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首页> 外文期刊>Bulletin of the Korean Chemical Society >Dopping Effect of Fluorine Atom on the Superconductivity of YBa2Cu3O7-xFy
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Dopping Effect of Fluorine Atom on the Superconductivity of YBa2Cu3O7-xFy

机译:氟原子的掺杂对YBa2Cu3O7-xFy超导性的影响

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The normal and fluorinated high-Tc superconducting materials, YBa2Cu3O7-xFy with 0.25÷x÷0.55 and 0.00÷y÷0.30, were synthesized to investigate the dopping effect of fluorine atom on the superconductivity of Y123 and studied by X-ray diffraction analysis and electron probe microanalysis, resistivity and thermopower measurements, and polarized micro-Raman spectroscopy. The reproducible micro-Raman spectra were recorded and analyzed. The coherent assignments could be suggested for the spectra of normal and fluorinated samples. The fluorine atoms introduced were found to be substituted for oxygen in pyramidal Cu-O units rather than in Cu-O chains. The unit cell parameters were decreased upon the substitution of oxygen by fluorine atom. From the decreasing cell parameters and Tc, the increasing thermopower, and the possible assignments of the vibrational modes, it could be suggested that the dopping of fluorine atom localizes the superconducting electrons in Y123.
机译:合成了普通的和氟化的高Tc超导材料YBa2Cu3O7-xFy(具有0.25÷x÷0.55和0.00÷y÷0.30),以研究氟原子对Y123超导性的掺杂作用,并通过X射线衍射分析和电子探针显微分析,电阻率和热功率测量以及极化显微拉曼光谱。记录并分析可再现的微拉曼光谱。对于正常样品和氟化样品的光谱,建议采用相干分配。发现引入的氟原子在金字塔形的Cu-O单元中而不是在Cu-O链中取代了氧。当氧被氟原子取代时,晶胞参数降低。从降低的电池参数和Tc,增加的热功率以及可能的振动模式分配来看,可以认为氟原子的掺杂使Y123中的超导电子局部化。

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