We built a full-dimensional analytical potential energy surface of the ground electronic state of LiâH from ca. 20,000 ab initio multi-reference configuration interaction calculations, including coreâ»valence correlation effects. The surface is flexible enough to accurately describe the three dissociation channels: Li (2s ²S) + LiH (¹Σâº), Liâ (¹Σ(g)âº) + H (1s ²S) and 2Li (2s ²S) + H (1s ²S). Using a local fit of this surface, we calculated pure (J = 0) vibrational states of LiâH up to the barrier to linearity (ca. 3400 cm(-1) above the global minimum) using a vibrational self-consistent field/virtual state configuration interaction method. We found 18 vibrational states below this barrier, with a maximum of 6 quanta in the bending mode, which indicates that LiâH could be spectroscopically observable. Moreover, we show that some of these vibrational states are highly correlated already ca. 1000 cm(-1) below the height of the barrier. We hope these calculations can help the assignment of experimental spectra. In addition, the first low-lying excited states of each Bâ, Bâ and Aâ symmetry of LiâH were characterized.
Full-Dimensional Ab Initio Potential Energy Surface and Vibrational Energy Levels of LiâH.
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作者:Ahn Furudate Michiko, Hagebaum-Reignier Denis, Jeung Gwang-Hi
| 期刊: | Molecules | 影响因子: | 4.600 |
| 时间: | 2018 | 起止号: | 2018 Dec 21; 24(1):26 |
| doi: | 10.3390/molecules24010026 | ||
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