Electronic structures and dynamics of the excited triplet states of alpha,omega-diphenylpolyynes

Citation
Y. Nagano et al., Electronic structures and dynamics of the excited triplet states of alpha,omega-diphenylpolyynes, J CHEM PHYS, 114(4), 2001, pp. 1775-1784
Citations number
60
Categorie Soggetti
Physical Chemistry/Chemical Physics
Journal title
JOURNAL OF CHEMICAL PHYSICS
ISSN journal
00219606 → ACNP
Volume
114
Issue
4
Year of publication
2001
Pages
1775 - 1784
Database
ISI
SICI code
0021-9606(20010122)114:4<1775:ESADOT>2.0.ZU;2-C
Abstract
The lowest excited triplet (T-1) states of diphenylacetylene and several al pha,omega -diphenylpolyynes (DPY) having two, three, four and six triple bo nds were studied using continuous wave time-resolved electron paramagnetic resonance (CW-TREPR), pulsed EPR, and phosphorescence spectroscopy. Linear and planar molecular structures in the T-1 states of DPY were suggested fro m the magnetophotoselection experiments and observation of a strong 0-0 ban d in the well-resolved phosphorescence spectra. The spin density distributi ons, which were obtained by electron spin echo envelope modulation measurem ents and semi-empirical molecular orbital calculations, and the phosphoresc ence polarization normal to the long axis of molecule for the 0-0 bands sug gested that the T-1 states of DPY have a B-3(1u) (pi (x)pi (x)*) electronic configuration. DPY showed an abnormally large \D\ value of the zero-field splitting parameters that increased with increasing molecular size. Such an unusual behavior of the D values is interpreted in terms of the spin-orbit interaction between the T-1 and (3)A(u)(pi (x)pi (y)*) states mainly due t o their energy proximity which is probably characteristic of the excited st ates for the polyynes. The estimated energy gap between the (3)pi (x)pi (y) * and (3)pi (x)pi (x)* states for DPY ranges from 2900 cm(-1) to 1400 cm(-1 ). There existed a good correlation between the acceleration of the nonradi ative decay rate constant from the T1 state and appearance of a ring twisti ng vibronic band with b(1g) symmetry in the phosphorescence spectra for DPY . Therefore, we concluded that the vibronic interaction between the (3)pi ( x)pi (y)* and (3)pi (x)pi (x)* states promoted by the b(1g) vibration leads to a broadening of the potential surface of the T-1 state which results in the fast radiationless decay Co the ground state, (C) 2001 American Instit ute of Physics.