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Comparison of silver and molybdenum microfocus X-ray sources for single-crystal structure determination

机译:银和钼微焦点X射线源用于确定单晶结构的比较

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摘要

The quality of diffraction data obtained using silver and molybdenum microsources has been compared for six model compounds with a wide range of absorption factors. The experiments were performed on two 30 W air-cooled Incoatec IµS microfocus sources with multilayer optics mounted on a Bruker D8 goniometer with a SMART APEX II CCD detector. All data were analysed, processed and refined using standard Bruker software. The results show that Ag Kα radiation can be beneficial when heavy elements are involved. A numerical absorption correction based on the positions and indices of the crystal faces is shown to be of limited use for the highly focused microsource beams, presumably because the assumption that the crystal is completely bathed in a (top-hat profile) beam of uniform intensity is no longer valid. Fortunately the empirical corrections implemented in SADABS, although originally intended as a correction for absorption, also correct rather well for the variations in the effective volume of the crystal irradiated. In three of the cases studied (two Ag and one Mo) the final SHELXL R1 against all data after application of empirical corrections implemented in SADABS was below 1%. Since such corrections are designed to optimize the agreement of the intensities of equivalent reflections with different paths through the crystal but the same Bragg 2θ angles, a further correction is required for the 2θ dependence of the absorption. For this, SADABS uses the transmission factor of a spherical crystal with a user-defined value of μr (where μ is the linear absorption coefficient and r is the effective radius of the crystal); the best results are obtained when r is biased towards the smallest crystal dimension. The results presented here suggest that the IUCr publication requirement that a numerical absorption correction must be applied for strongly absorbing crystals is in need of revision.
机译:使用银和钼微源获得的衍射数据的质量已被用于具有多种吸收系数的六个模型化合物的比较。实验是在两个30 W风冷的Incoatec IµS微焦点源上进行的,这些源具有安装在带有SMART APEX II CCD检测器的Bruker D8测角仪上的多层光学器件。使用标准的布鲁克软件对所有数据进行分析,处理和完善。结果表明,当涉及重元素时,AgKα辐射可能是有益的。对于高度聚焦的微源光束,基于晶面位置和折射率的数值吸收校正显示出有限的用途,大概是因为假设晶体完全浸入强度均匀的(顶帽轮廓)光束中不再有效。幸运的是,尽管SADABS中实施的经验校正最初是作为吸收校正的,但也可以很好地校正所照射晶体的有效体积的变化。在研究的三个案例中(两个Ag和一个Mo),应用SADABS中的经验校正后,最终的SHELXL R1与所有数据的对比均低于1%。由于此类校正旨在优化通过晶体的路径不同但布拉格2θ角度相同的等效反射强度的一致性,因此需要对吸收的2θ依赖性进行进一步校正。为此,SADABS使用用户定义的值为μr(其中μ为线性吸收系数,r为晶体的有效半径)的球形晶体的透射系数;当r偏向最小的晶体尺寸时,可获得最佳结果。此处给出的结果表明,需要对IUCr公布的要求进行修订,即必须对强吸收晶体应用数值吸收校正。

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