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Anharmonic theoretical simulations of infrared spectra of halogenated organic compounds

机译:卤代有机化合物红外光谱的非谐理论模拟

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摘要

The recent implementation of the computation of infrared (IR) intensities beyond the double-harmonic approximation [J. Bloino and V. Barone, J. Chem. Phys. 136, 124108 (2012)] paved the route to routine calculations of infrared spectra for a wide set of molecular systems. Halogenated organic compounds represent an interesting class of molecules, from both an atmospheric and computational point of view, due to the peculiar chemical features related to the halogen atoms. In this work, we simulate the IR spectra of eight halogenated molecules (CH2F2, CHBrF2, CH2DBr, CF3Br, CH2CHF, CF2CFCl, cis-CHFCHBr, cis-CHFCHI), using two common hybrid and double-hybrid density functionals in conjunction with both double- and triple-zeta quality basis sets (SNSD and cc-pVTZ) as well as employing the coupled-cluster theory with basis sets of at least triple-zeta quality. Finally, we compare our results with available experimental spectra, with the aim of checking the accuracy and the performances of the computational approaches. (C) 2013 AIP Publishing LLC.
机译:超越双谐波近似的红外(IR)强度计算的最新实现[J. Bloino和V.Barone,J.Chem。物理136,124108(2012)]为一系列分子系统的红外光谱的常规计算铺平了道路。从大气和计算的角度来看,由于与卤原子有关的特殊化学特征,卤代有机化合物代表了一类有趣的分子。在这项工作中,我们使用两个常见的杂化和双杂化密度官能团,同时结合了两个双键,模拟了八个卤化分子(CH2F2,CHBrF2,CH2DBr,CF3Br,CH2CHF,CF2CFCl,顺式-CHFCHBr,顺式-CHFCHI)的红外光谱-和三重Zeta质量基础集(SNSD和cc-pVTZ),以及采用耦合群集理论和至少三重Zeta质量的基础集。最后,我们将结果与可用的实验光谱进行比较,以检查计算方法的准确性和性能。 (C)2013 AIP Publishing LLC。

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