The fluorescence spectrum of 1,3,5-tri-tert-butylpentalene (TTBP), the stable derivative of antiaromatic pentalene, has been measured in solution at room and low temperature in condensed phase. A good correspondence between the first allowed absorption band and the fluorescence spectrum is observed. The fluorescence quantum yield of TTBP 2 10-4 M in cyclohexane is estimated to be 2 10-3 (ìex ) 313 nm) at room temperature. At low temperature and exciting at 355 nm, the fluorescence spectrum of TTBP shows appreciable vibronic structure. The fluorescence data have been related to the electronic structure of the parent molecule. MCSCF/CAS calculations for the ground and lowest excited states of pentalene, up to S4, have been performed in D2h symmetry with 3-21G and 6-31G basis sets including polarization and diffuse orbitals. As a result of the strong interaction between the pairs of states S0/S1 and S2/S3, the lowest component of each pair distorts from D2h to lower symmetry, giving rise to new equilibrium geometries. According to ab initio calculations, the observed fluorescence is assigned to upper state, S3 - S0, emission.

Fluorescence of antiaromatic systems: an experimental and theoretical study of 1,3,5-tri-t-butyl- pentalene / A. FALCHI; C. GELLINI; P. SALVI; K. HAFNER. - In: JOURNAL OF PHYSICAL CHEMISTRY. A, MOLECULES, SPECTROSCOPY, KINETICS, ENVIRONMENT, & GENERAL THEORY. - ISSN 1089-5639. - STAMPA. - 102:(1998), pp. 5006-5012.

Fluorescence of antiaromatic systems: an experimental and theoretical study of 1,3,5-tri-t-butyl- pentalene.

GELLINI, CRISTINA;SALVI, PIER REMIGIO;
1998

Abstract

The fluorescence spectrum of 1,3,5-tri-tert-butylpentalene (TTBP), the stable derivative of antiaromatic pentalene, has been measured in solution at room and low temperature in condensed phase. A good correspondence between the first allowed absorption band and the fluorescence spectrum is observed. The fluorescence quantum yield of TTBP 2 10-4 M in cyclohexane is estimated to be 2 10-3 (ìex ) 313 nm) at room temperature. At low temperature and exciting at 355 nm, the fluorescence spectrum of TTBP shows appreciable vibronic structure. The fluorescence data have been related to the electronic structure of the parent molecule. MCSCF/CAS calculations for the ground and lowest excited states of pentalene, up to S4, have been performed in D2h symmetry with 3-21G and 6-31G basis sets including polarization and diffuse orbitals. As a result of the strong interaction between the pairs of states S0/S1 and S2/S3, the lowest component of each pair distorts from D2h to lower symmetry, giving rise to new equilibrium geometries. According to ab initio calculations, the observed fluorescence is assigned to upper state, S3 - S0, emission.
1998
102
5006
5012
A. FALCHI; C. GELLINI; P. SALVI; K. HAFNER
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Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/252711
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