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Structural Characterization of the Sr2Co0.5Nb(Ta)0 .5O4 and Sr3CoNb(Ta)O7 Compounds

机译:Sr2Co0.5Nb(Ta)0 .5O4和Sr3CoNb(Ta)O7化合物的结构表征

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The Sr2Co0.5Nb(Ta)0.5O4 and Sr3CoNb(Ta)O7 compounds, both with Ruddlesden-Popper structures, have been synthesized by the ceramic method at 1150∩ under atmospheric pressure. The crystallographic structure of the compounds was assigned to the tetragonal system with space group 14/mmm by X-ray diffraction(XRD) Rietveld refinement. The reduced lattice volume and lattice parameters increased as the Ta with 5d substitutes for the Nb with 4d in the compounds. The Co/Nb(Ta)O bond length has been determined by X-ray absorption spectroscopic(EXAFS/XANES) analysis and the XRD refinement. The CoO6,octahedra were tetragonally distorted by elongation of Co-O bond along the c-axis. The magnetic measurement shows the compounds Sr2Co0.5Nb(Ta)0.5O4 and Sr3CoNb(Ta)O7 have paramagnetic properties and the Co ions with intermediate spin sates between high and low spins in D4h symmetry. All the compounds showed semiconducting behavior whose electrical conductivity increased with temperature up to 1000 K. The electrical conductiviy increased and the activation energy for the conduction decreased as the number of perovskite layers increased in the compounds with chemical formula An+1BnO3n+1.
机译:都具有Ruddlesden-Popper结构的Sr2Co0.5Nb(Ta)0.5O4和Sr3CoNb(Ta)O7化合物是通过陶瓷方法在大气压下于1150°C合成的。通过X射线衍射(XRD)Rietveld精制,将化合物的晶体结构分配给空间群为14 / mm的四方体系。减少的晶格体积和晶格参数随着化合物中5d的Ta替代4d的Nb的增加而增加。 Co / Nb(Ta)O键长已通过X射线吸收光谱法(EXAFS / XANES)分析和XRD精制确定。 CoO6,八面体由于沿c轴的Co-O键伸长而四边形变形。磁测量表明,化合物Sr2Co0.5Nb(Ta)0.5O4和Sr3CoNb(Ta)O7具有顺磁特性,并且Co离子具有D4h对称性,在高和低自旋之间具有中间自旋态。在化学式为An + 1BnO3n + 1的化合物中,随着钙钛矿层数的增加,所有化合物均表现出半导体行为,其电导率随温度的升高而增加。

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