Bi_(1.6)Pb_(0.4)Sr_2Ca_2Cu_(3-x)Ti_xO_y体系的超导电性  被引量:1

SUPERCONDUCTIVITY IN Bi_(1.6)Pb_(0.4)Sr_2Ca_2Cu_(3-x)Ti_xO_y SYSTEM

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作  者:卢亚锋[1] 吴晓祖[1] 李青云[1] 辛绵荣[2] 罗长勋 

机构地区:[1]西北有色金属研究院 [2]陕西师范大学

出  处:《低温与超导》1992年第1期11-14,共4页Cryogenics and Superconductivity

摘  要:采用普通固态反应法制备了Bi_(1.6)Pb_(0.4)Sr_2Ca_2Cu_(3-x)Ti_xO_y(X=0.0;0.05;0.1;0.2;0.3)系列超导样品。测量了样品的电阻——温度关系、交流磁化率——温度关系和X射线衍射谱,并进行了样品微区成份分析。作者发现:在X=0.0—0.2范围,该体系的零电阻温度均在100K以上,在X=0.3时,在液氮温区不超导;Ti含量X=0.1时,样品的单相性最好;Ti元素的微区分布不很均匀。我们倾向于认为Ti实际上可能不是替换Cu而是替换了Ca.A series of samples with nominal composition Bi1.6Pb0.4Sr2Ca2Cu3-x TixOy(x = 0.0; 0.05; 0.1; 0.2; 0.3) were prepared by solid-state reaction method. The resistivity us temperature plots, the a. c. susceptibility us. temperature plots and XRD spectrums were measured; micro-area compostions were examined for the samples. It is found that the temperature of zero resistance of the system are above 100K when x = 0.0-0.2; non-superconducting at LN2 temperature when x = 0.3. The single phase degree is highest when x = 0.1. EDAX indicates that the micro-area distribution of the element Ti is not very uniform. We believe that Ti is substantially substituted for Ca instead of Cu.

关 键 词:超导体 电性能 化合物 固态反应 

分 类 号:TM263[一般工业技术—材料科学与工程]

 

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