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卤键的单晶核磁共振表征

Single-Crystal NMR Characterization of Halogen Bonds.

作者信息

Xu Yijue, Gabidullin Bulat, Bryce David L

机构信息

Department of Chemistry and Biomolecular Sciences , University of Ottawa , 10 Marie Curie Private , Ottawa , Ontario K1N 6N5 , Canada.

出版信息

J Phys Chem A. 2019 Jul 25;123(29):6194-6209. doi: 10.1021/acs.jpca.9b03587. Epub 2019 Jul 11.

DOI:10.1021/acs.jpca.9b03587
PMID:31294556
Abstract

Oxygen-17-enriched triphenylphosphine oxide and three of its halogen-bonded cocrystals featuring 1,4-diiodotetrafluorobenzene and 1,3,5-trifluoro-2,4,6-triiodobenzene as halogen bond donors have been characterized by P and O single-crystal NMR spectroscopy. Single-crystal NMR allows for the measurement of not only the magnitudes of various NMR interaction tensors, but also their orientations relative to the crystal lattice and therefore relative to the halogen bonds themselves. P chemical shift tensors, O chemical shift tensors, O quadrupolar coupling tensors, and P-O indirect nuclear spin-spin () coupling tensors are reported here for P═O···I halogen bonds. The angular deviations in the directions of the pseudo-unique components of the P chemical shift tensors, the O chemical shift tensors, and the O quadrupolar coupling tensors from the direction of the oxygen-iodine halogen bond correlate with the deviations in linearity of the P═O···I halogen bond. There is also a clear decrease in anisotropy and an increase in asymmetry of the (P,O) coupling tensors attributable to the formation of iodine-oxygen halogen bonds. The small but quantifiable changes in the tensors are consistent with the weak nature of these halogen bonds relative to the P═O motif. Overall, this work establishes single-crystal NMR as a novel probe of halogen bonds in solids. Analysis of the results has provided insights into the correlations between the magnitude and orientation of various NMR interaction tensors and the local geometry of the halogen bond. Gauge-including projector-augmented wave computations corroborate the experimental findings.

摘要

以1,4 - 二碘四氟苯和1,3,5 - 三氟 - 2,4,6 - 三碘苯作为卤素键供体的富氧 - 17三苯基氧化膦及其三种卤素键合共晶体已通过磷和氧单晶核磁共振光谱进行了表征。单晶核磁共振不仅可以测量各种核磁共振相互作用张量的大小,还可以测量它们相对于晶格以及因此相对于卤素键本身的方向。本文报道了P═O···I卤素键的磷化学位移张量、氧化学位移张量、氧四极耦合张量和P - O间接核自旋 - 自旋()耦合张量。磷化学位移张量、氧化学位移张量和氧四极耦合张量的伪唯一分量方向与氧 - 碘卤素键方向的角度偏差与P═O···I卤素键的线性偏差相关。由于碘 - 氧卤素键的形成,(P,O)耦合张量的各向异性也明显降低,不对称性增加。张量中微小但可量化的变化与这些卤素键相对于P═O基序的弱性质一致。总体而言,这项工作确立了单晶核磁共振作为固体中卤素键的一种新型探针。对结果的分析提供了关于各种核磁共振相互作用张量的大小和方向与卤素键局部几何结构之间相关性的见解。含规范投影增强波计算证实了实验结果。

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