Quenching of I(2P1/2) by Cl2 and Cl Atoms over the Temperature Range 297−663 K
Author:
Affiliation:
1. Department of Chemistry, Emory University, Atlanta, Georgia 30322
Publisher
American Chemical Society (ACS)
Subject
Physical and Theoretical Chemistry
Link
https://pubs.acs.org/doi/pdf/10.1021/jp034556v
Reference20 articles.
1. Approximate analytic solution for the dissociation of molecular iodine in the presence of singlet oxygen
2. Electronically excited iodine atoms, I(5p52P12): a kinetic study of some chemical reactions by atomic absorption spectroscopy using time-resolved attenuation of resonance radiation at λ = 206.23 nm {I[5p46s(2P32) ← 5p5(2P012)]}
3. Quenching and reactions of laser‐excited I(5 2P1/2) atoms with halogen and interhalogen molecules
4. I*(5 2P1/2) quenching kinetics
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1. Quantum Interference Effects Theoretically Found in the Photodissociation Processes of the Second Absorption Bands of ICl and IBr Molecules;The Journal of Physical Chemistry A;2015-09-03
2. Theoretical study on the photofragment branching ratios and anisotropy parameters of ICl in the second absorption band;Chemical Physics Letters;2014-01
3. Excited states in the active media of oxygen — iodine lasers;Quantum Electronics;2009-11-30
4. Temperature dependence of the O+I(P21/2)→O+I(P23/2) quenching rate constant;Journal of Applied Physics;2009-05
5. Kinetics of O2(aΔg) and I(2P1/2) in the Photochemistry of N2O/I2 Mixtures;The Journal of Physical Chemistry A;2007-01-23
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