纳米晶陶瓷超导体lazrybaca2cu3o11在三种不同温度下的研究

A. S. Nair, V. Vinila, Sheelakumari Issac, R. Jacob, Anusha Mony, H. Nair, Sam Rajan, D. Satheesh, Jayakumari Isac
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引用次数: 6

摘要

高温超导体是一种陶瓷材料,其中的氧化铜层与含有钡和其他原子的层之间隔开。钇化合物的独特之处在于它具有规则的晶体结构,而镧则被归类为固溶体。钇化合物通常被称为1-2-3超导体,因为它的成分的比例。采用常规固相反应法制备了镧锆钇钡钙氧化铜(LaZrYBaCaCuO)。为了证明该方法的可行性,在专用炉中制备了超导粉末。采用x射线衍射(XRD)、粒度测定、扫描电镜(SEM)和EDX对样品进行了分析。XRD结果与JCPDS文件的对比证实了样品具有a≠b≠c、α = β = γ = 90°的正交结构。扫描电镜(SEM)研究表明,其粒径在纳米级范围内。同时也证实了Debye Scherrer公式计算出的粒径值。EDX光谱显示了样品的元素。采用Williamson-Hall图法,用x射线仪器峰展宽分析评价了材料的尺寸和晶格应变。
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Studies on Nano Crystalline Ceramic Superconductor LaZrYBaCa 2 Cu 3 O 11 at Three Different Temperatures
The high temperature superconductors are ceramic materials with layers of Copper-oxide spaced by layers containing Barium and other atoms. The Yttrium compound is somewhat unique in that it has a regular crystal structure while the Lanthanum version is classified as a solid solution. The Yttrium compound is often called the 1-2-3 superconductor because of the ratios of its constituents. Lanthanum Zirconium Yttrium Barium Calcium Copper Oxide (LaZrYBaCaCuO) was prepared by the usual solid state reaction method. In order to show the viability of the proposed method, super-conducting powder was prepared in special furnace. The sample was analyzed by X-ray Diffraction (XRD), Particle size determination, SEM and EDX. The comparison of XRD results with JCPDS files confirmed the orthorhombic structure of the sample with a ≠ b ≠ c and α = β = γ = 90°. Scanning Electron Microscopy (SEM) studies revealed that its particle size is in the nanometer range. It also confirmed the calculated value of particle size from Debye Scherrer’s formula. EDX spectrum shows the elements of the sample. X-ray instrumental peak broadening analysis was used to evaluate the size and lattice strain by the Williamson-Hall Plot method.
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