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首页> 外文期刊>The Journal of Chemical Physics >Intramolecular competition between n-pair and pi-pair hydrogen bonding: Microwave spectrum and internal dynamics of the pyridine-acetylene hydrogen-bonded complex
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Intramolecular competition between n-pair and pi-pair hydrogen bonding: Microwave spectrum and internal dynamics of the pyridine-acetylene hydrogen-bonded complex

机译:n对和pi对氢键之间的分子内竞争:吡啶-乙炔氢键配合物的微波光谱和内部动力学

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a-type rotational spectra of the hydrogen-bonded complex formed from pyridine and acetylene are reported. Rotational and N-14 hyperfine constants indicate that the complex is planar with an acetylenic hydrogen directed toward the nitrogen. However, unlike the complexes of pyridine with HCl and HBr, the acetylene moiety in HCCH-NC5H5 does not lie along the symmetry axis of the nitrogen lone pair, but rather, forms an average angle of 46 degrees with the C-2 axis of the pyridine. The a-type spectra of HCCH-NC5H5 and DCCD-NC5H5 are doubled, suggesting the existence of a low lying pair of tunneling states. This doubling persists in the spectra of HCCD-NC5H5, DCCH-NC5H5, indicating that the underlying motion does not involve interchange of the two hydrogens of the acetylene. Single C-13 substitution in either the ortho-or meta-position of the pyridine eliminates the doubling and gives rise to separate sets of spectra that are well predicted by a bent geometry with the C-13 on either the same side ("inner") or the opposite side ("outer") as the acetylene. High level ab initio calculations are presented which indicate a binding energy of 1.2 kcal/mol and a potential energy barrier of 44 cm(-1) in the C-2v configuration. Taken together, these results reveal a complex with a bent hydrogen bond and large amplitude rocking of the acetylene moiety. It is likely that the bent equilibrium structure arises from a competition between a weak hydrogen bond to the nitrogen (an n-pair hydrogen bond) and a secondary interaction between the ortho-hydrogens of the pyridine and the pi electron density of the acetylene. (C) 2015 AIP Publishing LLC.
机译:报道了由吡啶和乙炔形成的氢键配合物的a型旋转光谱。旋转常数和N-14超精细常数表明,该络合物是平面的,其中乙炔氢指向氮气。但是,与吡啶与HCl和HBr的络合物不同,HCCH-NC5H5中的乙炔部分不沿着氮孤对的对称轴,而是与氢的C-2轴形成46度的平均角。吡啶。 HCCH-NC5H5和DCCD-NC5H5的a型光谱增加了一倍,表明存在一对低位隧穿态。这种加倍在HCCD-NC5H5,DCCH-NC5H5的光谱中仍然存在,表明基本运动不涉及乙炔的两个氢的交换。吡啶的邻位或间位上的单个C-13取代消除了加倍,并产生了单独的光谱集,这些光谱集可以通过弯曲的几何形状很好地预测,而C-13在同一侧(“内部” )或与乙炔相反的一面(“外侧”)。提出了高水平的从头算,这表明在C-2v配置中结合能为1.2 kcal / mol,势垒为44 cm(-1)。总而言之,这些结果揭示了具有弯曲的氢键和乙炔部分的大幅度摇摆的复合物。弯曲的平衡结构很可能是由与氮的弱氢键(n对氢键)之间的竞争以及吡啶的原氢与乙炔的pi电子密度之间的次级相互作用所引起的。 (C)2015 AIP Publishing LLC。

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