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Alcohol dimers - how much diagonal OH anharmonicity?

机译:酒精二聚体-对角OH不和谐度是多少?

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The OH bond of methanol, ethanol and t-butyl alcohol becomes more anharmonic upon hydrogen bonding and the infrared intensity ratio between the overtone and the fundamental transition of the bridging OH stretching mode decreases drastically. FTIR spectroscopy of supersonic slit jet expansions allows to quantify these effects for isolated alcohol dimers, enabling a direct comparison to anharmonic vibrational predictions. The diagonal anharmonicity increase amounts to 15-18%, growing with increasing alkyl substitution. The overtone/fundamental 1R intensity ratio, which is on the order of 0.1 or more for isolated alcohols, drops to 0.004-0.001 in the hydrogen-bonded OH group, making overtone detection very challenging. Again, alkyl substitution enhances the intensity suppression. Vibrational second order perturbation theory appears to capture these effects in a semiquantitative way. Harmonic quantum chemistry predictions for the hydrogen bond-induced OH stretching frequency shift (the widely used infrared signature of hydrogen bonding) are insufficient, and diagonal anharmonicity corrections from experiment make the agreement between theory and experiment worse. Inclusion of anharmonic cross terms between hydrogen bond modes and the OH stretching mode is thus essential, as is a high level electronic structure theory. The isolated molecule results are compared to matrix isolation data, complementing earlier studies in N2 and Ar by the more weakly interacting Ne and p-H2 matrices. Matrix effects on the hydrogen bond donor vibration are quantified.
机译:氢键作用下,甲醇,乙醇和叔丁醇的OH键变得更不谐和,桥接OH拉伸模式的泛音和基本跃迁之间的红外强度比大大降低。超音速狭缝射流扩展的FTIR光谱可以量化孤立的酒精二聚体的这些效应,从而可以与非谐振动预测直接进行比较。随着烷基取代度的增加,对角非谐性增加达15-18%。泛醇/基本1R强度比(对于孤立的醇而言,约为0.1或更高),在氢键的OH基团中降至0.004-0.001,这使得泛音检测非常困难。同样,烷基取代增强了强度抑制。振动二阶微扰理论似乎以半定量方式捕获了这些影响。关于氢键引起的OH延伸频率偏移(广泛使用的氢键的红外特征)的谐波量子化学预测是不充分的,并且实验的对角非谐性校正使理论与实验之间的一致性变差。因此,必不可少的是在氢键模式和OH拉伸模式之间包含非谐交叉项,正如高级电子结构理论一样。将分离的分子结果与基质分离数据进行比较,通过相互作用较弱的Ne和p-H2矩阵对N2和Ar中的早期研究进行补充。量化基体对氢键供体振动的影响。

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