The SAC(symmetrie adapted cluster)/SAC-CI(configuration interaction) mehtod is applied to the ground and low-lying excited states of oxyheme (FeC23N6OzHI6). The ground state (1~) is suitably represented by the Pauling model, Fe(II) (S = 0) + O2(~Ag). The SAC-CI result reproduces well the lower excit
Ground and excited states of Mg porphin studied by the SAC/SAC-CI method
✍ Scribed by J. Hasegawa; M. Hada; M. Nonoguchi; H. Nakatsuji
- Publisher
- Elsevier Science
- Year
- 1996
- Tongue
- English
- Weight
- 419 KB
- Volume
- 250
- Category
- Article
- ISSN
- 0009-2614
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✦ Synopsis
The SAC (symmetry adapted cluster)/SAC-CI method is applied to the ground and excited states of magnesium porphin (MgP). The rr interaction between the Mg atom and the porphin ring is small and, therefore, the essential difference between MgP and free base porphin (FBP) lies in symmetry; the former is Dab and the latter D2h. The degenerate excited states in MgP split into two in FBP. The SAC-CI results for the excitation energy and the oscillator strength compare reasonably well with the experimental spectra for Mg etioporphyrin (MgEtio) and Mg tetraphenylporphin (MgTPP) and the natures of the excited states are clarified. Gouterman's four-orbital model holds well for the Q band, but the excitations from the 2a2u MO below the four orbitals mix in the B band, as was found previously for FBP. The natures of the N bands are different between MgP and FBP.
📜 SIMILAR VOLUMES
The SAC (symmetry adapted cluster)/SAC-CI method is applied to calculations of the ground and excited states of carboxyheme (Fef24N6On16). The excited states are calculated up to 7.8 eV. The calculated excitation energies and oscillator strengths reproduce well the electronic spectrum. The Q bands a
We have summarized the solutions of the SAC (symmetry-adapted-cluster) and SAC CI theories for the study of electron correlations in ground and excited states, respectively. Variational and non-variational solutions are considered for both theories and their features are discussed.
## Abstract Excited states of fluorescent proteins were studied using symmetry‐adapted cluster‐configuration interaction (SAC‐CI) method. Protein‐environmental effect on the excitation and fluorescence energies was investigated. In green fluorescent protein (GFP), the overall protein‐environmental