首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Structure determination of Ba5AlF13 by coupling electron, synchrotron and neutron powder diffraction, solid-state NMR and ab initio calculations
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Structure determination of Ba5AlF13 by coupling electron, synchrotron and neutron powder diffraction, solid-state NMR and ab initio calculations

机译:通过耦合电子,同步中子和中子粉末衍射,固态NMR和从头算计算确定Ba5AlF13的结构

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摘要

The room temperature structure of Ba5AlF13 has been investigated by coupling electron, synchrotron and neutron powder diffraction, solid-state high-resolution NMR (F-19 and Al-27 and first principles calculations. An initial structural model has been obtained from electron and synchrotron powder diffraction data, and its main features have been confirmed by one- and two-dimensional NMR measurements. However, DFT GIPAW calculations of the F-19 isotropic shieldings revealed an inaccurate location of one fluorine site (F3, site 8a), which exhibited unusual long F-Ba distances. The atomic arrangement was reinvestigated using neutron powder diffraction data. Subsequent Fourier maps showed that this fluorine atom occupies a crystallographic site of lower symmetry (32e) with partial occupancy (25%). GIPAW computations of the NMR parameters validate the refined structural model, ruling out the presence of local static disorder and indicating that the partial occupancy of this F site reflects a local motional process. Visualisation of the dynamic process was then obtained from the Rietveld refinement of neutron diffraction data using an enharmonic description of the displacement parameters to account for the thermal motion of the mobile fluorine. The whole ensemble of powder diffraction and NMR data, coupled with first principles calculations, allowed drawing an accurate structural model of Ba5AlF13, including site-specific dynamical disorder in the fluorine sub-network.
机译:通过电子耦合,同步加速器和中子粉末衍射,固态高分辨率核磁共振(F-19和Al-27)以及第一性原理计算,研究了Ba5AlF13的室温结构。粉末衍射数据及其主要特征已通过一维和二维NMR测量得到证实,但DFT GIPAW对F-19各向同性屏蔽的计算显示,一个氟位点(F3,位点8a)的位置不准确,表现出异常的长F-Ba距离,使用中子粉末衍射数据重新研究了原子排列,随后的傅立叶图表明该氟原子占据了对称性较低的晶体学位点(32e),部分占有率(25%)。验证精炼的结构模型,排除局部静电障碍的存在,并表明此F站点的部分占用反映了局部运动过程。然后,通过对位移参数进行谐和描述,从中子衍射数据的Rietveld精炼中获得动态过程的可视化,以说明移动氟的热运动。粉末衍射和NMR数据的整体组合,再加上第一性原理计算,可以绘制Ba5AlF13的精确结构模型,包括氟子网络中的特定于位点的动态无序。

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