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Ba5Al3F19 的结构解析及通过同步粉末衍射、变温固态 NMR 和量子计算研究氟离子动力学。

Structure resolution of Ba5Al3F19 and investigation of fluorine ion dynamics by synchrotron powder diffraction, variable-temperature solid-state NMR, and quantum computations.

机构信息

Tectospin-Institut Lavoisier de Versailles, CNRS UMR 8180, Université de Versailles Saint-Quentin en Yvelines, 45 Avenue des États-Unis, 78035 Versailles Cedex, France.

出版信息

Inorg Chem. 2011 Mar 21;50(6):2644-53. doi: 10.1021/ic102534d. Epub 2011 Feb 23.

DOI:10.1021/ic102534d
PMID:21344940
Abstract

The room temperature structure of Ba(5)Al(3)F(19) has been solved using electron microscopy and synchrotron powder diffraction data. One-dimensional (1D) (27)Al and ultrafast magic-angle-spinning (MAS) (19)F NMR spectra have been recorded and are in agreement with the proposed structural model for Ba(5)Al(3)F(19). The (19)F isotropic chemical shift and (27)Al quadrupolar parameters have been calculated using the CASTEP code from the experimental and density functional theory geometry-optimized structures. After optimization, the calculated NMR parameters of both the (19)F and (27)Al nuclei show improved consistency with the experimental values, demonstrating that the geometry optimization step is necessary to obtain more accurate and reliable structural data. This also enables a complete and unambiguous assignment of the (19)F MAS NMR spectrum of Ba(5)Al(3)F(19). Variable-temperature 1D MAS (19)F NMR experiments have been carried out, showing the occurrence of fluorine ion mobility. Complementary insights were obtained from both two-dimensional (2D) exchange and 2D double-quantum dipolar recoupling NMR experiments, and a detailed analysis of the anionic motion in Ba(5)Al(3)F(19) is proposed, including the distinction between reorientational processes and chemical exchange involving bond breaking and re-formation.

摘要

利用电子显微镜和同步辐射粉末衍射数据解决了 Ba(5)Al(3)F(19) 的室温结构。记录了一维 (1D) (27)Al 和超快速魔角旋转 (MAS) (19)F NMR 谱,并与 Ba(5)Al(3)F(19) 的提议结构模型一致。使用 CASTEP 代码从实验和密度泛函理论几何优化结构计算了 (19)F 各向同性化学位移和 (27)Al 四极参数。优化后,计算出的 (19)F 和 (27)Al 核的 NMR 参数与实验值的一致性得到了改善,证明了几何优化步骤对于获得更准确和可靠的结构数据是必要的。这也使得 Ba(5)Al(3)F(19) 的 (19)F MAS NMR 谱的完全和明确分配成为可能。进行了变温一维 MAS (19)F NMR 实验,显示出氟离子的迁移性。二维 (2D) 交换和二维双量子偶极重聚 NMR 实验提供了补充的见解,并提出了对 Ba(5)Al(3)F(19) 中阴离子运动的详细分析,包括对涉及键断裂和重新形成的重新定向过程和化学交换之间的区分。

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