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Soft hydrogen bonds to alkenes: the methanol–ethene prototype under experimental and theoretical scrutiny

机译:软氢键与烯烃的键合:甲醇和乙烯的原型经过实验和理论研究

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摘要

An FTIR spectroscopic study of the elusive hydrogen-bonded methanol–ethene complex, the most elementary example for weak intermolecular alcohol hydrogen bonding to a π cloud, is presented. By isolating the complex in a supersonic jet, the rigorous comparability to high-level quantum chemical calculations is ensured. In stark contrast to classical hydrogen bonds, experimental overtone analysis reveals the harmonic oscillator approximation for the OH red shift to be accurate. Harmonic calculations up to explicitly correlated local coupled-cluster level are thus found to agree very well with experiment. The experimental OH values for the red shift (45 cm–1), the small change in diagonal anharmonicity (–3 cm–1) and the overtone intensity attenuation (2 × 102-fold) together with theoretical predictions for the preferred structural arrangement and the zero-point-corrected dissociation energy (8 kJ mol–1) may thus be regarded as definitive reference values for related systems and for more approximate computational methods. In particular, MP2 calculations are shown to fail for this kind of weak intermolecular interaction.
机译:FTIR光谱研究了难以捉摸的氢键合的甲醇-乙烯配合物,这是分子间醇氢键合至π云的最基本例子。通过在超声速射流中分离复合物,可以确保与高级量子化学计算的严格可比性。与经典氢键形成鲜明对比的是,实验性泛音分析显示,OH频移准确的谐波振荡器近似值。因此,发现谐波计算直至显着相关的局部耦合群水平与实验非常吻合。红移(45 cm –1 ),对角非谐性的小变化(–3 cm –1 )和泛音强度衰减(2×因此,将10 2 倍)以及有关优选结构安排和零点校正的离解能(8 kJ mol -1 )的理论预测视为确定的相关系统和更近似的计算方法的参考值。特别是,MP2计算显示出由于这种弱的分子间相互作用而失败。

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