Department of General Physics and Spectroscopy, Vilnius University, Sauletekio 9-3, LT-10222 Vilnius, Lithuania.
J Phys Chem A. 2012 Aug 30;116(34):8753-61. doi: 10.1021/jp305446n. Epub 2012 Aug 21.
The H-bonded complexes of pyridine N-oxide (PyO) with H(2)O, acetic, cyanoacetic, propiolic, tribromoacetic, trichloroacetic, trifluoroacetic, hydrochloric, and methanesulfonic acids have been studied by FTIR and NMR spectroscopy, X-ray diffraction, and quantum chemical DFT calculations. Correlations between vibrational frequencies of the NO stretching and PyO ring modes and geometric parameters of the H-bond have been established. FTIR experiments show and DFT calculations confirm that definite discontinuity is present in the vicinity of the midpoint in the proton transfer pathway. The established correlations significantly aid in the understanding of fine effects such as the isotope (deuteration) effect, crystal-to-solution transition, or criticality of aqueous solutions induced by ionic pairs. Geometric isotope effect in the ionic H-bond aggregate of PyO·H(D)Cl was found to be extraordinary large. Measured FTIR, CP/MAS, and high-resolution (13)C NMR spectra indicate that H-bond in the PyO·HCl complex in polar solvent can potentially be more ionic than in the crystal. Vibrational modes of ionic pairs originating via proton transfer in H-bond complexes can provide new information concerning the interionic interaction and its role in the phase separation and mezo-structuring processes. The results are compared to the relevant data for PyO·HCl complex in argon matrix.
吡啶 N-氧化物(PyO)与 H(2)O、乙酸、氰基乙酸、丙炔酸、三溴乙酸、三氯乙酸、三氟乙酸、盐酸和甲磺酸的 H 键复合物已通过 FTIR 和 NMR 光谱、X 射线衍射和量子化学 DFT 计算进行了研究。建立了 NO 伸缩和 PyO 环模式的振动频率与 H 键几何参数之间的相关性。FTIR 实验表明,DFT 计算证实,在质子转移途径的中点附近存在明显的不连续性。所建立的相关性极大地有助于理解精细效应,例如同位素(氘代)效应、晶体到溶液的转变或离子对引起的水溶液的临界点。在 PyO·H(D)Cl 的离子氢键聚集体中发现了非常大的几何同位素效应。测量的 FTIR、CP/MAS 和高分辨率(13)C NMR 谱表明,在极性溶剂中 PyO·HCl 配合物中的氢键可能比在晶体中更具离子性。通过氢键复合物中的质子转移产生的离子对振动模式可以提供有关离子相互作用及其在相分离和介结构过程中的作用的新信息。结果与氩基质中 PyO·HCl 配合物的相关数据进行了比较。