Temperature dependent kinetics of the picosecond bimolecular reaction between S1 trans-stilbene and carbon tetrachloride: is the ultrafast photochemical reaction diffusion-controlled?
Author:
Publisher
Elsevier BV
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Reference8 articles.
1. Anomalous Lifetime Shortening of S1trans-Stilbene in Carbon Tetrachloride as Revealed by Picosecond Time-resolved Raman, Absorption, and Fluorescence Spectroscopies
2. Time-resolved Infrared Spectroscopic Diagnosis of a Bimolecular Chemical Reaction in Room Temperature Solution. The CCl3Radical Produced from Photoexcited trans-Stilbene and Carbon Tetrachloride
3. Temperature-dependence of self-diffusion for benzene and carbon tetrachloride
4. Picosecond time-resolved fluorescence study of all-trans retinal. The existence of two fluorescent singlet excited states
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1. Ultrafast bimolecular radical reaction between S1p-terphenyl and carbon tetrachloride: mode-specific acceleration of vibrational dephasing in reactant molecule;Journal of Raman Spectroscopy;2008-11
2. Physical Chemistry of the Lowest Excited Singlet State oftrans-Stilbene in Solution as Studied by Time-Resolved Raman Spectroscopy;Bulletin of the Chemical Society of Japan;2002-05
3. Mechanism and deactivation kinetics of S2-xanthione in acetonitrile, a quenching solvent, and of S2-exciplex measured by pico- and femtosecond laser spectroscopy;Chemical Physics Letters;2001-10
4. Photochemical bimolecular reaction between biphenyl and carbon tetrachloride: observed ultrafast kinetics and diffusion-controlled reaction model;Chemical Physics Letters;2001-10
5. Single-Pulse Measurements of Fluorescence Lifetimes: The Influence of Solvent on the Isomerization of trans-Stilbene Included in Zeolites;The Journal of Physical Chemistry B;2001-03-21
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