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首页> 外文期刊>Acta Crystallographica, Section B. Structural Science >Capabilities and limitations of a (3+d)-dimensional incommensurately modulated structure as a model for the derivation of an extended family of compounds: example of the scheelite-like structures
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Capabilities and limitations of a (3+d)-dimensional incommensurately modulated structure as a model for the derivation of an extended family of compounds: example of the scheelite-like structures

机译:(3 + d)维无比例调节结构作为扩展化合物家族模型的能力和局限性:白钨矿样结构的例子

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The previously reported incommensurately modulated scheelite-like structure KNd(MoO4)(2) has been exploited as a natural (3 + 1)-dimensional superspace model to generate the scheelite-like three-dimensional structure family. Although each member differs in its space-group symmetry, unit-cell parameters and compositions, in ( 3 + 1)-dimensional space, they share a common superspace group, a common number of building units in the basic unit cell occupying Wyckoff sites with specific coordinates (x, y, z) and specific basic unit-cell axial ratios (c/a, a/b, b/c) and angles. Variations of the modulation vector q, occupation functions and t(0) are exploited for the derivation. Eight topologically and compositionally different known structures are compared with their models derived from the KNd(MoO4)(2) structure in order to evaluate the capabilities and limitations of the incommensurately modulated structure to act as a superspace generating model. Applications of the KNd(MoO4)(2) structure as a starting model for the refinement and prediction of some other modulated members of the family is also illustrated. The (3 + 1)dimensional presentation of the scheelite-like structures reveals new structural relations, which remain hidden if only conventional three-dimensional structure descriptions are applied.
机译:先前报道的不等比例调制的白钨矿样结构KNd(MoO4)(2)已被用作天然(3 + 1)维超空间模型来生成白钨矿样的三维结构族。尽管每个成员的空间组对称性,单元像元参数和组成各不相同,但在(3 + 1)维空间中,它们共享一个公共的超空间组,在基本单元格中占据Wyckoff位置的公共建筑单元数量与特定坐标(x,y,z)和特定基本单位晶格轴向比率(c / a,a / b,b / c)和角度。调制矢量q,占用函数和t(0)的变化被用于推导。将八个拓扑和组成上不同的已知结构与其从KNd(MoO4)(2)结构派生的模型进行比较,以评估作为空间产生模型的无等调制结构的功能和局限性。还说明了将KNd(MoO4)(2)结构用作优化和预测该家族某些其他调节成员的起始模型的应用。白钨矿状结构的(3 +1)维表示揭示了新的结构关系,如果仅应用常规的三维结构描述,这些关系将被隐藏。

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