Test for photochemical scrambling in the non-radiative relaxation of the excited à 1B2u state S1 of benzene
Author:
Publisher
Elsevier BV
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Reference21 articles.
1. Non-radiative relaxation of the excited à 1B2u state of benzene
2. Linewidths and high resolution structure of the benzene1B2u←1A1gtwo photon transition by multiphoton ionization–supersonic beam techniques
3. The identification of channel three in isolated benzene
4. Nonradiative transitions in collisionless perdeuterobenzene
5. Sub-doppler spectroscopy of benzene in the ‘channel-three’ region
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1. Intramolecular Processes Revealed Using UV-Laser-Induced IR-Fluorescence: A New Perspective on the “Channel Three” of Benzene;The Journal of Physical Chemistry Letters;2014-03-14
2. Competing ultrafast intersystem crossing and internal conversion in the “channel 3” region of benzene;Physical Chemistry Chemical Physics;2010
3. Rotational Effects on the Channel Three Decay in Benzene: in Support of the Preisomerization Mechanism;Bulletin of the Chemical Society of Japan;1998-10
4. Matrix Elements of Intramolecular Interactions;Springer Series in Chemical Physics;1995
5. Theory of fluorescence excitation spectra using anharmonic‐Coriolis coupling inS1and internal conversion toS0. II. Application to the channel three problem in benzene for the 14112band;The Journal of Chemical Physics;1993-10
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