首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >The preparation and phase diagrams of ((Li1-xFexOD)-Li-7)FeSe and (Li1-xFexOH)FeSe superconductors
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The preparation and phase diagrams of ((Li1-xFexOD)-Li-7)FeSe and (Li1-xFexOH)FeSe superconductors

机译:((Li1-xFexOD)-Li-7)FeSe和(Li1-xFexOH)FeSe超导体的制备和相图

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We report the phase diagram for the superconducting system ((Li1-xFexOD)-Li-7)FeSe and contrast it with that of (Li1-xFexOH)FeSe both in single crystal and powder forms. Samples were prepared via hydrothermal methods and characterized by laboratory and synchrotron X-ray diffraction, high-resolution neutron powder diffraction (NPD), and high intensity NPD. We find a correlation between the tetragonality of the unit cell parameters and the critical temperature, T-c, which is indicative of the effects of charge doping on the lattice and formation of iron vacancies in the FeSe layer. We observe no appreciable isotope effect on the maximum T-c in substituting H by D. The NPD measurements definitively rule out an antiferromagnetic ordering in the non-superconducting (Li1-xFexOD)FeSe samples below 120 K, which has been reported in non-superconducting (Li1-xFexOH)FeSe. A likely explanation for the observed antiferromagnetic transition in (Li1-xFexOH)FeSe samples is the formation of impurities during their preparation such as Fe3O4 and LixFeO2, which express a charge ordering transition known as the Verwey transition near 120 K. The concentration of these oxide impurities is found to be dependent on the concentration of the lithium hydroxide reagent and the use of H2O vs. D2O as the solvent during synthesis. We also describe the reaction conditions that lead to some of our superconducting samples to exhibit ferromagnetism below T-c.
机译:我们报告了超导体系((Li1-xFexOD)-Li-7)FeSe的相图,并与单晶和粉末形式的(Li1-xFexOH)FeSe的相图进行了对比。通过水热法制备样品,并通过实验室和同步加速器X射线衍射,高分辨率中子粉末衍射(NPD)和高强度NPD进行表征。我们发现晶胞参数的四方性与临界温度T-c之间存在相关性,这表明电荷掺杂对FeSe层中晶格和铁空位形成的影响。我们观察到在用D代替H时对最大Tc没有明显的同位素影响。NPD测量确定地排除了在120 K以下的非超导(Li1-xFexOD)FeSe样品中的反铁磁有序性,这在非超导( Li1-xFexOH)FeSe。 (Li1-xFexOH)FeSe样品中观察到的反铁磁跃迁的一种可能解释是在制备过程中杂质的形成,例如Fe3O4和LixFeO2,它们表现出电荷有序跃迁,称为Verwey跃迁,接近120K。这些氧化物的浓度发现杂质取决于氢氧化锂试剂的浓度以及在合成过程中使用H2O对D2O作为溶剂。我们还描述了导致某些超导样品在T-c以下表现出铁磁性的反应条件。

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