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The vibrational spectrum of H2O3: An ab initio investigation

机译:H2O3的振动光谱:从头开始研究

摘要

Theoretically determined frequencies and absorption intensities are reported for the vibrational spectrum of the covalent HOOOH and hydrogen bonded HO---HOO intermediates that may form in the reaction of the hydroxyl and hydroperoxyl radicals. Basis sets of DZP quality, augmented by diffuse and second sets of polarization functions have been used with CASSCF wave functions. The calculated harmonic vibrational frequencies of HOOOH have been corrected with empirical factors and presented in the form of a 'stick' spectrum. The oxygen backbone vibrations, predicted to occur at 519, 760, and 870 cm(exp -1), are well separated from most interferences, and may be the most useful for the species' identification. In the case of the hydrogen bonded isomer, emphasis has been placed upon prediction of the shifts in the intramolecular vibrational frequencies that take place upon formation of the complex. In particular, the HO stretch and HOO bend of HO2 are predicted to have shifts of -59 and 53 cm(exp -1), respectively, which should facilitate their identification. It is also noted that the antisymmetric stretching frequency of the oxygen backbone in HOOOH exhibits a strong sensitivity to the degree of electron correlation, such as has been previously observed for the same mode in ozone.
机译:理论上确定的频率和吸收强度报告了共价HOOOH和氢键合的HO--HOO中间体的振动光谱,这些中间体可能在羟基和氢过氧自由基的反应中形成。 DZP质量的基础集,通过漫反射和第二组极化函数增强,已与CASSCF波函数一起使用。计算出的HOOOH谐波振动频率已通过经验因素进行了校正,并以“棒状”频谱的形式给出。氧主干振动预计会发生在519、760和870 cm(exp -1)处,与大多数干扰都已很好地隔离开来,并且可能对于物种识别最有用。在氢键异构体的情况下,重点已放在预测配合物形成时发生的分子内振动频率的变化上。特别是,HO2的HO拉伸和HOO弯曲预计分别具有-59和53 cm(exp -1)的偏移,这应有助于它们的识别。还应注意的是,HOOOH中氧主链的反对称拉伸频率对电子相关程度表现出很强的敏感性,例如以前在臭氧中以相同模式观察到的那样。

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    Jackels Charles F.;

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  • 年度 1991
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