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Oxygen mobility in Bi:Sr:Ca:Cu:O ceramic measured using anelastic relaxation methods

机译:Bi:Sr:Ca:Cu:o使用Anelastic弛豫方法测量的氧气流动性

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Since the discovery of YBaCuO, experiments have shown that its superconducting properties are strongly affected by the oxygen content. More recently, anelastic relaxation measurements in La{sub}2CuO{sub}(4+δ), showed that the decrease in the oxygen content can be related to two events. One is the decrease in mobility between two adjacent CuO planes, and the other is the increase in the number of tilting patterns of the CuO{sub}6 octahedra. In the case of the bismuth-based ceramic, it is known that the oxygen content, within some limits, does not affect its superconducting properties. In order to evaluate the mobility and the effect of the oxygen content on this material we have prepared BSCCO ceramic and tested regarding its internal friction and electrical resistivity as a function of the temperature while the oxygen content was being reduced by a sequence of vacuum annelaing at 620 K. The samples were prepared in the Bi:Sr:Ca:Cu = 2212 and 2223 proportion, using powder obtained by the sol-gel route and conventional solid state reaction. The anelastic relaxation measurements were performed using a torsion pendulum operating with frequency about 15-35 Hz between 77 to 700 K. The diffraction pattern of the as sintered and the vacuum annealed material were also presented. The results have shown complex anelastic relaxation structures that were associated to the jump of interstitial oxygen atoms between two adjacent CuO planes. The vacuum annealing showed to be deleterious to the critical temperature of the superconducting ceramic.
机译:由于ybacuo发现,实验表明,其超导性能受到氧含量的强烈影响。最近,La {sub} 2cuo {sub}(4 +δ)中的Anelastic弛豫测量显示,氧含量的降低可以与两个事件有关。一个是两个相邻CuO平面之间的移动性的减少,另一个是CuO {Sub} 6八面型法的倾斜模式的数量的增加。在基于铋的陶瓷的情况下,已知在一些限制内氧含量不会影响其超导性。为了评估迁移率和氧含量对该材料的影响,我们已经制备了BSCCO陶瓷并测试其内部摩擦和电阻率作为温度的函数,而氧含量通过一系列真空插环减少620 K.使用通过溶胶 - 凝胶途径获得的粉末和常规固态反应,在Bi:Sr:Ca:Ca:Cu = 2212和2223比例中制备样品。使用具有约15-35Hz的距离在77至700k之间的扭曲摆动进行扭转柱子进行振缩弛豫测量。还呈现了如烧结和真空退火材料的衍射图案。结果表明,复杂的Anelastic弛豫结构与两个相邻CuO平面之间的间质氧原子跳跃相关。真空退火显示出对超导陶瓷的临界温度有害。

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