Institut für Chemie und Biochemie, Freie Universität Berlin, Takustrasse 3, D-14195 Berlin, Germany.
J Phys Chem A. 2010 Feb 18;114(6):2393-9. doi: 10.1021/jp911694r.
The structure and spectroscopic properties of the 1:1 complexes of substituted pyridines with benzoic acid and phenol derivatives in aprotic solvents are studied using B3LYP functional combined with the polarizable continuum model approximation. Two extreme structures are investigated: the state without (HB) and with proton transfer (PT). In the presence of an external electric field the O...N distance is contracted and the PT state does appear. The PT state of both the pyridine-benzoic and the pyridine-phenol complexes displays the only IR-active band in the 2800-1800 frequency region, which is located around 2000 cm(-1). However, the nature of the band is different for these two complexes. In the pyridine-benzoic acid complex it is practically a pure stretching vibration of the HN(+) group, while in the pyridine-phenol complex it is the mixed vibration of the bridging proton. A specific feature of the PT state in the pyridine-phenol complex is an IR-intensive band near 600 cm(-1), associated with the asymmetric stretching vibrations of the O(-)...HN(+) fragment. Its intensity is reciprocally proportional to the O...N distance. The appearance of this band provides an efficient criterion to differentiate between the HB and PT states of the 1:1 complexes of phenols with pyridines in aprotic solvents.
在非质子溶剂中,使用 B3LYP 函数结合极化连续体模型近似研究了取代吡啶与苯甲酸和苯酚衍生物的 1:1 配合物的结构和光谱性质。研究了两种极端结构:无质子转移(HB)和质子转移(PT)状态。在外电场的作用下,O...N 距离缩短,出现了 PT 状态。吡啶-苯甲酸和吡啶-苯酚配合物的 PT 状态在 2800-1800 频率范围内仅显示一个 IR 活性带,位于 2000cm(-1)左右。然而,这两个配合物的带的性质不同。在吡啶-苯甲酸配合物中,它实际上是 HN(+)基团的纯伸缩振动,而在吡啶-苯酚配合物中,它是桥接质子的混合振动。吡啶-苯酚配合物中 PT 状态的一个特点是近 600cm(-1)处存在一个 IR 强度高的带,与 O(-)...HN(+)片段的不对称伸缩振动有关。其强度与 O...N 距离成反比。这个带的出现为在非质子溶剂中区分酚类与吡啶的 1:1 配合物的 HB 和 PT 状态提供了一个有效的标准。