The electronic spectroscopy and photophysics of piperidine in the vapor phase

Citation
Am. Halpern et al., The electronic spectroscopy and photophysics of piperidine in the vapor phase, J PHYS CH A, 104(50), 2000, pp. 11733-11738
Citations number
18
Categorie Soggetti
Physical Chemistry/Chemical Physics
Journal title
JOURNAL OF PHYSICAL CHEMISTRY A
ISSN journal
10895639 → ACNP
Volume
104
Issue
50
Year of publication
2000
Pages
11733 - 11738
Database
ISI
SICI code
1089-5639(200012)104:50<11733:TESAPO>2.0.ZU;2-X
Abstract
The ground- and lowest excited-state properties of piperidine vapor are exp lored with respect to understanding its absorption and fluorescence propert ies. A ground-state intrinsic reaction coordinate (IRC) calculation was use d to model the conformational potential energy surface connecting the equat orial and axial conformers. At the MP2/6-311++G** level of theory, the equa torial conformer is more stable by 310 cm(-1) than the axial conformer, and the inversion barrier height is 2033 cm(-1). Two transitions in the UV, wi th origins of 38 707 and 44 070 cm(-1) are assigned. The S-1 <-- S-0 transi tion (f(obs) <similar to> 3.2 X 10(-3)) is Rydberg in nature, with consider able involvement of all the ring heavy atoms. A vibrational analysis of thi s transition shows a main progression in 640 cm(-1), which is assigned as t he N-H out-of-plane bending motion. The CIS-calculated equilibrium geometry of the S-1 state indicates considerable distortion of the N atom relative to the C-alpha atoms. The one-dimensional absorption spectrum is modeled on the basis of the ground-state IRC and the corresponding vertical CAS(2,2)/ MP2 surface. The IRC dependence of the transition moment was taken into acc ount. The radiative rate constant, k(r), is estimated be ca. 1.7 x 10(6) s( -1). A weak fluorescence with (v) over tilde (max) = 33 500 cm(-1) is obser ved with a quantum efficiency, q(f), of ca. 1.3 x 10(-4). The lifetime of t he S-1 state is estimated to be ca. 80 ps on the basis of q(f)/k(r). Deuter ium substitution (d1 and d11) results in slight increases in q(f).