Effect of Co3O4 Nanoparticles Addition on (Bi,Pb)-2223 Superconductor
Commenced in January 2007
Frequency: Monthly
Edition: International
Paper Count: 32805
Effect of Co3O4 Nanoparticles Addition on (Bi,Pb)-2223 Superconductor

Authors: A. N. Jannah, R. Abd-Shukor, H. Abdullah

Abstract:

The effect of nano Co3O4 addition on the superconducting properties of (Bi, Pb)-2223 system was studied. The samples were prepared by the acetate coprecipitation method. The Co3O4 with different sizes (10-30 nm and 30-50 nm) from x=0.00 to 0.05 was added to Bi1.6Pb0.4Sr2Ca2Cu3Oy(Co3O4)x. Phase analysis by XRD method, microstructural examination by SEM and dc electrical resistivity by four point probe method were done to characterize the samples. The X-ray diffraction patterns of all the samples indicated the majority Bi-2223 phase along with minor Bi-2212 and Bi-2201 phases. The volume fraction was estimated from the intensities of Bi- 2223, Bi-2212 and Bi-2201 phase. The sample with x=0.01 wt% of the added Co3O4 (10-30 nm size) showed the highest volume fraction of Bi-2223 phase (72%) and the highest superconducting transition temperature, Tc (~102 K). The non-added sample showed the highest Tc(~103 K) compared to added samples with nano Co3O4 (30-50 nm size) added samples. Both the onset critical temperature Tc(onset) and zero electrical resistivity temperature Tc(R=0) were in the range of 103-115 ±1K and 91-103 ±1K respectively for samples with added Co3O4 (10-30 nm and 30-50 nm).

Keywords: Bi(Pb)-Sr-Ca-Cu-O superconductor, coprecipitation, nano Co3O4, transition temperature TC.

Digital Object Identifier (DOI): doi.org/10.5281/zenodo.1076688

Procedia APA BibTeX Chicago EndNote Harvard JSON MLA RIS XML ISO 690 PDF Downloads 1995

References:


[1] H. Abbasi, J. Taghipour, H. Sedghi, "Superconducting and transport properties of (Bi-Pb)-Sr-Ca-Cu-O with Cr2O3 additions," Journal of Alloys and Compounds, 494, 2010, pp. 305-308.
[2] I. H. Gul, F. Ami, A. Z Abbasi, M. Anis-ur-Rehman, A. Maqsood, "Effect of Ag2CO3 addition on the morphology and physical properties of Bi-based (2223) high-Tc superconductors," Physica C, 449, 2006, pp. 139-147.
[3] H. Abbasi, J. Taghipour, H. Sedghi, "The effect of MgCO3 addition on the superconducting properties of Bi2223 superconductors," Journal of Alloys and Compounds, 482, 2009, pp. 552-555.
[4] S. E. Mousavi Ghahfarokhi, M. Zargar Shoushtari, "Structural and physical properties of Cd-doped Bi1.64Pb0.36Sr2Ca2−xCdxCu3Oy superconductor," Physica B, 405, 2010, pp. 4643-4649.
[5] B. A. Albiss, I. M. Obaidat, M. Gharaibeh, H. Ghamlouche, S. M. Obeidat, "Impact of addition of magnetic nanoparticles on vortex pinning and microstructure properties of Bi-Sr-Ca-Cu-O superconductor," Solid State Communications, 150, 2010, pp. 1542- 1547.
[6] H├╝seyin Sözeri, Nader Ghazanfari, H├╝sn├╝ ├ûzkan, Ahmet Kilic, "Enhancement in the high- Tc phase of BSCCO superconductors by Nb addition," Supercond. Sci. Tech, 2007, 20, pp. 522-528.
[7] V. Mihalache, G. Aldica, S. Popa, F. Lifei, D. Miu, "Effect of Li2CO3 addition on the Bi1.7Pb0.4Sr1.5Ca2.5Cu3.6Ox superconducting system," Materials Letters, 58, 2004, pp. 3040-3044.
[8] A. Biju, K. Vinod, R. P. Aloysius, U. Syamaprasad "Improved superconducting properties by La addition in (Bi,Pb)-2212 bulk superconductor," Journal of Alloys and Compounds,Vol 43, 1-2, 2007, pp. 49-55.
[9] R. P. Aloysius, P. Guruswamy, U. Syamaprasad "Enhanced critical current density in (Bi,Pb)-2223 superconductor by Nd addition in low percentages," Physica C: Superconductivity, 426-431, 2005, pp. 556- 562.
[10] V. G. Prabitha, A.. Biju, R. G.. Abhilash Kumar, P. M.. Sarun, R. P. Aloysius U. Syamaprasad, "Effect of Sm addition on (Bi,Pb)-2212 superconductor," Materials Letters, Vol 433, Issue 1-2, 2005, pp. 28-36.