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Effect of Different Calcination Process and Gd2O3 as Impurities on the Different Phases of Bi-Based Superconductor

机译:煅烧工艺和杂质Gd2O3对Bi基超导体不同相的影响

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In this research two samples of a nominal composition Bi1.6Pb0.4Sr2Ca2Cu3Ox were prepared by the solid state reaction method, using two different routes. Codes A and B are used to refer to the two samples. In preparing sample A, the standard method for calcination was used, while for sample B, the SrCO3 and CaCO3 were calcinated at 1100℃ for 3 h. Calcination was done separately on SrCO3 and CaCO3 in order to eliminate CO2. Then after mixing and grinding, the powder mixtures of Bi2O3, CuO, PbO, SrO and CaO were calcinated at 840℃ for 70 h. Also, the samples (samples C) of nominal compositions Bi1.6Pb0.4Sr2Ca2Cu3Ox+ % x Gd2O3 (% x = 0, 3, 5, 7 and 9) have been synthesized by this method. The XRD and SEM results show that addition of Gd2O3 helps to increase the amount of Bi-2212 phase, while alternative calcination process improves the formation of the Bi-2223 phase. In addition, the AC susceptibility measurements confirm the XRD and SEM results.
机译:在这项研究中,采用两种不同的路线,通过固态反应方法制备了标称成分为Bi1.6Pb0.4Sr2Ca2Cu3Ox的两个样品。代码A和B用于引用这两个样本。在制备样品A中,使用标准的煅烧方法,而对于样品B,将SrCO3和CaCO3在1100℃下煅烧3 h。为了消除CO 2,分别在SrCO 3和CaCO 3上进行煅烧。然后混合研磨后,将Bi2O3,CuO,PbO,SrO和CaO的粉末混合物在840℃下煅烧70小时。同样,通过该方法合成了标称组成Bi1.6Pb0.4Sr2Ca2Cu3Ox + %x Gd2O3(%x = 0、3、5、7和9)的样品(样品C)。 XRD和SEM结果表明,添加Gd2O3有助于增加Bi-2212相的含量,而另外的煅烧工艺可以改善Bi-2223相的形成。此外,交流磁化率测量结果证实了XRD和SEM结果。

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