The Effect of Tungsten Nanoparticles on Superconducting of The Compound Bi2-xPb0.3WXSr2Ca2Cu3O10+δ

M. J. Tuama, Lamia K. Abbas
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Abstract

By using a conventional solid-state reaction technique, a group of the superconducting samples with nominal composition Bi2-xPb0.3WxSr2Ca2Cu3O10±δ with (0≤x≤0.5) sintered at 840ᵒC for 140h in the air have been prepared. The effect substitution of tungsten nanoparticles on the physical properties of Bi sites was studied. X-ray diffraction (XRD) studies showed that all our samples are polycrystalline with orthorhombic structures and presence two phases: high-Tc phase (2223), low-Tc phase (2212) and an impurity phase Some impurities likeSr2Ca2Cu7Oδ, CaO  and WO . In the prepared samples the lattice parameter values and the volume fraction of high-Tc phase are calculated. Electrical resistivity measurements show that the values of critical temperature Tc increase with tungsten content. The highest transition temperature, Tc, obtained for Bi2-xPb0.3WXSr2Ca2Cu3O10+δ composition was 191.8K with x=0.3.
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钨纳米粒子对化合物 Bi2-xPb0.3WXSr2Ca2Cu3O10+δ 超导性的影响
通过使用传统的固态反应技术,制备了一组超导样品,其标称成分为 Bi2-xPb0.3WxSr2Ca2Cu3O10±δ,(0≤x≤0.5)在 840ᵒC下于空气中烧结 140 小时。研究了钨纳米粒子的替代对铋位点物理性质的影响。X 射线衍射 (XRD) 研究表明,所有样品都是多晶体,具有正交菱形结构,存在两相:高锝相(2223)、低锝相(2212)和杂质相。在制备的样品中,计算出了晶格参数值和高锝相的体积分数。电阻率测量结果表明,临界温度 Tc 值随着钨含量的增加而增加。当 x=0.3 时,Bi2-xPb0.3WXSr2Ca2Cu3O10+δ 成分的最高转变温度 Tc 为 191.8K。
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