T08:45:33Z-
dc.date.available2021-04-15T08:45:33Z-
dc.date.issued2019-
dc.identifier.issn2522-8307vi
dc.identifier.urihttp://tailieuso.tlu.edu.vn/handle/DHTL/10720-
dc.description.abstractThe ac conductivity was further studied for undoped YBCO and doped YBCO with 0.1 wt.% of nano-metal oxide of Cr2O3, Co3O4, and Mn3O4 samples. For all the studied samples, we found σac is typically specified to the hopping conduction and ac conductivity has a power law behavior in terms of frequency (ω). In general, there are two frequency-dependent regions for all the studied ceramic samples; in the low-frequency region, σac is independent of frequency whereas in the high-frequency region, dispersion occurs. The change in microwave conductivity of the studied samples with frequency (1–5 MHz) is shown in Fig. 5. It is observed that for all samples, the conductivity increases with temperatures and depends on the doped metal oxide. The values of σac at 5 MHz varied from − 0.4 to 1.2 for undoped YBCO, from − 0.98 to − 0.75 for 0.1 wt.%Mn3O4-YBCO sample, from − 0.25 to 0.2 for 0.1 wt.% Co2O3-YBCO sample, and from − 0.4 to 0.6 for 0.1 Wt.% Cr3O4-YBCO sample.vi
dc.description.urihttps://bnrc.springeropen.com/articles/10.1186/s42269-019-0134-6#article-infovi
dc.languageenvi
dc.relation.ispartofseriesBulletin of the National Research Centre, Vol 43:89 (2019)vi
dc.subjectHigh-temperature superconductorvi
dc.subjectDielectric propertiesvi
dc.subjectAc electrical conductivityvi
dc.subjectSuper dielectric materialsvi
dc.titleYBCO as a transition metal oxide ceramic material for energy storagevi
dc.typeBBvi
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