Infrared multiphoton dissociation yields via a versatile new technique: intensity, fluence, and wavelength dependence for CF3I
Author:
Publisher
Elsevier BV
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Reference13 articles.
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1. Reaction Dynamics and Statistical Mechanics of the Preparation of Highly Excited States by Intense Infrared Radiation;Advances in Chemical Physics;2007-03-14
2. Nonlinear intensity dependence in the infrared multiphoton excitation and dissociation of methanol pre-excited to different energies;The Journal of Chemical Physics;2002-12
3. Isotopic enrichment of 13C by IR laser photolysis followed by fast bimolecular reaction;Journal of Photochemistry and Photobiology A: Chemistry;1996-01
4. The IR multiphoton decomposition of CF3I. The effect of inert and reactive gases;International Journal of Chemical Kinetics;1994-07
5. Time‐resolved infrared‐spectroscopic observation of relaxation and reaction processes during and after infrared‐multiphoton excitation of12CF3I and13CF3I with shaped nanosecond pulses;The Journal of Chemical Physics;1992-06-15
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