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79/81Br nuclear quadrupole resonance spectroscopic characterization of halogen bonds in supramolecular assemblies

机译:超分子组装体中卤素键的79 / 81Br核四极共振光谱表征

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Despite the applicability of solid-state NMR to study the halogen bond, the direct NMR detection of ~(79/81) Br covalently bonded to carbon remains impractical due to extremely large spectral widths, even at ultra-high magnetic fields. In contrast, nuclear quadrupole resonance (NQR) offers comparatively sharp resonances. Here, we demonstrate the abilities of ~(79/81) Br NQR to characterize the electronic changes in the C–Br?N halogen bonding motifs found in supramolecular assemblies constructed from 1,4-dibromotetrafluorobenzene and nitrogen-containing heterocycles. An increase in the bromine quadrupolar coupling constant is observed, which correlates linearly with the halogen bond distance ( d _(Br?N) ). Notably, ~(79/81) Br NQR is able to distinguish between two symmetry-independent halogen bonds in the same crystal structure. This approach offers a rapid and reliable indication for the occurrence of a halogen bond, with experimental times limited only by the observation of ~(79/81) Br NQR resonances.
机译:尽管固态NMR可用于研究卤素键,但由于其非常宽的光谱宽度,即使在超高磁场下,直接与碳共价键合的〜(79/81)Br的直接NMR检测仍然不切实际。相比之下,核四极共振(NQR)提供了相对尖锐的共振。在这里,我们证明〜(79/81)Br NQR能够表征在由1,4-二溴四氟苯和含氮杂环构成的超分子组装物中发现的C-Br?N卤素键基序中的电子变化。观察到溴四极偶合常数的增加,其与卤素键距(d_(Br?N))线性相关。值得注意的是,〜(79/81)Br NQR能够区分相同晶体结构中的两个不依赖于对称性的卤素键。该方法为卤键的发生提供了快速可靠的指示,实验时间仅受〜(79/81)Br NQR共振的限制。

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