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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Binding energies and F-19 nuclear magnetic deshielding in paramagnetic halogen-bonded complexes of TEMPO with haloperfluorocarbons
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Binding energies and F-19 nuclear magnetic deshielding in paramagnetic halogen-bonded complexes of TEMPO with haloperfluorocarbons

机译:TEMPO与卤代氟碳化合物的顺磁性卤素键合配合物中的结合能和F-19核磁去屏蔽

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摘要

F-19 NMR measurements and theoretical calculations were performed to study paramagnetic complexes of iodoperfluorocarbons with stable nitroxide radicals. Contrary to what is usually measured for diamagnetic halogen-bonded complexes involving iodoperfluorocarbons, it was found that the formation of complexes with the 2,2,6,6-tetramethyl(piperidin-1-yloxyl) (TEMPO) radical determines downfield shifts in the F-19 NMR spectra. The experimental finding was confirmed by calculating nuclear shielding using density functional theory and correcting the isotropic diamagnetic F-19 chemical shift with contact interactions evaluated from the hyperfine coupling tensor. The computational analysis of the interaction between CF3I and TEMPO, by using DFT and MP2 theories, showed that the occurrence of the halogen bond between the interacting partners is associated with a significant charge transfer to CF3I and that the measured downfield shift is due to the occurring spin transfer.
机译:进行F-19 NMR测量和理论计算,以研究具有稳定的一氧化氮自由基的碘代氟化碳的顺磁性配合物。与通常测量的涉及碘代碳氟化合物的抗磁性卤素键合配合物相反,发现与2,2,6,6-四甲基(哌啶-1-基氧基)(TEMPO)自由基形成配合物决定了分子中的低场漂移。 F-19 NMR光谱。通过使用密度泛函理论计算核屏蔽并通过从超精细耦合张量评估的接触相互作用来校正各向同性的反磁性F-19化学位移,证实了实验结果。利用DFT和MP2理论对CF3I和TEMPO之间相互作用的计算分析表明,相互作用伙伴之间卤素键的出现与向CF3I的大量电荷转移有关,并且测得的低场漂移是由于发生了自旋转移。

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