首页> 外文期刊>Acta Crystallographica, Section B. Structural Science >Mg1+xIr1-x (x=0, 0.037 and 0.054), a binary intermetallic compound with a new orthorhombic structure type determined from powder and single-crystal X-ray diffraction
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Mg1+xIr1-x (x=0, 0.037 and 0.054), a binary intermetallic compound with a new orthorhombic structure type determined from powder and single-crystal X-ray diffraction

机译:Mg1 + xIr1-x(x = 0、0.037和0.054)是由粉末和单晶X射线衍射确定的具有新型正交晶结构类型的二元金属间化合物

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The new binary compound Mg1 + xIr1-x (x = 0-0.054) was prepared by melting the elements in the Mg:Ir ratio 2:3 in a sealed tantalum tube under an argon atmosphere in an induction furnace (single crystals) or by annealing cold-pressed pellets of the starting composition Mg:Ir 1:1 in an autoclave under an argon atmosphere (powder sample). The structure was independently solved from high-resolution synchrotron powder and single-crystal X-ray data: Pearson symbol oC304, space group Cmca, lattice parameters from synchrotron powder data a = 18.46948 (6), b = 16.17450 (5), c = 16.82131 (5) Angstrom. Mg1-xIr1-x is a topologically close-packed phase, containing 13 Ir and 12 Mg atoms in the asymmetric unit, and has a narrow homogeneity range. Nearly all the atoms have Frank-Kasper-related coordination polyhedra, with the exception of two Ir atoms, and this compound contains the shortest Ir-Ir distances ever observed. The solution of a rather complex crystal structure from powder diffraction, which was fully confirmed by the single-crystal method, shows the power of powder diffraction in combination with the high-resolution data and the global optimization method.
机译:新的二元化合物Mg1 + xIr1-x(x = 0-0.054)通过在感应炉中在氩气气氛下(单晶)在密封的钽管中将Mg:Ir比为2:3的元素熔化来制备。在氩气气氛下,在高压釜中对起始组成Mg:Ir 1:1的冷压颗粒进行退火(粉末样品)。该结构从高分辨率同步加速器粉末和单晶X射线数据中独立求解:Pearson符号oC304,空间群Cmca,来自同步加速器粉末数据的晶格参数a = 18.46948(6),b = 16.17450(5),c = 16.82131(5)埃。 Mg1-xIr1-x是拓扑紧密堆积的相,在不对称单元中包含13个Ir和12个Mg原子,并且均一性范围窄。除两个Ir原子外,几乎所有原子都具有Frank-Kasper相关的配位多面体,并且该化合物包含有史以来最短的Ir-Ir距离。通过单晶方法充分证实了粉末衍射的相当复杂的晶体结构的解决方案,结合了高分辨率数据和整体优化方法,显示了粉末衍射的强大功能。

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