Electronic and vibrational structure in the S 0 and S 1 states of corannulene

Corannulene is a nonplanar aromatic hydrocarbon also known as a buckybowl. Its electronic and vibrational structure has been investigated by analyzing its fluorescence excitation spectrum and dispersed fluorescence spectrum in a supersonic jet. Its spectral features are in keeping with the expectati...

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Veröffentlicht in:The Journal of chemical physics 2019-12, Vol.151 (23), p.234305
Hauptverfasser: Kanaoka, Ayumi, Tohyama, Hiromi, Kunishige, Sachi, Katori, Toshiharu, Nishiyama, Akiko, Misono, Masatoshi, Nakayama, Naofumi, Sakurai, Hidehiro, Tsuge, Masashi, Baba, Masaaki
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Sprache:eng
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Zusammenfassung:Corannulene is a nonplanar aromatic hydrocarbon also known as a buckybowl. Its electronic and vibrational structure has been investigated by analyzing its fluorescence excitation spectrum and dispersed fluorescence spectrum in a supersonic jet. Its spectral features are in keeping with the expectation, confirmed by some previous results, that it has fivefold or C symmetry. The observed prominent vibronic bands in the S ← S transition have been assigned to e and e bands on the basis of theoretical calculations so that the S state was assigned to E . The symmetry adapted cluster configuration interaction calculation supports this assignment of the S electronic state, although the time-dependent density functional theory calculation suggests that the S state is A . It has also been shown that the normal coordinates for strong vibronic bands mainly include out-of-plane vibrational motion. The rotational envelopes are well explained by taking account of the Coriolis interaction between the degenerate vibrational and rotational levels. The mechanism of bowl-to-bowl inversion is also discussed with the results of theoretical calculations regarding the barrier to inversion and metastable conformation.
ISSN:1089-7690
DOI:10.1063/1.5129852