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Theoretical modeling of the OH stretch infrared spectrum of carboxylic acid dimers based on first-principles anharmonic couplings

机译:基于第一性原理非谐耦合的羧酸二聚体OH拉伸红外光谱的理论模型

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摘要

Carboxylic acid dimers serve as prototypical systems for modeling the unusual spectral behavior of the hydride stretch fundamental. Large anharmonic effects associated with the pair of cooperatively strengthened OH...O=C hydrogen bonds produces complicated infrared spectra in which the OH stretch oscillator strength is spread over hundreds of wave numbers, resulting in a complicated band sub-structure. In this work cubic anharmonic constants are computed along internal coordinates associated with the intramolecular OH stretch, intermolecualr stretch, and OH bend internal coordinates for the formic acid and benzoic acid dimers. These are then projected onto the normal coordinates to produce mixed states that are used in computing the OH stretch infrared spectrum. For the benzoic acid dimer the calcualtions accurately reproduce for three deuterated isotopomers the overall breadth and much of the vibrational sub-structure in the observed spectra. For the formic acid dimer, the spectrum is calculated using a model employing a subset of the cubic force constants as well as using the full cubic force field. The spectra calcualted for the fromic acid dimer are sparser and somewhat more sensitive to the exact positions of the anharmonically coupled states than that of the benzoic acid dimer. Again semiquantitative agreement with experiment is obtained.
机译:羧酸二聚体作为模型系统,用于模拟氢化物拉伸基波的异常光谱行为。与一对协同增强的OH ... O = C氢键相关的大非谐效应产生复杂的红外光谱,其中OH拉伸振荡器的强度分布在数百个波数上,从而导致复杂的能带子结构。在这项工作中,沿着与甲酸和苯甲酸二聚体的分子内OH拉伸,分子间拉伸和OH弯曲内部坐标关联的内部坐标计算立方非谐常数。然后将这些投影到法线坐标上,以生成用于计算OH拉伸红外光谱的混合状态。对于苯甲酸二聚体,可以精确地重现三种氘代异位异构体的计算结果,并观察到光谱中的整体宽度和许多振动子结构。对于甲酸二聚体,使用模型使用立方力常数的子集以及整个立方力场来计算光谱。从甲酸二聚体计算得到的光谱比苯甲酸二聚体的光谱稀疏,并且对非谐偶合态的精确位置稍敏感。再次获得与实验的半定量一致性。

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