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Structural studies of aromatic carboxylic acids via computational chemistry and microwave spectroscopy

机译:通过计算化学和微波光谱法研究芳香族羧酸的结构

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The structures of three simple aromatic carboxylic acids: benzoic, isophthalic, and terephthalic have been investigated using a combination of theoretical high-level quantum chemical calculations and experimental millimeter-wave Stark-modulated free-jet absorption spectroscopy. Rotational and centrifugal distortion constants have been measured for one conformer of each of the species and for its -COOD isotopologue, leading to the experimental determination of the coordinates of the carboxyl hydrogen atom. Consideration of the observed inertial defect is consistent with a planar equilibrium structure for each species. Calculated structures, relative energies, and electric dipole moments, using ab initio methods at the MP2/cc-pVTZ level, are reported for all the lower-energy conformers of each species. The theoretical calculations lead to the unambiguous identification of the conformers involved in the observed microwave spectra. The match between theoretical and spectroscopic measurements was used to gauge the reliability of the quantum chemical structure optimization calculations.
机译:结合理论上的高级量子化学计算和实验性的毫米波Stark调制自由射流吸收光谱,研究了三种简单的芳族羧酸的结构:苯甲酸,间苯二甲酸和对苯二甲酸。已经测量了每种物种的一个构象异构体及其-COOD同位素异构体的旋转和离心畸变常数,从而实验确定了羧基氢原子的坐标。考虑到的惯性缺陷与每种物质的平面平衡结构一致。报告了从头算方法在MP2 / cc-pVTZ级别上计算出的每个物种的所有低能构象异构体的结构,相对能量和电偶极矩。理论计算导致对所观察到的微波光谱中涉及的构象异构体的明确鉴定。理论测量值和光谱测量值之间的匹配用于衡量量子化学结构优化计算的可靠性。

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