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对一系列新型HF与可力丁酸碱配合物的结构和动力学进行低温核磁共振研究,这些配合物表现出通过氢键的标量耦合。

Low-temperature NMR studies of the structure and dynamics of a novel series of acid-base complexes of HF with collidine exhibiting scalar couplings across hydrogen bonds.

作者信息

Shenderovich Ilja G, Tolstoy Peter M, Golubev Nikolai S, Smirnov Sergei N, Denisov Gleb S, Limbach Hans-Heinrich

机构信息

Institut für Chemie der Freien Universität Berlin, Takustrasse 3, D-14195 Berlin, Germany.

出版信息

J Am Chem Soc. 2003 Sep 24;125(38):11710-20. doi: 10.1021/ja029183a.

Abstract

The low-temperature (1)H, (19)F, and (15)N NMR spectra of mixtures of collidine-(15)N (2,4,6-trimethylpyridine-(15)N, Col) with HF have been measured using CDF(3)/CDF(2)Cl as a solvent in the temperature range 94-170 K. Below 140 K, the slow proton and hydrogen bond exchange regime is reached where four hydrogen-bonded complexes between collidine and HF with the compositions 1:1, 2:3, 1:2, and 1:3 could be observed and assigned. For these complexes, chemical shifts and scalar coupling constants across the (19)F(1)H(19)F and (19)F(1)H(15)N hydrogen bridges have been measured which allowed us to determine the chemical composition of the complexes. The simplest complex, collidine hydrofluoride ColHF, is characterized at low temperatures by a structure intermediate between a molecular and a zwitterionic complex. Its NMR parameters depend strongly on temperature and the polarity of the solvent. The 2:3 complex ColHFHColFHF is a contact ion pair. Collidinium hydrogen difluoride ColHFHF is an ionic salt exhibiting a strong hydrogen bond between collidinium and the FHF anion. In this complex, the anion FHF is subject to a fast reorientation rendering both fluorine atoms equivalent in the NMR time scale with an activation energy of about 5 kcal mol(-)(1) for the reorientation. Finally, collidinium dihydrogen trifluoride ColHF(HF)(2) is an ionic pair exhibiting one FHN and two FHF hydrogen bonds. Together with the F(HF)(n)() clusters studied previously (Shenderovich et al., Phys. Chem. Chem. Phys. 2002, 4, 5488), the new complexes represent an interesting model system where the evolution of scalar couplings between the heavy atoms and between the proton and the heavy atoms of hydrogen bonds can be studied. As in the related FHF case, we observe also for the FHN case a sign change of the coupling constant (1)J(FH) when the F.H distance is increased and the proton shifted to nitrogen. When the sign change occurs, that is, (1)J(FH) = 0, the heavy atom coupling constant (2)J(FN) remains very large, of the order of 95 Hz. Using the valence bond order model and hydrogen bond correlations, we describe the dependence of the hydrogen bond coupling constants, of hydrogen bond chemical shifts, and of some H/D isotope effects on the latter as a function of the hydrogen bond geometries.

摘要

已使用CDF₃/CDF₂Cl作为溶剂,在94 - 170 K的温度范围内测量了可力丁 -¹⁵N(2,4,6 - 三甲基吡啶 -¹⁵N,Col)与HF混合物的低温¹H、¹⁹F和¹⁵N NMR谱。在140 K以下,达到了慢质子和氢键交换机制,在此机制下可以观察到并确定可力丁与HF之间四种氢键复合物的组成,其组成分别为1:1、2:3、1:2和1:3。对于这些复合物,已测量了¹⁹F¹H¹⁹F和¹⁹F¹H¹⁵N氢键上的化学位移和标量耦合常数,这使我们能够确定复合物的化学组成。最简单的复合物,可力丁氢氟酸酯ColHF,在低温下的特征是其结构介于分子复合物和两性离子复合物之间。其NMR参数强烈依赖于温度和溶剂的极性。2:3复合物[ColHFHCol]⁺[FHF]⁻是一个接触离子对。可力丁二氟氢化物[ColH]⁺[FHF]⁻是一种离子盐,在可力丁和[FHF]⁻阴离子之间表现出强氢键。在该复合物中,阴离子[FHF]⁻会快速重排,使得在NMR时间尺度上两个氟原子等效,重排的活化能约为每摩尔5千卡。最后,可力丁三氟二氢化物[ColH]⁺[F(HF)₂]⁻是一个离子对,表现出一个FHN和两个FHF氢键。连同之前研究的[F(HF)ₙ]⁻簇(申德罗维奇等人,《物理化学化学物理》,2002年,第4卷,5488页),这些新复合物代表了一个有趣的模型系统,在其中可以研究重原子之间以及质子与氢键重原子之间标量耦合的演变。与相关的FHF情况一样,对于FHN情况,当F··H距离增加且质子向氮移动时,我们也观察到耦合常数¹J(FH)的符号变化。当符号变化发生时,即¹J(FH) = 0,重原子耦合常数²J(FN)仍然非常大,约为95赫兹。使用价键序模型和氢键相关性,我们描述了氢键耦合常数、氢键化学位移以及一些H/D同位素效应随氢键几何结构的变化关系。

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