The infrared spectra of polycyclic aromatic hydrocarbons containing a five-membered ring: symmetry breaking and the B3LYP functional

被引:0
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作者
Charles W. Bauschlicher Jr
Douglas M. Hudgins
Louis J. Allamandola
机构
[1]  NASA Ames Research Center,
[2] Space Technology Division,undefined
[3] Mail Stop 230-3,undefined
[4] Moffett Field,undefined
[5] CA 94035,undefined
[6] USA,undefined
[7]  NASA Ames Research Center,undefined
[8] Astrophysics Branch,undefined
[9] Mail Stop 245-6,undefined
[10] Moffett Field,undefined
[11] CA 94035,undefined
[12] USA,undefined
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Key words: Symmetry-breaking; Density functional theory; Vibrational frequencies;
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摘要
The infrared spectra of six molecules, each of which contains a five-membered ring, and their cations are determined using density functional theory; both the B3LYP and BP86 functionals are used. The computed results are compared with the experimental spectra. For the neutral molecules, both methods are in good agreement with experiment. Even the Hartree–Fock (HF) approach is qualitatively correct for the neutral species. For the cations, the HF approach fails, as found for other organic ring systems. The B3LYP and BP86 approaches are in good mutual agreement for five of the six cation spectra, and are in good agreement with experiment for four of the five cations where the experimental spectra are available. It is only for the fluoranthene cation where the BP86 and B3LYP functionals yield different results; the BP86 approach yields the expected C2v symmetry, while the B3LYP approach breaks symmetry. The experimental spectra support the BP86 spectra over the B3LYP spectra, but the quality of the experimental spectra does not allow a critical evaluation of the accuracy of the BP86 approach for this difficult system.
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页码:154 / 162
页数:8
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