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Revisiting the crystal structure of [Co(NH3)(5)Cl]Cl-2 using synchrotron powder diffraction: to what extent single-crystal diffraction from 1960s got it right?

机译:使用同步加速器粉末衍射技术重新审视[Co(NH3)(5)Cl] Cl-2的晶体结构:从1960年代开始的单晶衍射在多大程度上正确了?

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摘要

The crystal structure of the purpureo salt, [Co(NH3)(5)Cl]Cl-2, first reported in 1963 and later revised in 1968 (in both cases from single-crystal diffraction) in the space group Pnma (No. 62), has been recently re-examined from synchrotron X-ray powder diffraction using direct methods and the software EXPO2013. The comparison of the Rietveld analysis results using the two published models and the atomic coordinates obtained from powders leads to an improved crystal structure description in the lower symmetry space group Pn2(1)a (No. 33). As a result, the overall atom connectivity and crystal packing remain similar; however, the symmetry and internal geometry of the coordination complex are changed. The distortions from an idealized geometry in Pnma (No. 62) are likely because of energetically favorable hydrogen-bonding motifs in the crystal. The three models are compared, and their validity and limitations are discussed. (C) 2017 International Centre for Diffraction Data.
机译:紫嘌呤盐[Co(NH3)(5)Cl] Cl-2的晶体结构于1963年首次报道,并于1968年修订(两种情况均来自单晶衍射),位于空间群Pnma(第62号)中。 ),最近已使用直接方法和软件EXPO2013从同步加速器X射线粉末衍射中重新进行了检查。使用两个公开模型对Rietveld分析结果进行比较,以及从粉末中获得的原子坐标,可以在较低对称性空间群Pn2(1)a(第33号)中改善晶体结构的描述。结果,整体的原子连通性和晶体堆积保持相似。但是,配合物的对称性和内部几何形状发生了变化。由于晶体中能量上有利的氢键基序,Pnma(第62号)中理想化的几何结构可能会产生扭曲。比较了这三个模型,并讨论了它们的有效性和局限性。 (C)2017年国际衍射数据中心。

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