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Contribution of powder diffraction for structure refinements of aperiodic misfit cobalt oxides

机译:粉末衍射对非周期性失配钴氧化物结构改进的贡献

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Two families of misfit cobalt oxides have been reinvestigated using neutron and synchrotron powder diffraction data and Rietveld structure refinements in the four-dimensional formalism for aperiodic structures. In the first system [Ca2CoO3][CoO2](1.62), the structure-specific features of two complex polytypic phases previously described from single-crystal diffraction data have been confirmed for the main term of the series and are described with the C2/m(1,delta,0) s0 superspace symmetry (R-p = 0.026, R-wp = 0.031, R-B = 0.014). The high-resolution synchrotron diffraction experiments have been interpreted with a triclinic distortion of the structure, probably related to an intrinsic modulation of the [Ca2CoO3] sublattice in relation with Co and O split atomic sites. In the second system Ca-0.82(Cu0.65Co0.35O2), a new occupation modulation of the metallic site is shown with the Fmmm(alpha11) 0ss superspace symmetry (R-p = 0.031, R-wp = 0.039, R-B = 0.027) and is interpreted in relation with the modulated interatomic distances of the square coordination of the cationic site. In both cases, recently developed tools for structure refinements of aperiodic systems using powder diffraction data ( in the JANA2000 package) have proved their efficiency, in particular as specific complements to previous single-crystal structure refinements.
机译:使用中子和同步加速器粉末衍射数据以及非周期性结构的四维形式论中的Rietveld结构细化,对两个失配的钴氧化物家族进行了重新研究。在第一个系统[Ca2CoO3] [CoO2](1.62)中,先前从单晶衍射数据描述的两个复杂多型相的结构特定特征已被确认为该系列的主要术语,并用C2 / m描述(1,δ,0)s0超空间对称性(Rp = 0.026,R-wp = 0.031,RB = 0.014)。高分辨率同步加速器衍射实验被解释为具有三斜结构扭曲,可能与[Ca2CoO3]子晶格相对于Co和O分裂原子位点的固有调制有关。在第二个系统Ca-0.82(Cu0.65Co0.35O2)中,以Fmmm(alpha11)0ss超空间对称(Rp = 0.031,R-wp = 0.039,RB = 0.027)显示了金属位的新的职业调制。相对于阳离子位的平方配位的调制原子间距离来解释“α”。在这两种情况下,最近开发的使用粉末衍射数据(采用JANA2000软件包)对非周期性系统进行结构细化的工具都证明了其效率,特别是作为对先前单晶结构细化的特殊补充。

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