TY - JOUR
T1 - Picosecond time-resolved fluorescence spectroscopy of (Z)-1-(2-anthryl)-2-phenylethene and its model compounds
T2 - Understanding the photochemistry by distinguishing between the s-cis and s-trans rotamers
AU - Karatsu, Takashi
AU - Itoh, Hajime
AU - Nishigaki, Atsuko
AU - Fukui, Keijiro
AU - Kitamura, Akihide
AU - Matsuo, Shigeki
AU - Misawa, Hiroaki
N1 - Copyright:
Copyright 2020 Elsevier B.V., All rights reserved.
PY - 2000/8/3
Y1 - 2000/8/3
N2 - The photochemical reactions (Z-E isomerization and photocyclization) of the s-cis and s-trans rotamers of (Z)-1-(2-anthryl)-2-phenylethene (Z2APE) were investigated. The absorption, steady-state and picosecond time-resolved fluorescences, and transient absorption spectra were measured in order to achieve a better understanding of the rotamer photochemistry. The spectra were compared with those of the model compounds ((Z)-1-[2-(1-methylanthryl)]-2-phenylethene: Z1Me2APE and (Z)-1-[2-(3-methylanthryl)]-2-phenylethene: Z3Me2APE). It is confirmed that the s-trans rotamer undergoes only Z→E adiabatic isomerization and that the s-cis rotamer mainly photocyclizes to give the dihydrophenanthrene-type intermediate with a much faster rate constant (kcyc = 2.3 × 1010 s-1). The reason Z2APE does not give an aromatized photocyclization product (1,2-naphtho[a]anthracene, NA) is that the return of the dihydrophenanthrene-type intermediate to the Z isomer is much faster than the oxidation to produce NA.
AB - The photochemical reactions (Z-E isomerization and photocyclization) of the s-cis and s-trans rotamers of (Z)-1-(2-anthryl)-2-phenylethene (Z2APE) were investigated. The absorption, steady-state and picosecond time-resolved fluorescences, and transient absorption spectra were measured in order to achieve a better understanding of the rotamer photochemistry. The spectra were compared with those of the model compounds ((Z)-1-[2-(1-methylanthryl)]-2-phenylethene: Z1Me2APE and (Z)-1-[2-(3-methylanthryl)]-2-phenylethene: Z3Me2APE). It is confirmed that the s-trans rotamer undergoes only Z→E adiabatic isomerization and that the s-cis rotamer mainly photocyclizes to give the dihydrophenanthrene-type intermediate with a much faster rate constant (kcyc = 2.3 × 1010 s-1). The reason Z2APE does not give an aromatized photocyclization product (1,2-naphtho[a]anthracene, NA) is that the return of the dihydrophenanthrene-type intermediate to the Z isomer is much faster than the oxidation to produce NA.
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U2 - 10.1021/jp993305c
DO - 10.1021/jp993305c
M3 - Article
AN - SCOPUS:0034251263
SN - 1089-5639
VL - 104
SP - 6993
EP - 7001
JO - Journal of Physical Chemistry A
JF - Journal of Physical Chemistry A
IS - 30
ER -