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首页> 外文期刊>The Journal of Chemical Physics >Communication: Towards the binding energy and vibrational red shift of the simplest organic hydrogen bond: Harmonic constraints for methanol dimer
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Communication: Towards the binding energy and vibrational red shift of the simplest organic hydrogen bond: Harmonic constraints for methanol dimer

机译:交流:朝着最简单的有机氢键的结合能和振动红移:甲醇二聚体的谐波约束

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摘要

The discrepancy between experimental and harmonically predicted shifts of the OH stretching fundamental of methanol upon hydrogen bonding to a second methanol unit is too large to be blamed mostly on diagonal and off-diagonal anharmonicity corrections. It is shown that a decisive contribution comes from post-MP2 electron correlation effects, which appear not to be captured by any of the popular density functionals. We also identify that the major deficiency is in the description of the donor OH bond. Together with estimates for the electronic and harmonically zero-point corrected dimer binding energies, this work provides essential constraints for a quantitative description of this simple hydrogen bond. The spectroscopic dissociation energy is predicted to be larger than 18 kJ/mol and the harmonic OH-stretching fundamental shifts by about ?121 cm~(?1) upon dimerization, somewhat more than in the anharmonic experiment (?111 cm~(?1)).
机译:氢键合到第二个甲醇单元时,甲醇的OH拉伸基本原理的实验和谐波预测的偏移之间的差异太大,无法将大部分归咎于对角和非对角非谐校正。结果表明,MP2后的电子相关效应起了决定性的作用,这似乎未被任何流行的密度泛函所捕获。我们还确定主要缺陷在于供体OH键的描述。连同对电子和谐波零点校正的二聚体结合能的估计,这项工作为对该简单氢键的定量描述提供了必要的约束。光谱离解能预计将大于18 kJ / mol,并且在二聚体作用下,拉伸OH的谐波拉伸基波将发生约121 cm〜(?1)的位移,比非调和实验中的更大(?111 cm〜(?1) ))。

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