Addition Effects of MgO‏ on Structure and Physical Properties in Bi-2212 Ceramics

N. Kalkoul, N. Boussouf, Saadia Mahjoub, Hadda Sahraoui, M. Mosbah, S. P. Altintas, N. S. Koc
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Abstract

The effect of magnesium on the microstructural and superconducting characteristics of bulk Bi2Sr2CaCu2MgxOy superconductors with x=0 to 0.05 by solid reaction has been examined in this study. Bi2Sr2CaCu2O8+d is formed as the primary phase, and Bi2Sr2CuO6+d (Bi-2201) is present as the parasitic phase, according to XRD data. In doped samples, the c lattice parameter decreases, indicating that Mg has entered the Bi2Sr2CaCu2O8+d crystallographic unit cell. The grain morphology of the samples containing magnesium has changed significantly, and the lamellar structure typical of high temperature superconductors can be seen in the SEM micrographs. The critical temperatures, Tcoff and Tconset, are raised by the addition of Mg, delimiting the superconductive transition. Tconset's maximum value corresponds to x = 0.05.
MgO的加入对Bi-2212陶瓷结构和物理性能的影响
通过固相反应研究了镁对x=0 ~ 0.05的Bi2Sr2CaCu2MgxOy块状超导体微观结构和超导特性的影响。XRD数据显示,Bi2Sr2CaCu2O8+d为主相,Bi2Sr2CuO6+d (Bi-2201)为寄生相。在掺杂样品中,c晶格参数减小,表明Mg进入了Bi2Sr2CaCu2O8+d晶胞。含镁样品的晶粒形貌发生了明显变化,SEM显微图中可以看到高温超导体典型的片层结构。临界温度Tcoff和Tconset随着Mg的加入而升高,从而确定了超导过渡。Tconset的最大值对应于x = 0.05。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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