| Literature DB >> 15268357 |
Guorong Wu1, Bo Jiang, Qin Ran, Jinghui Zhang, Steve A Harich, Xueming Yang.
Abstract
Photodissociation dynamics of the CH3 radical at 212.5 nm has been investigated using the H atom Rydberg tagging time-of-flight method with a pure CH3 radical source generated by the photolysis of CH3I at 266 nm. Time-of-flight spectra of the H atom products from the photolysis of both cold and hot methyl radicals have been measured at different photolysis polarizations. Experimental results indicate that the photodissociation of the methyl radical in its ground vibrational state at 212.5 nm excitation occurs on a very fast time scale in comparison with its rotational period, indicating the CH3 dissociation at 212.5 nm occurs on the excited 3s Rydberg state surface. Experimental evidence also shows that the photodissociation of the methyl radical in the nu2 = 1 state of the umbrella mode at 212.5 nm excitation is characteristically different from that in the ground vibrational state. Copyright 2004 American Institute of PhysicsEntities:
Year: 2004 PMID: 15268357 DOI: 10.1063/1.1635363
Source DB: PubMed Journal: J Chem Phys ISSN: 0021-9606 Impact factor: 3.488